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A survey of index decomposition analysis in energy and environmental studies. (2000). Ang, B. W. ; Zhang, F. Q..
In: Energy.
RePEc:eee:energy:v:25:y:2000:i:12:p:1149-1176.

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  22. Has Korean growth become greener? Spatial econometric evidence for energy use and renewable energy. (2022). Hille, Erik ; Lambernd, Bernhard.
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  26. Decomposition Analysis of the Aggregate Carbon Intensity (ACI) of the Power Sector in Colombia—A Multi-Temporal Analysis. (2022). Rivera-Niquepa, Juan David ; Yusta, Jose M ; Rojas-Lozano, Daniela ; de Oliveira-De, Paulo M.
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  28. Assessing the Green R&D Investment and Patent Generation in Pakistan towards CO 2 Emissions Reduction with a Novel Decomposition Framework. (2022). Tang, Songlin ; Chen, Yingchao ; Raza, Muhammad Yousaf.
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  82. Determinants of Energy-Based CO 2 Emissions in Ethiopia: A Decomposition Analysis from 1990 to 2017. (2020). Shah, Izhar Hussain ; Huong, Ta Thi ; Taka, Gideon Nkam ; Park, Hung-Suck.
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  83. Multitemporal LMDI Index Decomposition Analysis to Explain the Changes of ACI by the Power Sector in Latin America and the Caribbean between 1990–2017. (2020). Rojas-Lozano, Daniela ; Galvis, John J ; de Oliveira-De, Paulo M ; Yusta, Jose M.
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  84. Decomposition Analysis of the Carbon Emissions of the Manufacturing and Industrial Sector in Thailand. (2020). Buddhivanich, Atinat ; Wiboonchutikula, Paitoon ; Chontanawat, Jaruwan.
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  85. Benchmarking Sustainable Manufacturing: A DEA-Based Method and Application. (2020). Fan, Mei-Niang ; Tsai, Wen-Hsien ; Leu, Jun-Der ; Chuang, Sophia.
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  86. Understanding the Multi-Faceted Drivers of Increasing Coal Consumption in Indonesia. (2020). Edianto, Achmed S ; Trencher, Gregory P ; Kurniawan, Robi ; Matsubae, Kazuyo ; Setiawan, Imam E.
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  87. Spatial Differences in Carbon Intensity in Polish Households. (2020). Sidorczuk-Pietraszko, Edyta.
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  88. Extending production-theoretical decomposition analysis to environmentally sensitive growth: Case study of Belt and Road Initiative countries. (2020). Shi, Xunpeng ; Zhang, Jinggu ; Zhao, Lingdi.
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  89. Does technological progress and industrial structure reduce electricity consumption? Evidence from spatial and heterogeneity analysis. (2020). Xu, Jianjun ; An, Hui ; Ma, Xuejiao.
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  90. Spatial decomposition analysis of water intensity in China. (2020). Zhang, Chenjun ; Yu, YU ; Wu, Yusi.
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  91. How to achieve China’s CO2 emission reduction targets by provincial efforts? – An analysis based on generalized Divisia index and dynamic scenario simulation. (2020). Song, Jiekun ; Yao, Tianli ; Wu, Rui ; Dong, Huijuan ; Shao, Shuai ; Geng, Yong ; Zhang, XI.
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  92. Examining impact factors of residential electricity consumption in Taiwan using index decomposition analysis based on end-use level data. (2020). Huang, Yun-Hsun.
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  93. Explaining decoupling in high income countries: A structural decomposition analysis of the change in energy footprint from 1970 to 2009. (2020). Wood, Richard ; Kulionis, Viktoras.
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  94. The evolution of energy efficiency in Switzerland in the period 2000–2016. (2020). Bhadbhade, Navdeep ; Patel, Martin K ; Eichhammer, Wolfgang ; Zuberi, Jibran S ; Yilmaz, Selin.
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  95. A multi-dimensional analysis on microeconomic factors of Chinas industrial energy intensity (2000–2017). (2020). Su, Bin ; Sun, Yuan ; Zhou, Kaile ; Zhang, Chi.
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  96. Regional heterogeneous drivers of electricity demand in Saudi Arabia: Modeling regional residential electricity demand. (2020). Darandary, Abdulelah ; Mikayilov, Jeyhun I ; Alatawi, Hatem ; al Atawi, Hatem ; Hasanov, Fakhri J ; Alyamani, Ryan.
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  97. Do drivers of CO2 emission growth alter overtime and by the stage of economic development?. (2020). Dong, Kangyin ; Timilsina, Govinda R ; Hochman, Gal.
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  98. The structural changes and determinants of household energy choices and energy consumption in urban China: Addressing the role of building type. (2020). Zhou, Shaojie ; Teng, Fei ; Zhang, Junyi.
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  99. Carbon fueling complex global value chains tripled in the period 1995–2012. (2020). Hertwich, Edgar G.
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  100. Assessing energy efficiency improvements and related energy security and climate benefits in Finland: An ex post multi-sectoral decomposition analysis. (2020). Trotta, Gianluca.
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  101. Modelling industrial energy demand in Saudi Arabia. (2020). Hunt, Lester ; Gasim, Anwar ; Alarenan, Shahad.
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  102. What drives decarbonization of new passenger cars?. (2020). Kuosmanen, Timo ; Zhou, Xun.
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  103. China’s non-fossil energy development and its 2030 CO2 reduction targets: The role of urbanization. (2020). Wilson, Jeffrey ; Shao, Shuai ; Geng, Yong ; Zhang, XI ; You, Wei ; Song, Xiaoqian .
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  104. What drives total real unit energy costs globally? A novel LMDI decomposition approach. (2020). Kaltenegger, Oliver.
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  105. Natural gas subsidies in the industrial sector in China: National and regional perspectives. (2020). Lin, Boqiang ; Kuang, Yunming.
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  106. Driving factors of water-energy nexus in China. (2020). Chen, Bin ; Duan, Cuncun.
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  107. What drives total real unit energy costs globally? A novel LMDI decomposition approach. (2019). Kaltenegger, Oliver.
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  108. Is carbon emission decline caused by economic decline? Empirical evidence from Russia. (2019). Jiang, Rui ; Li, Rong Rong.
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  109. Waste Decomposition Analysis in Japanese manufacturing sectors for Material Flow Cost Accounting. (2019). Yagi, Michiyuki ; Kokubu, Katsuhiko.
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  110. Measuring Energy Efficiency: An Application of LMDI Analysis to Power Sector in Kerala. (2019). Pillai, Vijayamohanan.
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  111. Measuring Energy Efficiency: An Application of Data Envelopment Analysis to Power Sector in Kerala. (2019). Pillai, Vijayamohanan.
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  112. Measuring Energy Efficiency: An Application of Stochastic Frontier Production Function Analysis to Power Sector in Kerala. (2019). Pillai, Vijayamohanan.
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  113. Energy Efficiency: A Sectoral Analysis for Kerala. (2019). Am, Narayanan ; Pillai, Vijayamohanan.
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  114. Decomposition Analysis of GHG Emissions In Emerging Economies. (2019). Sahu, Santosh Kumar ; Kamboj, Sumedha.
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  115. Uncovering Variations, Determinants, and Disparities of Multisector-Level Final Energy Use of Industries Across Cities. (2019). Wang, Yichen ; Yang, Wei ; Liao, Xianrui ; Song, Junnian.
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  116. Energy and Environmental Efficiency in Different Chinese Regions. (2019). Chiu, yung-ho ; Lin, Tai-Yu.
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  117. Investigation for the Decomposition of Carbon Emissions in the USA with C-D Function and LMDI Methods. (2019). Li, Rongrong ; Jiang, Rui ; Wu, Qiuhong.
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  118. Analysis of CO 2 Emissions in China’s Manufacturing Industry Based on Extended Logarithmic Mean Division Index Decomposition. (2019). Zhang, YU ; Yang, Qingshan ; Liu, Jian ; Xu, Yiming ; Sun, Wen.
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  119. Divergent Leading Factors in Energy-Related CO 2 Emissions Change among Subregions of the Beijing–Tianjin–Hebei Area from 2006 to 2016: An Extended LMDI Analysis. (2019). Wu, Shuang ; Tang, Zhipeng ; Zou, Jialing.
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  120. The Drivers of China’s Regional Carbon Emission Change—A Structural Decomposition Analysis from 1997 to 2007. (2019). Lahr, Michael ; Yang, Ling.
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  121. Driving Forces of Energy-Related CO 2 Emissions Based on Expanded IPAT Decomposition Analysis: Evidence from ASEAN and Four Selected Countries. (2019). Chontanawat, Jaruwan.
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  122. Energy-Related CO 2 Emissions Growth in ASEAN Countries: Trends, Drivers and Policy Implications. (2019). Indra, Teuku Meurah ; Yang, Muyi ; Sandu, Suwin ; Ashrafur, S M ; Putra, Nandy ; Ong, Hwai Chyuan ; Wongsapai, Wongkot.
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  123. Uncovering Household Carbon Footprint Drivers in an Aging, Shrinking Society. (2019). Shigetomi, Yosuke ; Chapman, Andrew ; Huang, Yuzhuo ; Matsumoto, Kenichi.
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  124. Long-Term Demand Forecasting in a Scenario of Energy Transition. (2019). Barbancho, Julio ; Luque, Joaquin ; Sanchez-Duran, Rafael.
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  125. A Structural Decomposition Analysis of China’s Consumption-Based Greenhouse Gas Emissions. (2019). Wang, Gehua ; Gu, Alun ; Gao, Haidi ; Teng, Fei.
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  126. The relationship between energy intensity and economic growth: New evidence from a multi-country multi-sectorial dataset. (2019). Zhang, Fan ; Vollmer, Sebastian ; Reuter, Anna ; Deichmann, Uwe.
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  127. Factor decomposition of China’s industrial electricity consumption using structural decomposition analysis. (2019). Gao, Yuning ; Zhao, Xintong ; Yu, Miao.
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  128. The impact of factor price changes and technological progress on the energy intensity of Chinas industries: Kalman filter-based econometric method. (2019). Zheng, Haitao ; Fan, Maoqing.
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  129. The driving factors of energy-related CO2 emission growth in Malaysia: The LMDI decomposition method based on energy allocation analysis. (2019). Ni, Weidou ; Li, Zheng ; Ma, Linwei ; Liu, Pei ; Ting, Zhao Jia ; Tan, Wei Xin ; Chong, Chin Hao.
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  130. Effect of generation capacity factors on carbon emission intensity of electricity of Latin America & the Caribbean, a temporal IDA-LMDI analysis. (2019). de Oliveira-De, Paulo M.
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  131. Trends and driving forces of China’s virtual land consumption and trade. (2019). Bleischwitz, Raimund ; Tian, XU ; Geng, Yong ; Bruckner, Martin.
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  132. Analysis of Chinas energy consumption changing using the Mean Rate of Change Index and the logarithmic mean divisia index. (2019). Liu, Zhenbin ; Zhu, Zhaoge ; Wang, Yanqiu.
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  133. Determinants of changes in electricity generation intensity among different power sectors. (2019). Chen, Jiandong ; Wu, Yinyin ; Cheng, Shulei ; Hou, Wenxuan ; Song, Malin.
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  134. Can Japan enhance its 2030 greenhouse gas emission reduction targets? Assessment of economic and energy-related assumptions in Japans NDC. (2019). Kuramochi, Takeshi ; Tamura, Kentaro ; Kuriyama, Akihisa.
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  135. Does energy price affect energy efficiency? Cross-country panel evidence. (2019). Fontini, Fulvio ; Antonietti, Roberto.
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  136. Understanding the energy intensity change in Chinas food industry: A comprehensive decomposition method. (2019). Lin, Boqiang ; Xie, Xuan.
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  137. Investigating the driving factors of regional CO2 emissions in China using the IDA-PDA-MMI method. (2019). Wang, Qunwei ; Yang, Guanglei ; Zha, Donglan.
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  138. Index decomposition analysis for comparing emission scenarios: Applications and challenges. (2019). Goh, Tian ; Ang, B W ; Wang, B.
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  139. Structural path and decomposition analysis of aggregate embodied energy and emission intensities. (2019). Li, Yingzhu ; Ang, B W ; Wang, B ; Su, Bin.
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  140. Comparing electricity consumption trends: A multilevel index decomposition analysis of the Genevan and Swiss economy. (2019). Patel, Martin K ; Burer, Meinrad ; van Megen, Bram.
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  141. The changes in coal intensity of electricity generation in Chinese coal-fired power plants. (2019). Wang, Chunhua ; Cao, Xiaoyong ; Qin, Ping ; Mao, Jie.
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  142. Driving factors of CO2 emissions and inequality characteristics in China: A combined decomposition approach. (2019). Chen, Jiandong ; Song, Malin ; Huang, Shuo ; Cui, Lianbiao ; Xu, Chong.
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  143. What causes inequality in Material Productivity between countries?. (2019). Duro, Juan Antonio ; Fernandez-Herrero, Laura.
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  144. Decoupling economic growth from GHG emissions: Decomposition analysis by sectoral factors for Australia. (2019). Marques, Antonio Cardoso ; Leal, Patricia Alexandra ; Fuinhas, Jose Alberto.
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  145. Risk preference and efficiency in Chinese banking. (2019). Wu, Yanrui ; Yu, Zhiqian ; Wang, Bing ; Zhu, Ning.
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  146. Driving factors of carbon emissions in China: A joint decomposition approach based on meta-frontier. (2019). Zhou, Peng ; Su, Xuelin ; Wang, Hui ; Shi, Junxue ; Liu, Bingquan.
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  147. Effects of population, urbanization, household size, and income on electric appliance adoption in the Chinese residential sector towards 2050. (2019). Patio-Echeverri, Dalia ; Mallampalli, Varun ; Hernandez, Mauricio ; Shan, Rui.
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  148. Trade, Transportation and the Environment. (2019). Forslid, Rikard.
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  149. DECOMPOSING THE ROLE OF DIFFERENT FACTORS IN CO2 EMISSIONS INCREASE IN SOUTH ASIA. (2019). Monika, Gupta .
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  152. A structural decomposition analysis of the pollution terms of trade. (2018). Papadas, Christos T ; Vlassis, Nikolaos.
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  153. Impact of Technological Change on Employment: Evidence from the Organised Manufacturing Industry in India. (2018). Kujur, Sandeep Kumar.
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  154. An evaluation of input-specific technical efficiency of Indian fertilizer firms. (2018). Khan, Soumita.
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  155. Decomposition analysis of corporate carbon dioxide and greenhouse gas emissions in Japan: Integrating corporate environmental and financial performances. (2018). Yagi, Michiyuki ; Managi, Shunsuke.
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  156. Decompositions and Policy Consequences of an Extraordinary Decline in Air Pollution from Electricity Generation. (2018). Yates, Andrew ; Muller, Nicholas ; Mansur, Erin ; Holland, Stephen.
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  157. Decomposition Analysis in Electricity Sector Output from Carbon Emissions in China. (2018). Jiang, Xueting ; Su, Min ; Li, Rongrong.
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  158. Air Pollution Inequality and Its Sources in SO 2 and NO X Emissions among Chinese Provinces from 2006 to 2015. (2018). Yang, Yang ; Feng, Feng ; Azimi, Mohaddeseh.
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  159. LMDI Decomposition of Energy-Related CO 2 Emissions Based on Energy and CO 2 Allocation Sankey Diagrams: The Method and an Application to China. (2018). Chong, Chin Hao ; Ma, Linwei ; Ni, Weidou ; Li, Zheng ; Liu, Pei ; Zhang, XI.
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  160. Influencing Factors and Decoupling Elasticity of China’s Transportation Carbon Emissions. (2018). , Yuzhou ; Zhou, YU ; Wang, Yong ; Zhang, Yingchun ; Zhu, Lin.
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  161. Determinants analysis of carbon dioxide emissions in passenger and freight transportation sectors in China. (2018). Wang, BO ; Chen, Qingxiang ; Sun, Yefei.
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  162. Investigating the drivers of energy-related CO2 emissions in China’s industrial sector: From regional and provincial perspectives. (2018). Wang, Miao ; Feng, Chao.
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  163. Changes in energy-related carbon dioxide emissions of the agricultural sector in China from 2005 to 2013. (2018). Chen, Jiandong ; Song, Malin ; Cheng, Shulei .
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  164. How does circular economy respond to greenhouse gas emissions reduction: An analysis of Chinese plastic recycling industries. (2018). Liu, Zhe ; Dong, Liang ; Wen, Zongguo ; Wu, Rui ; Chen, Qinghua ; Cote, Raymond P ; Adams, Michelle.
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  165. Forecasting methods in energy planning models. (2018). Debnath, Kumar Biswajit ; Mourshed, Monjur.
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  166. GHG emissions embodied in Macaos internal energy consumption and external trade: Driving forces via decomposition analysis. (2018). Chen, B ; Yang, Q ; Zhou, S L ; Li, J S.
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  167. Decomposing the change in energy consumption in Chinas nonferrous metal industry: An empirical analysis based on the LMDI method. (2018). Wang, Miao ; Feng, Chao.
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  168. The driving forces and potential mitigation of energy-related CO2 emissions in Chinas metal industry. (2018). Feng, Chao ; Wang, Miao ; Huang, Jian-Bai.
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  169. Interstate energy efficiency of Indian paper industry: A slack-based non-parametric approach. (2018). Bhat, Javed Ahmad ; Kamaiah, Bandi ; Haider, Salman.
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  170. How far is Colombia from decoupling? Two-level decomposition analysis of energy consumption changes. (2018). Roman-Collado, Rocio ; Botia, Camilo ; Cansino, Jose M.
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  171. Environmental technical efficiency in EU member and candidate countries: A parametric hyperbolic distance function approach. (2018). Duman, Yavuz Selman ; Kasman, Adnan.
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  172. An emergy based sustainability evaluation on a combined landfill and LFG power generation system. (2018). Pan, Hengyu ; Wu, Rui ; Sun, LU ; Dong, Huijuan ; Jiang, Ping ; Geng, Yong.
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  173. East versus West: Energy intensity in coal-rich Europe, 1800–2000. (2018). Nielsen, Hana ; Kander, Astrid ; Warde, Paul.
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  174. Towards a sustainable growth in Latin America: A multiregional spatial decomposition analysis of the driving forces behind CO2 emissions changes. (2018). Roman-Collado, Rocio ; Morales-Carrion, Any Viviana.
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  175. Using an extended logarithmic mean Divisia index approach to assess the roles of economic factors on industrial CO2 emissions of China. (2018). Wang, Miao ; Feng, Chao.
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  176. Assessment of carbon leakage by channels: An approach combining CGE model and decomposition analysis. (2018). Tan, Xiujie ; Su, Bin ; Cui, Jingbo ; Liu, YU.
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  177. Energy price, energy efficiency, and capital productivity: Empirical investigations and policy implications. (2018). Olani, Adugna ; Gamtessa, Samuel.
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  178. The sign reversal problem in structural decomposition analysis. (2018). Nagashima, Fumiya.
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  179. Contributions to sector-level carbon intensity change: An integrated decomposition analysis. (2018). Zhou, Peng ; Su, Bin ; Hang, YE ; Wang, Qunwei.
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  180. Quantifying drivers of CO2 emissions from electricity generation – Current practices and future extensions. (2018). Goh, Tian ; Xu, X Y ; Ang, B W ; Wang, B.
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  181. Energy efficiency convergence across countries in the context of China’s Belt and Road initiative. (2018). Shi, Xunpeng ; Lei, Xiao ; Lv, Xin ; Xin Lv, ; Su, Bin ; Han, Botang .
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  182. Desacople y Descomposición del Consumo Final de Energía en Argentina. (2018). Conte Grand, Mariana.
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  183. Decomposition analysis of corporate carbon dioxide and greenhouse gas emissions in Japan: Integrating corporate environmental and financial performances. (2018). Yagi, Michiyuki ; Managi, Shunsuke.
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  184. China’s changing diet and its impacts on greenhouse gas emissions: an index decomposition analysis. (2018). Zhang, Fan ; Schilizzi, Steven ; Ma, Chunbo ; Hawkins, Jacob.
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  186. Changes in carbon intensity of China’s energy-intensive industries: a combined decomposition and attribution analysis. (2017). Zhang, Xiaohu ; Zhao, Tao ; Wang, Juan.
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  187. Investigating the sensitivity factors of household indirect CO2 emission from the production side. (2017). Yan, Junna ; Lin, Tao.
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  188. GHGs and air pollutants embodied in China’s international trade: Temporal and spatial index decomposition analysis. (2017). Song, Peng ; Mao, Xianqiang ; Liu, Zhengyan.
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  189. Pollution Offshoring and Emission Reductions in EU and US Manufacturing. (2017). Brunel, Claire.
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  190. Energy Intensity: Prices, Policy, or Composition in US States. (2017). Levinson, Arik.
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  191. Using LMDI to Analyze the Decoupling of Carbon Dioxide Emissions from China’s Heavy Industry. (2017). Lin, Boqiang ; Liu, Kui ; Boqiang, Lin.
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  192. Decomposition Analysis of Aggregate Energy Consumption in China: An Exploration Using a New Generalized PDA Method. (2017). Zhou, Peng ; Wang, Qunwei ; Liu, Xiao.
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  193. Decomposition Analysis of Carbon Emission Factors from Energy Consumption in Guangdong Province from 1990 to 2014. (2017). Su, Yongxian ; Wang, Changjian ; Zhang, Xinlin ; Jin, Lixia.
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  194. Decomposition of the Urban Water Footprint of Food Consumption: A Case Study of Xiamen City. (2017). Zhao, Xiaofeng ; Lin, Jianyi ; Kang, Jiefeng ; Kou, Limin .
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  195. Why Electricity Demand Is Highly Income-Elastic in Spain: A Cross-Country Comparison Based on an Index-Decomposition Analysis. (2017). Perez Garcia, Julian ; Moral Carcedo, Julian ; Perez-Garcia, Julian ; Moral-Carcedo, Julian.
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  196. The Status and Evolution of Energy Supply and Use in Mexico Prior to the 2014 Energy Reform: An Input-Output Approach †. (2017). , Edith ; Cordoba, Oscar ; Guevara, Zeus ; Bouchain, Rafael .
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  197. The Role of International Trade and Urbanization on Environmental Technical Efficiency in EU Member and Candidate Countries. (2017). Duman, Yavuz Selman ; Kasman, Adnan.
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  198. What drives CO2 emissions from China’s civil aviation? An exploration using a new generalized PDA method. (2017). Zhou, Peng ; Wang, Qunwei ; Liu, Xiao.
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  199. Decomposition of industrial water use from 2003 to 2012 in Tianjin, China. (2017). Shang, Yizi ; Li, Wei ; Shi, Hongwang ; Lu, Shibao.
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  200. Sustainable development of Chinas energy intensive industries: From the aspect of carbon dioxide emissions reduction. (2017). Lin, Boqiang ; Tan, Ruipeng.
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  201. The decomposition of CO2 emissions from energy use in Greece before and during the economic crisis and their decoupling from economic growth. (2017). Roinioti, Argiro ; Koroneos, Christopher .
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  202. Sector decomposition of China’s national economic carbon emissions and its policy implication for national ETS development. (2017). Jiang, Jing Jing ; Yang, Peng ; Miao, Lixin ; Li, JI ; Xie, Dejun ; Ye, Bin.
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  203. Building Automation and Control Systems and performance optimization: A framework for analysis. (2017). Aste, Niccolo ; Marenzi, Giorgia ; Manfren, Massimiliano.
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  204. An Overview of the driving forces behind energy demand in Chinas construction industry: Evidence from 1990 to 2012. (2017). Hong, Jingke ; Zheng, Wei ; Sun, Bingxia ; Xue, Fan ; Shen, Qiping ; Li, Clyde Zhengdao .
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  205. A comparison of carbon dioxide (CO2) emission trends among provinces in China. (2017). Du, Kerui ; Ouyang, Xiaoling ; Xie, Chunping.
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  206. Driving forces for aggregate energy consumption: A cross-country approach. (2017). Nunes, Manuel Lopes ; Cunha, Jorge ; Lima, Fatima .
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  207. Decomposition analysis for assessing the United States 2025 emissions target: How big is the challenge?. (2017). Shahiduzzaman, M D ; Layton, Allan .
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  208. Measuring improvements in industrial energy efficiency: A decomposition analysis applied to the UK. (2017). Norman, Jonathan B.
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  209. Energy optimization and analysis modeling based on extreme learning machine integrated index decomposition analysis: Application to complex chemical processes. (2017). Geng, Zhiqiang ; Zhu, Qunxiong ; Han, Yongming ; Yang, Xiao.
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  210. Factors that Influence the Tourism Industrys Carbon Emissions: a Tourism Area Life Cycle Model Perspective. (2017). Tang, Chengcai ; Zhong, Linsheng.
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  211. Three-level decoupling of energy use in Portugal 1995–2010. (2017). Guevara, Zeus ; Domingos, Tiago.
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  212. Decomposing inequality in energy-related CO2 emissions by source and source increment: The roles of production and residential consumption. (2017). Chen, Jiandong ; Song, Malin ; Cheng, Shulei .
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  213. Comprehensive development of industrial symbiosis for the response of greenhouse gases emission mitigation: Challenges and opportunities in China. (2017). Liu, Zhe ; Yu, Xiaoman ; Sun, LU ; Chen, Qinghua ; Geng, Yong ; Cote, Raymond P ; Adams, Michelle.
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  214. The drivers of long-run CO2 emissions in Europe, North America and Japan since 1800. (2017). Henriques, Sofia ; Borowiecki, Karol.
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  215. Multiplicative structural decomposition analysis of aggregate embodied energy and emission intensities. (2017). Su, Bin ; Ang, B W ; Wang, B.
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  216. Energy intensity and convergence in Swedish industry: A combined econometric and decomposition analysis. (2017). Söderholm, Patrik ; Soderholm, Patrik ; Lundgren, Tommy ; Brannlund, Runar ; Karimu, Amin.
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  217. Determinants of energy productivity in 39 countries: An empirical investigation. (2017). Atalla, Tarek ; Bean, Patrick .
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  218. Sources of change in the demand for energy by Indonesian households: 1980–2002. (2017). Chen, Joyce ; Pitt, Mark M.
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  219. Measuring energy intensity in Japan: A new method. (2017). Zaim, Osman ; Akkemik, K. Ali ; Gazel, Tue Uygurturk .
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  220. A structural decomposition of global Raw Material Consumption. (2017). Pothen, Frank.
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  221. International Trade and Energy Intensity During European Industrialization, 1870–1935. (2017). Kander, Astrid ; Hagen, Sven ; Kulionis, Viktoras ; Nielsen, Hana ; Henriques, Sofia Teives ; Warde, Paul.
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  222. The driving forces of the change in Chinas energy intensity: An empirical research using DEA-Malmquist and spatial panel estimations. (2017). Huang, Junbing ; Hao, YU ; Du, Dan .
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  223. Water conservation from power generation in China: A provincial level scenario towards 2030. (2017). Xie, Yang ; Dai, Hancheng ; Li, Mingquan ; Sandholt, Kaare ; Bregnbaek, Lars ; Tao, YE.
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  224. Driving forces of Irans CO2 emissions from energy consumption: An LMDI decomposition approach. (2017). Stephen, Neil ; Manuel, Jose Bienvenido ; Blesl, Markus ; Mousavi, Babak.
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  225. Quantification and driving force analysis of provincial-level carbon emissions in China. (2017). Ye, Bin ; Tang, Jie ; Miao, Lixin ; Li, Changsheng ; Jiang, Jingjing .
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  226. Decomposition of energy-related CO2 emissions in China: An empirical analysis based on provincial panel data of three sectors. (2017). Wang, Miao ; Feng, Chao.
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  227. Decomposition techniques for financial ratios of European non-financial listed groups. (2017). Vennix, Saskia ; Rubbrecht, Ilse ; Perez-Duarte, Sebastien ; Ortega, Manuel ; Gonzalez, Javier ; Coppens, Franois ; Carlino, Laurent .
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  229. Directed Technical Change and Energy Intensity Dynamics: Structural Change vs. Energy Efficiency. (2016). Kempa, Karol ; Haas, Christian .
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  230. Decomposing the decoupling of CO2 emission from economic growth in BRICS countries. (2016). Zhang, Ming ; Huang, Wei ; Dai, Shuang.
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  231. Contrastive analyses of the influence factors of interprovincial carbon emission induced by industry energy in China. (2016). Zhang, Ming ; Zhou, Meihua.
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  232. Directed Technical Change and Energy Intensity Dynamics: Structural Change vs. Energy Efficiency. (2016). Kempa, Karol ; Haas, Christian .
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  233. Decomposition of Net CO 2 Emission in the Wuhan Metropolitan Area of Central China. (2016). Ma, Chunbo ; Zhang, Anlu ; Yang, Xin.
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  234. Decomposing the Influencing Factors of Industrial Sector Carbon Dioxide Emissions in Inner Mongolia Based on the LMDI Method. (2016). Zhang, Jiquan ; Song, Youtao ; Tong, Siqin ; Wu, Rina ; Bao, Yuhai ; Lai, Quan .
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  235. How to Move China toward a Green-Energy Economy: From a Sector Perspective. (2016). Deng, Chun ; Zhang, Xiao-Lei ; Wang, Qiang ; Dong, Jie-Fang .
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  236. Eco-Efficiency Analysis of Industrial Systems in the Songhua River Basin: A Decomposition Model Approach. (2016). Tong, Lianjun ; Lo, Kevin ; Guo, Fuyou.
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  237. Trend Prediction and Decomposed Driving Factors of Carbon Emissions in Jiangsu Province during 2015–2020. (2016). Li, Zhijiang ; Ma, Tingyu ; Tang, Decai ; Bethel, Brandon J.
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  238. Exergy Accounting: A Quantitative Comparison of Methods and Implications for Energy-Economy Analysis. (2016). Sorrell, Steve ; Foxon, Timothy ; Miller, Jack.
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  239. East versus West: Energy transition and energy intensity in coal-rich Europe, 1830-2000. (2016). Nielsen, Hana.
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  240. Regional Economic Development, Energy Consumption and Carbon Emissions in China. (2016). Wang, Chunhua.
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  241. Decomposing the influencing factors of energy consumption in Tunisian transportation sector using the LMDI method. (2016). Belloumi, Mounir ; Achour, Houda .
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  242. Drivers for energy consumption: A comparative analysis of China and India. (2016). Li, Rongrong ; Wang, Qiang.
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  243. Modelling energy intensity, pollution per capita and productivity in Italy: A structural VAR approach. (2016). Travaglini, Giuseppe ; GIOMBINI, GERMANA ; Calcagnini, Giorgio.
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  244. Journey to burning half of global coal: Trajectory and drivers of China׳s coal use. (2016). Wang, Qiang ; Li, Rongrong.
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  245. Using an extended LMDI model to explore techno-economic drivers of energy-related industrial CO2 emission changes: A case study for Shanghai (China). (2016). Shao, Shuai ; Guan, Dabo ; Cao, Jianhua ; Gan, Chunhui ; Yang, Lili ; Geng, Yong.
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  246. Drivers of greenhouse gas emissions in the Baltic states: decomposition analysis related to the implementation of Europe 2020 strategy. (2016). Liobikien, Genovait ; Bernatonien, Jurga ; Butkus, Mindaugas.
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  247. Study on affecting factors of residential energy consumption in urban and rural Jiangsu. (2016). Li, Huanan ; Song, Yan ; Zhang, Ming.
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  248. Decomposition analysis of energy consumption for an freeway during its operation period: A case study for Guangdong, China. (2016). Li, Duoqi ; Wang, Duanyi .
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  249. Analysis and long term forecasting of electricity demand trough a decomposition model: A case study for Spain. (2016). Perez Garcia, Julian ; Moral Carcedo, Julian ; Moral-Carcedo, Julian ; Perez-Garcia, Julian.
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  250. A decomposition analysis of the driving factors of CO2 (Carbon dioxide) emissions from the power sector in the European Union countries. (2016). Kopidou, D ; Karmellos, M ; Diakoulaki, D.
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  251. A cross-country assessment of energy-related CO2 emissions: An extended Kaya Index Decomposition Approach. (2016). Lima, Fatima ; Cunha, Jorge ; Nunes, Manuel Lopes .
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  252. Decomposition analysis of carbon dioxide emissions in Chinas regional thermal electricity generation, 2000–2020. (2016). Yan, Qingyou ; Zou, Xin ; Zhang, Qian.
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  253. Carbon intensity of electricity in ASEAN: Drivers, performance and outlook. (2016). Ang, BW ; Goh, Tian ; Wang, B.
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  254. Carbon emission intensity in electricity production: A global analysis. (2016). Su, Bin ; Ang, B W ; Wang, B.
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  255. Decomposition of intensity of energy-related CO2 emission in Chinese provinces using the LMDI method. (2016). Zhang, Wei ; Gao, Hui ; Zhou, Dequn ; Li, KE.
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  256. Main drivers of changes in CO2 emissions in the Spanish economy: A structural decomposition analysis. (2016). Cansino, Jose M ; Ordoez, Manuel ; Roman, Rocio.
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  257. Analysis of the importance of structural change in non-energy intensive industry for prospective modelling: The French case. (2016). Seck, Gondia Sokhna ; Maizi, Nadia ; Guerassimoff, Gilles .
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  258. A spatial–temporal decomposition approach to performance assessment in energy and emissions. (2016). Ang, BW ; Su, Bin ; Wang, H.
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  259. Understanding energy systems change in Canada: 1. Decomposition of total energy intensity. (2016). Torrie, Ralph D ; Layzell, David B ; Stone, Christopher .
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  260. Decomposition analysis from demand services to material production: The case of CO2 emissions from steel produced for automobiles in Mexico. (2016). Sheinbaum-Pardo, Claudia .
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  261. Uncovering driving forces on greenhouse gas emissions in China’ aluminum industry from the perspective of life cycle analysis. (2016). Liu, Zhe ; Tian, XU ; Wu, Jiao ; Dong, Huijuan ; Zhao, Jingjing ; Sun, Lina ; Adams, Michelle ; Geng, Yong.
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  262. Uncovering driving factors of carbon emissions from China’s mining sector. (2016). Shao, Shuai ; Yang, Yingchun ; Miao, Zhuang ; Geng, Yong ; Liu, Jianghua .
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  263. Sustainability Cycles in China, India, and the World?. (2016). Kaivo-oja, Jari ; Vehmas, Jarmo .
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  264. FACTORIZING THE CHANGES IN CO2 EMISSIONS FROM INDIAN ROAD PASSENGER TRANSPORT: A DECOMPOSITION ANALYSIS. (2016). Monika, Gupta ; Sanjay, Singh .
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  265. A structural decomposition of global raw material consumption. (2015). Pothen, Frank.
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  266. Peeling the onion: Analyzing aggregate, national and sectoral energy intensity in the European Union. (2015). Pothen, Frank ; Löschel, Andreas ; Loschel, Andreas ; Schymura, Michael .
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  267. Peeling the onion: Analyzing aggregate, national and sectoral energy intensity in the European Union. (2015). Pothen, Frank ; Löschel, Andreas ; Loschel, Andreas ; Schymura, Michael .
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  268. Analysis and long term forecasting of electricity demand through a decomposition model: A case study for Spain. (2015). Perez Garcia, Julian ; Moral Carcedo, Julian.
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  269. Exploring influence factors governing the changes in China’s final energy consumption under a new framework. (2015). Song, Yan ; Zhang, Ming.
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  270. Study on factors affecting energy-related per capita carbon dioxide emission by multi-sectoral of cities: a case study of Tianjin. (2015). Chen, Yanan ; Lin, Sheng.
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  271. Decomposition and allocation of energy-related carbon dioxide emission allowance over provinces of China. (2015). Chen, Yanan ; Lin, Sheng.
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  272. Using LMDI method to analyze the influencing factors of carbon emissions in China’s petrochemical industries. (2015). Fan, Tijun ; Luo, Ruiling ; Xia, Haiyang ; Li, Xiaopeng.
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  273. Dynamic simulation of China’s carbon emission reduction potential by 2020. (2015). Nijkamp, Peter ; Xiang, Nan ; Chen, Lujun ; Yan, Jingjing ; Xu, Feng ; Higano, Yoshiro.
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  274. Factor Decomposition Analysis of Energy-Related CO 2 Emissions in Tianjin, China. (2015). Mao, Guozhu ; Zhao, Lin ; Wang, Zhe ; Wu, Ben.
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  275. Structural Decomposition Analysis of Carbon Emissions and Policy Recommendations for Energy Sustainability in Xinjiang. (2015). Wang, Fei.
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  276. Life Cycle Building Carbon Emissions Assessment and Driving Factors Decomposition Analysis Based on LMDI—A Case Study of Wuhan City in China. (2015). Song, Deyong ; Gong, Yuanyuan.
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  277. Assessment of the Sustainable Development Capacity with the Entropy Weight Coefficient Method. (2015). Zhang, Jian ; Yuan, Xueliang ; Wang, Qingsong ; Liu, Wei ; Zuo, Jian ; Hong, Jinglan ; Gao, Yun.
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  278. Regional and sectoral attribution to percentage changes in the European Divisia carbonization index. (2015). Gonzalez, Fernandez P ; Landajo, M ; Presno, M J.
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  279. The driving forces of change in energy-related CO2 emissions in Eastern, Western, Northern and Southern Europe: The LMDI approach to decomposition analysis. (2015). Moutinho, Victor ; Silva, Pedro Miguel ; Moreira, Antonio Carrizo .
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  280. Decomposition analysis of Cuban energy production and use: Analysis of energy transformation for sustainability. (2015). Majanne, Yrjo ; Vazquez, Luis ; Kaisti, Hanna ; Luukkanen, Jyrki ; Kakonen, Mira .
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  281. Driving forces of Spain׳s CO2 emissions: A LMDI decomposition approach. (2015). Cansino, Jose M. ; Rodriguez-Arevalo, Maria L. ; Sanchez-Braza, Antonio.
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  282. An analysis of the driving forces of energy-related carbon dioxide emissions in China’s industrial sector. (2015). Lin, Boqiang ; Ouyang, Xiaoling.
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  283. Energy efficiency index as an indicator for measuring building energy performance: A review. (2015). Abu Bakar, Nur Najihah, ; Hassan, Mohammad Yusri ; Abdullah, Md Pauzi ; Bandi, Masilah ; Rahman, Hasimah Abdul ; Hussin, Faridah .
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  284. The decomposition of energy-related carbon emission and its decoupling with economic growth in China. (2015). Zhang, Yue-Jun ; Da, Yabin.
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  285. Long-run energy scenarios for Cambodia and Laos: Building an integrated techno-economic and environmental modelling framework for scenario analyses. (2015). Kaivo-oja, Jari ; Luukkanen, Jyrki ; Vehmas, Jarmo ; Panula-Ontto, Juha ; Pasanen, Tytti ; Korkeakoski, Mika ; Akgun, Orkide .
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  286. Understanding the rapid growth of Chinas energy consumption: A comprehensive decomposition framework. (2015). Lin, Boqiang ; Du, Kerui.
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  287. Logarithmic mean Divisia index (LMDI) decomposition of coal consumption in China based on the energy allocation diagram of coal flows. (2015). Chong, Chinhao ; Song, Shizhong ; Ni, Weidou ; Li, Zheng ; Ma, Linwei.
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  288. The influence of price and non-price effects on demand for heating in the EU residential sector. (2015). Broin, Eoin O ; Nassen, Jonas ; Johnsson, Filip.
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  289. Analysis and decomposition of energy consumption in the Chilean industry. (2015). Duran, Elisa ; Aguilar, Renato ; Aravena, Claudia.
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  290. LMDI decomposition approach: A guide for implementation. (2015). Ang, BW ; Wang, B.
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  291. The embodied energy in trade: What role does specialization play?. (2015). Gasim, Anwar A.
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  292. Energy intensity in road freight transport of heavy goods vehicles in Spain. (2015). Padilla, Emilio ; Andres, Lidia .
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  293. Index decomposition analysis with multidimensional and multilevel energy data. (2015). Wang, H.
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  294. Driving factors behind carbon dioxide emissions in China: A modified production-theoretical decomposition analysis. (2015). Wang, Qunwei ; Chiu, yung-ho.
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  295. Drivers of regional decarbonization through 2100: A multi-model decomposition analysis. (2015). Fragkos, Panagiotis ; Marcucci, Adriana .
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  296. Trade-facilitated technology spillovers in energy productivity convergence processes across EU countries. (2015). Mulder, Peter ; Baylis, Kathy ; Wan, Jun .
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  297. Bigger cakes with fewer ingredients? A comparison of material use of the world economy. (2015). Pothen, Frank ; Schymura, Michael .
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  298. Decomposition analysis to examine Australia’s 2030 GHGs emissions target: How hard will it be to achieve?. (2015). Shahiduzzaman, M D ; Layton, Allan .
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  299. Multiplicative decomposition of aggregate carbon intensity change using input–output analysis. (2015). Su, Bin ; Ang, B W ; Wang, B.
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  300. Changes in CO2 emissions over business cycle recessions and expansions in the United States: A decomposition analysis. (2015). Shahiduzzaman, Md., ; Layton, Allan .
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  301. Exploring energy efficiency in several European countries. An attribution analysis of the Divisia structural change index. (2015). Gonzalez, Fernandez P..
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  302. Energy Efficiency and Firm Growth. (2015). Yu, Bok-Keun ; Park, Wooyoung ; Choi, Bongseok.
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  303. International Specialization, Structural Change and the Evolution of Manufacturing Energy Intensity in OECD Countries. (2015). Mulder, Peter.
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  304. What drives changes in carbon emissions? An index decomposition approach for 40 countries. (2014). Schymura, Michael ; Voigt, Sebastian.
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  305. Bigger cakes with less ingredients? A comparison of material use of the world economy. (2014). Pothen, Frank ; Schymura, Michael .
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  306. Changing patterns of electricity use in European manufacturing: A decomposition analysis. (2014). Wolf, Andre ; Wenzel, Lars .
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  307. The Drivers of Long-run CO2 Emissions: A Global Perspective since 1800. (2014). Henriques, Sofia ; Borowiecki, Karol.
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  308. Changes in European greenhouse gas and air pollutant emissions 1960–2010: decomposition of determining factors. (2014). Rafaj, Peter ; Amann, Markus ; Siri, Jose ; Wuester, Henning .
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  309. Energy Efficiency Potentials in the Chlor-Alkali Sector — A Case Study of Shandong Province in China. (2014). Zhu, Lei.
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  310. Energy Intensity: A Decomposition Exercise for Pakistan. (2014). Ullah, Akbar ; Khan, Karim ; Akhtar, Munazza .
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  311. The Drivers of Long-run CO2 Emissions: A Global Perspective since 1800. (2014). Henriques, Sofia ; Borowiecki, Karol.
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  312. The Drivers of Long-run CO2 Emissions: A Global Perspective since 1800. (2014). Henriques, Sofia ; Borowiecki, Karol.
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  313. Sustainability Assessment of Solid Waste Management in China: A Decoupling and Decomposition Analysis. (2014). Chen, Xingpeng ; Pang, Jiaxing ; Li, Hengji ; Zhang, Zilong.
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  314. Emergy-Based Regional Socio-Economic Metabolism Analysis: An Application of Data Envelopment Analysis and Decomposition Analysis. (2014). Zhang, Zilong ; Chen, Xingpeng ; Heck, Peter .
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  315. European Energy Efficiency and Decarbonization Strategies Beyond 2030 – A Sectoral Multi-model Decomposition. (2014). Schumacher, Katja ; Sands, Ronald ; Hübler, Michael ; De Cian, Enrica ; DeCian, Enrica ; Mima, Silvana ; Hubler, Michael ; Keppo, Ilkka ; Forster, Hannah .
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  316. Review of energy models to the development of an efficient industrial energy model. (2014). Jimoh, A. A, ; Olanrewaju, O. A, ; Jimoh, A. A, .
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  317. International environmental efficiency differences and their determinants. (2014). Li, Mingquan ; Wang, QI.
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  318. Decomposition analysis of the change of energy intensity of manufacturing industries in Thailand. (2014). Buddhivanich, Atinat ; Wiboonchutikula, Paitoon ; Chontanawat, Jaruwan .
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  319. Measuring energy efficiency under heterogeneous technologies using a latent class stochastic frontier approach: An application to Chinese energy economy. (2014). Lin, Boqiang ; Du, Kerui.
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  320. Analysis of impact factors on Chinas CO2 emissions from the view of supply chain paths. (2014). Mu, Hailin ; Gui, Shusen ; Li, Nan.
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  321. Tracking European Union CO2 emissions through LMDI (logarithmic-mean Divisia index) decomposition. The activity revaluation approach. (2014). Gonzalez, Fernandez P. ; Landajo, M. ; Presno, M. J..
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  322. Are structural change and modernisation leading to convergence in the CO2 economy? Decomposition analysis of China, EU and USA. (2014). Kaivo-oja, Jari ; Auffermann, B. ; Chen, Y. ; Mikkonen, S. ; Vehmas, J. ; Panula-Ontto, J. ; Luukkanen, J..
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  323. Attribution of changes in the generalized Fisher index with application to embodied emission studies. (2014). Ang, B. W. ; Su, Bin.
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  324. Analysis of energy-related CO2 (carbon dioxide) emissions and reduction potential in the Chinese non-metallic mineral products industry. (2014). Lin, Boqiang ; Ouyang, Xiaoling.
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  325. A multi-sectoral decomposition analysis of city-level greenhouse gas emissions: Case study of Tianjin, China. (2014). Kang, Jidong ; Zhang, Xin ; Zhao, Tao ; Lin, Tao ; Liu, Nan.
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  326. Regional disparities and carbon “outsourcing”: The political economy of Chinas energy policy. (2014). Li, Huimin ; Qi, YE ; Wang, Xiao ; Zhao, Xiaofan ; Wu, Tong.
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  327. The impact of the economic crisis and policy actions on GHG emissions from road transport in Spain. (2014). Monzon, Andres ; Sobrino, Natalia .
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  328. Unravelling projected energy savings in 2020 of EU Member States using decomposition analyses. (2014). Hu, Jing ; Smit, Tycho A. B., ; Harmsen, Robert.
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  329. The driving forces of China׳s energy use from 1992 to 2010: An empirical study of input–output and structural decomposition analysis. (2014). Xie, Shi-Chen .
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  330. The European Union Emission Trading System and technological change: The case of the Italian pulp and paper industry. (2014). Fontini, Fulvio ; Pavan, Giulia .
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  331. Mitigating greenhouse gas emissions from Chinas cities: Case study of Suzhou. (2014). Wang, Haikun ; Zhang, Yanxia ; Liu, Miaomiao ; Bi, Jun ; Yang, Jie.
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  332. Provincial allocation of carbon emission reduction targets in China: An approach based on improved fuzzy cluster and Shapley value decomposition. (2014). YU, Shiwei ; Wei, Yi-Ming ; Wang, Ke.
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  333. Chinas energy consumption under the global economic crisis: Decomposition and sectoral analysis. (2014). Li, Fangyi ; Song, Zhouying ; Liu, Weidong.
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  334. Energy conservation and CO2 emission reduction in Chinas 11th Five-Year Plan: A performance evaluation. (2014). Xu, Jin-Hua ; Fan, Ying ; Yu, Song-Min .
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  335. Multilevel index decomposition analysis: Approaches and application. (2014). Ang, B. W. ; Xu, X. Y..
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  336. A multi-fuel, multi-sector and multi-region approach to index decomposition: An application to Chinas energy consumption 1995–2010. (2014). Ma, Chunbo.
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  337. CO2 emissions from household consumption in India between 1993–94 and 2006–07: A decomposition analysis. (2014). Das, Aparna ; Paul, Saikat Kumar .
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  338. Energy intensity developments in 40 major economies: Structural change or technology improvement?. (2014). Voigt, Sebastian ; Verdolini, Elena ; De Cian, Enrica ; Schymura, Michael ; DeCian, Enrica .
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  339. Monitoring and evaluating the sustainability of Italian agricultural system. An emergy decomposition analysis. (2014). Ghisellini, Patrizia ; Ulgiati, Sergio ; Viglia, Silvio ; Zucaro, Amalia.
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  340. Dynamics and determinants of energy intensity in the service sector: A cross-country analysis, 1980–2005. (2014). Pfeiffer, Birte ; Mulder, Peter ; de Groot, Henri ; de Groot, Henri L. F., ; de Groot, Henri L. F., .
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  341. Decomposing energy intensity change: A combination of index decomposition analysis and production-theoretical decomposition analysis. (2014). Lin, Boqiang ; Du, Kerui.
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  342. Factors that influence carbon emissions due to energy consumption in China: Decomposition analysis using LMDI. (2014). Long, Ru-Yin ; He, Zheng-Xia ; Xu, Shi-Chun .
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  343. Analysing residential energy consumption using index decomposition analysis. (2014). Ang, B. W. ; Xu, X. Y..
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  344. Changing Patterns of Electricity Usage in European Manufacturing: A Decomposition Analysis. (2014). Wolf, Andre ; Wenzel, Lars .
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  345. Can Efficiency Improvements Reduce Resource Consumption?. (2014). Dahmus, Jeffrey B..
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  346. New climate scenario framework implementation in the GCAM integrated assessment model. (2014). MARKANDYA, ANIL ; González-Eguino, Mikel ; Capellán-Pérez, Iñigo ; Arto, Iñaki ; Ansuategi, Alberto ; Patel, Pralit ; Gonzalez-Eguino, Mikel ; Dhavala, Kishore ; Capellan-Perez, Iigo.
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  347. The Drivers of GHG Emissions Intensity Improvements in Major Economies Analysis of Trends 1995-2009. (2014). Zhu, Yunfa ; Rutherford, Thomas ; Luo, Deming ; Ghosh, Madanmohan.
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  348. Energy intensity developments in 40 major economies: Structural change or technology improvement?. (2013). Voigt, Sebastian ; Verdolini, Elena ; De Cian, Enrica ; Schymura, Michael ; DeCian, Enrica .
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  349. Mishandling carbon intensities. (2013). Rodriguez, Miguel ; Pena-Boquete, Yolanda.
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  350. Dynamics and Determinants of Energy Intensity in the Service Sector: A Cross-Country Analysis, 1980–2005. (2013). Mulder, Peter ; de Groot, Henri ; Pfeiffer, Birte ; Henri L. F. de Groot, ; Henri L. F. de Groot, ; Henri L. F. de Groot, ; Henri L. F. de Groot, .
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  351. Decomposing the changes of energy-related carbon emissions in China: evidence from the PDA approach. (2013). Zhang, Yue-Jun ; Da, Ya-Bin.
    In: Natural Hazards: Journal of the International Society for the Prevention and Mitigation of Natural Hazards.
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  352. Anthropogenic drivers of carbon emissions: scale and counteracting effects. (2013). Hwang, In Chang.
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  353. Eight Methods for Decomposing the Aggregate Energy Intensity of the Economic Structure. (2013). Szep, Tekla Sebestyen .
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  354. European energy efficiency and decarbonization strategies beyond 2030 : A sectoral multi-model decomposition. (2013). Schumacher, Katja ; Sands, Ronald ; Hübler, Michael ; De Cian, Enrica ; DeCian, Enrica ; Mima, Silvana ; Hubler, Michael ; Keppo, Ilkka ; Forster, Hannah .
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  355. Comparison and Analysis of Macro Energy Scenarios in China and a Decomposition-Based Approach to Quantifying the Impacts of Economic and Social Development. (2013). Liu, Pei ; Ma, Linwei ; Pan, Lingying ; Guo, Zheng.
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  356. Activity Sectors and Energy Intensity: Decomposition Analysis and Policy Implications for European Countries (1991–2005). (2013). Ramos-Real, Francisco ; Marrero, Gustavo.
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  357. Decomposition Analysis of Energy-Related Industrial CO 2 Emissions in China. (2013). , ZhifengYang ; Chen, Liang ; Yang, Zhifeng.
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  358. Energy Intensity Developments in 40 Major Economies: Structural Change or Technology Improvement?. (2013). Voigt, Sebastian ; Verdolini, Elena ; Schymura, Michael ; De Cian, Enrica ; DeCian, Enrica .
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  359. The contribution of energy efficiency towards meeting CO2 targets. (2013). Evans, Joanne ; Filippini, Massimo ; Hunt, Lester C..
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  360. Index-based Decomposition and Econometric Analysis of Driving Forces of Biodiversity Change. (2013). Ščasný, Milan ; Melichar, Jan ; KAPROVa, Kateina .
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  361. Who will win the green race? In search of environmental competitiveness and innovation. (2013). Sato, Misato ; Dechezleprêtre, Antoine ; Calel, Raphael ; Bowen, Alex ; Fankhauser, Samuel ; Rydge, James ; Grover, David ; Dechezlepretre, Antoine.
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  362. An analysis of eco-efficiency in energy use and CO2 emissions in the Swedish service industries. (2013). Pardo Martinez, Clara ; Pardo Martinez, Clara Ines, .
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  363. Analysis of energy intensity in manufacturing industry using mixed-effects models. (2013). Kepplinger, D. ; Upadhyaya, S. ; Templ, M..
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  364. Drivers of CO2 emissions in the former Soviet Union: A country level IPAT analysis from 1990 to 2010. (2013). Brizga, Janis ; Feng, Kuishuang ; Hubacek, Klaus.
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  365. The Divisia real energy intensity indices: Evolution and attribution of percent changes in 20 European countries from 1995 to 2010. (2013). Gonzalez, Fernandez P. ; Landajo, M. ; Presno, M. J..
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  366. Decomposition analysis and Innovative Accounting Approach for energy-related CO2 (carbon dioxide) emissions intensity over 1996–2009 in Portugal. (2013). Alves, Margarita Robaina ; Moutinho, Victor.
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  367. Differential output growth across regions and carbon dioxide emissions: Evidence from U.S. and China. (2013). Wang, Chunhua.
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  368. Analysis of rural residential commercial energy consumption in China. (2013). Guo, Fangyan ; Zhang, Ming.
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  369. Decomposing final energy use for heating in the residential sector in Austria. (2013). Holzmann, Angela ; Kratena, Kurt ; Adensam, Heidelinde ; Schmid, Erwin.
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  370. CO2 emissions and economic activity: Short- and long-run economic determinants of scale, energy intensity and carbon intensity. (2013). Karpestam, Peter ; Andersson, Fredrik ; Andersson , Fredrik N. G., ; Andersson, Fredrik N. G., .
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  371. CO2 embodiment in China–Australia trade: The drivers and implications. (2013). Sun, Aijun ; Lau, Henry ; Tan, Hao .
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  372. Decomposing the change of CO2 emissions: A joint production theoretical approach. (2013). Zhang, Jing ; Tan, Qin-Liang .
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  373. An analysis of energy-related greenhouse gas emissions in the Chinese iron and steel industry. (2013). Zhu, Qinghua ; Geng, Yong ; Tian, Yihui .
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  374. Changes in energy efficiency in Australia: A decomposition of aggregate energy intensity using logarithmic mean Divisia approach. (2013). Shahiduzzaman, Md ; Alam, Khorshed ; Shahiduzzaman, Md., .
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  375. Energy efficiency in the Japanese transport sector. (2013). Schipper, Lee ; Lipscy, Phillip Y..
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  376. Irish passenger transport: Data refinements, international comparisons, and decomposition analysis. (2013). Schipper, Lee ; o Gallachoir, Brian P., ; Jennings, Mark .
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  377. Dazzled by diesel? The impact on carbon dioxide emissions of the shift to diesels in Europe through 2009. (2013). Schipper, Lee ; Fulton, Lew .
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  378. Changes in energy requirements of the residential sector in India between 1993–94 and 2006–07. (2013). Das, Aparna ; Paul, Saikat Kumar .
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  379. Decomposition analysis of CO2 emissions from electricity generation in China. (2013). Zhang, Ming ; Liu, Xiao ; Wang, Wenwen ; Zhou, Min.
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  380. The energy transition of the transition economies: An empirical analysis. (2013). Zhang, Fan.
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  381. Changing energy intensity of economies in the world and its decomposition. (2013). Wang, Chunhua.
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  382. Tracking industrial energy efficiency trends using index decomposition analysis. (2013). Ang, B. W. ; Xu, X. Y..
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  383. Estimation of energy-related carbon emissions in Beijing and factor decomposition analysis. (2013). Zhang, Jinyun ; Li, Shengsheng ; Fath, Brian D ; Yang, Zhifeng.
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  384. Are the determinants of CO2 emissions converging among OECD countries?. (2013). Tamarit, Cecilio ; Picazo-Tadeo, Andres ; Camarero, Mariam.
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  385. Does offshoring contribute to reducing domestic air emissions? Evidence from Belgian manufacturing. (2013). Michel, Bernhard.
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  386. Integrated scenarios of energy-related CO2 emissions in Ireland: A multi-sectoral analysis to 2020. (2013). Zhou, Peng ; O´ Mahony, Tadhg ; Sweeney, John ; O'Mahony, Tadhg.
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  387. Index decomposition analysis applied to CO2 emission studies. (2013). Ang, B. W. ; Xu, X. Y..
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  388. The optimal CO2 emissions reduction path in Jiangsu province: An expanded IPAT approach. (2013). Chen, Hong ; Zhao, Xin ; Yue, Ting ; Long, Ruyin.
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  389. A study of energy efficiency of transport sector in China from 2003 to 2009. (2013). Zhou, Guanghui ; Yeung, Iris M. H., ; Chung, William .
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  390. Decomposition analysis for energy-related CO2 emissions intensity over 1996-2009 in Portuguese Industrial Sectors. (2013). Alves, Margarida R. ; Moutinho, Victor.
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  391. THE SPATIOTEMPORAL EVOLUTION OF U.S. CARBON DIOXIDE EMISSIONS: STYLIZED FACTS AND IMPLICATIONS FOR CLIMATE POLICY. (2013). Wing, Ian Sue ; Baldwin, James G..
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  392. Decomposing the changes of energy-related carbon emissions in China: Evidence from the PDA approach. (2013). Zhang, Yue-Jun ; Da, Yabin.
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  393. Using decomposition analysis to evaluate the performance of China’s 30 provinces in CO 2 emission reductions over 2005–2009. (2012). Ren, Xiaosong ; Zhao, Tao ; Lin, Tao ; Kang, Jidong.
    In: Natural Hazards: Journal of the International Society for the Prevention and Mitigation of Natural Hazards.
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  394. Foreign direct investments, energy efficiency, and innovation dynamics. (2012). Erdem, Deniz.
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  395. Changes in energy efficiency in Australia: A decomposition of aggregate energy intensity using Logarithmic Mean Divisia approach. (2012). Shahiduzzaman, Md ; Alam, Khorshed.
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  396. Who will win the green race? In search of environmental competitiveness and innovation. (2012). Sato, Misato ; Dechezleprêtre, Antoine ; Calel, Raphael ; Bowen, Alex ; Fankhauser, Sam ; Rydge, James ; Grover, David ; Dechezlepretre, Antoine.
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  397. Trade and the Environment: An Application of the WIOD Database. (2012). Löschel, Andreas ; Loschel, Andreas ; Schymura, Michael .
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  398. Application of the Structural Decomposition Analysis to assess the indirect energy consumption and air emission changes related to Italian households consumption. (2012). Mistretta, Marina ; Longo, Sonia ; Cellura, Maurizio.
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  399. Trade-off between labor productivity and capital accumulation in Italian energy sector. (2012). Travaglini, Giuseppe.
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  400. Integrated IDA–ANN–DEA for assessment and optimization of energy consumption in industrial sectors. (2012). Jimoh, A. A. ; Kholopane, P. A. ; Olanrewaju, O. A..
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  401. Regional energy-related carbon emission characteristics and potential mitigation in eco-industrial parks in South Korea: Logarithmic mean Divisia index analysis based on the Kaya identity. (2012). Dodbiba, Gjergj ; Fujita, Toyohisa ; Jung, Seok ; An, Kyoung-Jin .
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  402. European CO2 emission trends: A decomposition analysis for water and aviation transport sectors. (2012). Galmarini, S. ; Andreoni, V..
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  403. Uncovering China’s greenhouse gas emission from regional and sectoral perspectives. (2012). Guan, Dabo ; Liu, Zhu ; Geng, Yong ; Lindner, Soeren .
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  404. Decoupling economic growth from carbon dioxide emissions: A decomposition analysis of Italian energy consumption. (2012). Galmarini, S. ; Andreoni, V..
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  405. Decomposition analysis of energy-related carbon emissions from UK manufacturing. (2012). Hammond, G. P. ; Norman, J. B..
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  406. Features, trajectories and driving forces for energy-related GHG emissions from Chinese mega cites: The case of Beijing, Tianjin, Shanghai and Chongqing. (2012). Xue, Bing ; Liu, Zhu ; Geng, Yong ; Pan, Ying ; Xi, Fengming, ; Fujita, Tsuyoshi ; Zhang, Tianzhu ; Liang, Sai.
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  407. What drives the change in Chinas energy intensity: Combining decomposition analysis and econometric analysis at the provincial level. (2012). Zheng, Xinye ; Song, Feng.
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  408. Changes in CO2 emission intensities in the Mexican industry. (2012). Gonzalez, Domingo ; Martinez, Manuel .
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  409. Energy consumption and CO2 emissions in Chinas cement industry: A perspective from LMDI decomposition analysis. (2012). Xu, Jin-Hua ; Fan, Ying ; Eichhammer, Wolfgang ; Fleiter, Tobias .
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  410. Combining physical and economic output data to analyse energy and CO2 emissions trends in industry. (2012). Cahill, Caiman J. ; o Gallachoir, Brian P., .
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  411. Industrial energy efficiency with CO2 emissions in China: A nonparametric analysis. (2012). Zhou, Peng ; Fan, L. W. ; Wu, F..
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  412. The impact of Chinas differential electricity pricing policy on power sector CO2 emissions. (2012). Kahrl, Fredrich ; Wang, Xiaoya ; Yan, Qingyou ; Hu, Junfeng .
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  413. The driving forces of change in energy-related CO2 emissions in Ireland: A multi-sectoral decomposition from 1990 to 2007. (2012). Zhou, Peng ; O´ Mahony, Tadhg ; Sweeney, John .
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  414. Effects of decoupling of carbon dioxide emission by Chinese nonferrous metals industry. (2012). Ren, Shenggang ; Hu, Zhen.
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  415. Coupling model of energy consumption with changes in environmental utility. (2012). Jim, C. Y. ; He, Hongming.
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  416. Energy efficiency and policy in Swedish pulp and paper mills: A data envelopment analysis approach. (2012). Henriksson, Eva ; Lundmark, Robert ; Blomberg, Jerry .
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  417. Decomposition analysis of gas consumption in the residential sector in Ireland. (2012). Gallachir, Brian P. ; Rogan, Fionn ; Cahill, Caiman J..
    In: Energy Policy.
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  418. Energy intensity and its determinants in Chinas regional economies. (2012). Wu, Yanrui.
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  419. Residential energy consumption in urban China: A decomposition analysis. (2012). Ma, Chunbo ; Zhao, Xiaoli ; Li, NA ; Ali, N.
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  420. Structural change and convergence of energy intensity across OECD countries, 1970–2005. (2012). Mulder, Peter ; de Groot, Henri ; de Groot, Henri L. F., ; de Groot, Henri L. F., .
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  421. International comparison of industrial CO2 emission trends and the energy efficiency paradox utilizing production-based decomposition. (2012). Kim, Yeonbae.
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  422. Decomposition of aggregate CO2 emissions within a joint production framework. (2012). Yuan, Jiahai ; Tan, Ya-Kun ; Zhang, Xing-Ping .
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  423. Energy content in manufacturing exports: A cross-country analysis. (2012). Amador, João.
    In: Energy Economics.
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  424. Structural decomposition analysis applied to energy and emissions: Some methodological developments. (2012). Ang, B. W. ; Su, Bin.
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  425. Attribution of changes in Divisia real energy intensity index — An extension to index decomposition analysis. (2012). Ang, B. W. ; Choi, Ki-Hong.
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  426. Economic development and carbon dioxide emissions in China: Provincial panel data analysis. (2012). WEI, Chu ; Du, Limin ; Cai, Shenghua .
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  427. Are the determinants of CO2 emissions converging among OECD countries?. (2012). Tamarit, Cecilio ; Picazo-Tadeo, Andres ; Camarero, Mariam.
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  428. Provincial allocation of carbon emission reduction targets in China: An approach based on improved fuzzy cluster and Shapley value decomposition. (2012). YU, Shiwei ; Wei, Yi-Ming ; Wang, Ke.
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  429. CONSTRUCTION, STABILITY AND PREDICTABILITY OF AN INPUT-OUTPUT TIME-SERIES FOR AUSTRALIA. (2011). Wood, Richard.
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  430. Prospects and challenges for an ASEAN energy integration policy. (2011). Resosudarmo, Budy ; Nurdianto, Ditya .
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  431. Changing Lifestyles Towards a Low Carbon Economy: An IPAT Analysis for China. (2011). Feng, Kuishuang ; Hubacek, Klaus ; Chen, Bin.
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  432. Monitoring Energy Use and Energy Efficiency in the Dutch Service Sector. (2011). Ramrez, Andrea ; Patel, Martin K. ; Blok, Kornelis .
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  433. Energy-Productivity Performance Across 14 OECD Countries: The Role of Energy-Extensive Sectors. (2011). Henri L. F. de Groot, ; Mulder, Peter ; Henri L. F. de Groot, ; Henri L. F. de Groot, ; Henri L. F. de Groot, .
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  434. Energy Efficiency and Technological Change. (2011). Henri L. F. de Groot, ; Raymond J. G. M. Florax, ; Raymond J. G. M. Florax, ; Mulder, Peter ; Henri L. F. de Groot, ; Henri L. F. de Groot, ; Henri L. F. de Groot, .
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  435. Identifying the sources of energy use change: Multiple calibration decomposition analysis and structural decomposition analysis. (2011). Tamura, Makoto ; Okushima, Shinichiro.
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  436. Sources of energy productivity growth and its distribution dynamics in China. (2011). Wang, Chunhua.
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  437. Energy consumption and related CO2 emissions in five Latin American countries: Changes from 1990 to 2006 and perspectives. (2011). Ruiz, Belizza J. ; Ozawa, Leticia ; Sheinbaum, Claudia .
    In: Energy.
    RePEc:eee:energy:v:36:y:2011:i:6:p:3629-3638.

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  438. A sectoral decomposition analysis of Turkish CO2 emissions over 1990–2007. (2011). Kumbarolu, Gurkan .
    In: Energy.
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  439. Energy efficiency trends and policy in Slovenia. (2011). Al-Mansour, Fouad .
    In: Energy.
    RePEc:eee:energy:v:36:y:2011:i:4:p:1868-1877.

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  440. Using LMDI method to analyze transport sector CO2 emissions in China. (2011). Zhang, M. ; Wang, W. W. ; Zhou, M..
    In: Energy.
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  441. An assessment of factors impacting Canadas electricity sectors GHG emissions. (2011). Weber, Chris J. ; Steenhof, Paul A..
    In: Energy Policy.
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  442. Decomposition of CO2 emissions change from energy consumption in Brazil: Challenges and policy implications. (2011). Kaneko, Shinji ; De Freitas, Luciano.
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  443. Fuel economy of new passenger cars in Mexico: Trends from 1988 to 2008 and prospects. (2011). Chavez-Baeza, Carlos ; Sheinbaum-Pardo, Claudia .
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  444. Regional differences in the factors that influence China’s energy-related carbon emissions, and potential mitigation strategies. (2011). Zhang, Jinyun ; Yang, Zhifeng ; Li, Shengsheng .
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  445. The energy intensity in Lithuania during 1995–2009: A LMDI approach. (2011). Baležentis, Tomas ; Baleentis, Alvydas ; Streimikiene, Dalia.
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  446. Decomposition analysis of energy consumption in Chinese transportation sector. (2011). Li, Huanan ; Mu, Hailin ; Zhou, Min ; Zhang, Ming.
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  447. A study of residential energy use in Hong Kong by decomposition analysis, 1990–2007. (2011). Ip, C. Y. ; Chung, William ; Kam, M. S..
    In: Applied Energy.
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  448. South Africa’s electricity consumption: A sectoral decomposition analysis. (2011). Inglesi-Lotz, Roula ; Blignaut, James.
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  449. Socio-technological impact analysis using an energy IO approach to GHG emissions issues in South Korea. (2011). Choi, Ki-Hong ; Chung, Whan-Sam ; Tohno, Susumu .
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  450. Dutch Sectoral Energy Intensity Developments in International Perspective, 1987–2005. (2011). Mulder, Peter ; de Groot, Henri.
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  451. Achieving Long-term Energy, Transport and Climate Objectives: Multidimensional Scenario Analysis and Modeling Within a Systems Level Framework. (2011). McCollum, David L.
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  452. Residential Energy Consumption in Urban China. (2011). Ma, Chunbo ; Zhao, Xiaoli ; Li, NA ; Ali, N.
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  453. Age-Structure, Urbanization, and Climate Change in Developed Countries: Revisiting STIRPAT for Disaggregated Population and Consumption-Related Environmental Impacts. (2010). liddle, brantley ; Lung, Sidney .
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  454. Greenhouse gas emissions and the energy system: decomposition analysis and the environmental Kuznets curve. (2010). Borghesi, Simone ; Vercelli, Alessandro.
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  455. Technology, development, and the environment. (2010). Ho, Mun ; Fisher-Vanden, Karen.
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  456. Changes in the GHG emission intensity in EU-15: Lessons from a decomposition analysis. (2010). Bhattacharyya, Subhes C. ; Matsumura, Wataru .
    In: Energy.
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  457. Decomposing the influencing factors of industrial carbon emissions in Shanghai using the LMDI method. (2010). Tan, Lirong ; Liu, Yuan ; Zhang, Weiguo ; Zhao, Min ; Ji, Minhe ; Yu, Lizhong .
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  458. Chinas energy consumption: A perspective from Divisia aggregation approach. (2010). Wei, Yi-Ming ; Liao, Hua.
    In: Energy.
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  459. Scenarios of Chinas oil consumption per capita (OCPC) using a hybrid Factor Decomposition–System Dynamics (SD) simulation. (2010). Tao, Zaipu.
    In: Energy.
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  460. Changes in industrial electricity consumption in china from 1998 to 2007. (2010). Mu, Hailin ; Ning, Yadong ; Kang, Xudong ; Wang, Wenchao ; Song, Rongchen .
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  461. Driving forces of residential CO2 emissions in urban and rural China: An index decomposition analysis. (2010). Zhou, Peng ; Donglan, Zha ; Peng, Zhou ; Dequn, Zhou .
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  462. Energy metrics for driving competitiveness of countries: Energy weakness magnitude, GDP per barrel and barrels per capita. (2010). Coccia, Mario.
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  463. Comparison of the evolution of energy intensity in Spain and in the EU15. Why is Spain different?. (2010). Ocaa, Carlos ; Mendiluce, Maria ; Perez-Arriaga, Ignacio.
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  464. Decomposition analysis and mitigation strategies of CO2 emissions from energy consumption in South Korea. (2010). Oh, Ilyoung ; Mulugetta, Yacob ; Wehrmeyer, Walter .
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  465. Monitoring energy efficiency trends in European industry: Which top-down method should be used?. (2010). Gallachoir, Brian P. ; Cahill, Caiman J..
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  466. What causes the change in energy demand in the economy?: The role of technological change. (2010). Tamura, Makoto ; Okushima, Shinichiro.
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  467. Using logarithmic mean Divisia index to analyze changes in energy use and carbon dioxide emissions in Mexicos iron and steel industry. (2010). Sheinbaum, Claudia ; Ozawa, Leticia ; Castillo, Daniel .
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  468. Accounting frameworks for tracking energy efficiency trends. (2010). Zhou, Peng ; Mu, A. R. ; Ang, B. W..
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  469. Account for sector heterogeneity in Chinas energy consumption: Sector price indices vs. GDP deflator. (2010). Ma, Chunbo.
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  470. Measuring energy efficiency in the context of an emerging economy: The case of indian manufacturing. (2010). Mukherjee, Kankana.
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  471. The modest environmental relief resulting from the transition to a service economy. (2010). Kander, Astrid ; Henriques, Sofia.
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  472. Decomposing the change of CO2 emissions in China: A distance function approach. (2010). Li, Man.
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  473. An economic analysis of Midwestern US criteria pollutant emissions trends from 1970 to 2000. (2010). Hewings, Geoffrey ; Tao, Zhining ; Donaghy, Kieran.
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  474. What is the role of openness for Chinas aggregate industrial SO2 emission?: A structural analysis based on the Divisia decomposition method. (2010). He, Jie.
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  475. The contribution degree of sub-sectors to structure effect and intensity effects on industry energy intensity in China from 1993 to 2003. (2009). Zhou, Dequn ; Ding, Ning ; Zha, Donglan.
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  476. Understanding Long-Term Energy Use and Carbon Dioxide Emissions in the USA. (2009). Tol, Richard ; Socolow, Robert H. ; Tol, Richard S. J., ; Tol, Richard S. J., ; Pacala, Stephen W..
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  477. Energy use in the Greek manufacturing sector: A methodological framework based on physical indicators with aggregation and decomposition analysis. (2009). Haralambopoulos, Dias ; Salta, Myrsine ; Polatidis, Heracles .
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  478. Decomposition analysis of CO2 emissions from passenger cars: The cases of Greece and Denmark. (2009). Diakoulaki, Danae ; Papagiannaki, Katerina .
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  479. Decomposing road freight energy use in the United Kingdom. (2009). Sorrell, Steve ; Pujol, Javier ; Champion, Toby ; Lehtonen, Markku .
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  480. Determinants of energy demand in the French service sector: A decomposition analysis. (2009). Decellas, Fabrice ; Mairet, Nicolas .
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  481. Factors affecting CO2 emission from the power sector of selected countries in Asia and the Pacific. (2009). Anandarajah, Gabrial ; SHRESTHA, RAM M. ; Liyanage, Migara H..
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  482. Measuring structural change and energy use: Decomposition of the US economy from 1997 to 2002. (2009). Weber, Christopher L..
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  483. Accounting for energy-related CO2 emission in China, 1991-2006. (2009). Mu, Hailin ; Ning, Yadong ; Zhang, Ming.
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  484. Industrial CO2 emissions from energy use in Korea: A structural decomposition analysis. (2009). Yoo, Seung-Hoon ; Lim, Hea-Jin ; Kwak, Seung-Jun .
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  485. Achieving deep reductions in US transport greenhouse gas emissions: Scenario analysis and policy implications. (2009). Yang, Christopher ; McCollum, David.
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  486. Comparative study on efficiency performance of listed coal mining companies in China and the US. (2009). Zeng, Catherine ; Wu, Junjie ; Fang, Hong.
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  487. Properties and linkages of some index decomposition analysis methods. (2009). Mu, A. R. ; Huang, H. C..
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  488. Urban energy use and carbon emissions from cities in China and policy implications. (2009). Dhakal, Shobhakar .
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  489. Accounting for early action in the European Union Emission Trading Scheme. (2009). Gallastegui, M. Carmen ; Arto, Iñaki ; Ansuategi, Alberto.
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  490. Generalized Fisher index or Siegel-Shapley decomposition?. (2009). de Boer, Paul .
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  491. Lifestyles, technology and CO2 emissions in China: A regional comparative analysis. (2009). Guan, Dabo ; Hubacek, Klaus ; Feng, Kuishuang.
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  492. Decomposition of energy-related CO2 emission over 1991-2006 in China. (2009). Mu, Hailin ; Song, Yongchen ; Ning, Yadong ; Zhang, Ming.
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  493. Different scenarios for achieving radical reduction in carbon emissions: A decomposition analysis. (2009). Bows, Alice ; Shackley, Simon ; Mander, Sarah ; Ekins, Paul ; Agnolucci, Paolo ; Anderson, Kevin ; Iacopini, Giorgia .
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  494. Decomposition of manufacturing energy-use in IEA countries: How do recent developments compare with historical long-term trends?. (2009). Unander, Fridtjof .
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  495. Meeting an 80% Reduction in Greenhouse Gas Emissions from Transportation by 2050: A Case Study in California. (2009). Yang, Christopher ; Leighty, Wayne ; McCarthy, Ryan ; McCollum, David L.
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  496. Technology, International Trade, and Pollution from US Manufacturing. (2009). Levinson, Arik.
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  497. Air pollution and income distribution in India. (2008). Mukhopadhyay, Kakali.
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  498. Technology, International Trade, and Pollution from U.S. Manufacturing. (2008). Levinson, Arik.
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  499. Explaining the declining energy intensity of the U.S. economy. (2008). Wing, Ian Sue.
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  500. Sustainable reference methodology for energy end-use efficiency data in the EU. (2008). Papadopoulou, Alexandra G. ; Ragwitz, Mario ; Psarras, John ; Doukas, Haris ; Schlomann, Barbara .
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  501. CO2 emissions in Greece for 1990–2002: A decomposition analysis and comparison of results using the Arithmetic Mean Divisia Index and Logarithmic Mean Divisia Index techniques. (2008). Haralambopoulos, Dias ; Polatidis, Heracles ; Hatzigeorgiou, Emmanouil .
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  502. What goes down must come up? Trends of industrial electricity use in the North-West of Russia. (2008). Korppoo, Anna ; Kinnunen, Miia ; Luukkanen, Jyrki ; Vehmas, Jarmo .
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  503. Linear programming models for measuring economy-wide energy efficiency performance. (2008). Zhou, Peng ; Ang, B. W..
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  511. Energy use efficiency in U.S. manufacturing: A nonparametric analysis. (2008). Mukherjee, Kankana.
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  512. A survey of data envelopment analysis in energy and environmental studies. (2008). Zhou, Peng ; Ang, B. W. ; Poh, K. L..
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  513. What Factors Have Changed Japanese Resource Productivity?. (2008). Nansai, Keisuke ; Matsuno, Yu ; Moriguchi, Yuichi ; Murakami, Shinsuke ; Matsui, Shigekazu ; Hashimoto, Seiji .
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  515. Technology, International Trade, and Pollution from U.S. Manufacturing. (2007). Levinson, Arik.
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  516. Technology, International Trade, and Pollution from U.S. Manufacturing. (2007). Levinson, Arik.
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  517. Renewable energy systems: A societal and technological platform. (2007). Haralambopoulos, Dias A. ; Polatidis, Heracles .
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  518. Decomposing energy productivity change: A distance function approach. (2007). Wang, Chunhua.
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  519. The impact of ICT investment and energy price on industrial electricity demand: Dynamic growth model approach. (2007). Lee, Jongsu ; Cho, Youngsang ; Kim, Tai-Yoo .
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  520. What induced Chinas energy intensity to fluctuate: 1997-2006?. (2007). Wei, Yi-Ming ; Liao, Hua ; Fan, Ying.
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  521. Scenario-based analyses of energy system development and its environmental implications in Thailand. (2007). Liyanage, Migara H. ; Malla, Sunil ; SHRESTHA, RAM M..
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  522. Decomposition for emission baseline setting in Chinas electricity sector. (2007). Steenhof, Paul A..
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  523. Handling zero values in the logarithmic mean Divisia index decomposition approach. (2007). Ang, B. W. ; Liu, NA.
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  524. Calculating economy-wide energy intensity decline rate: The role of sectoral output and energy shares. (2007). Baksi, Soham ; Green, Chris.
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  525. Multiple calibration decomposition analysis: Energy use and carbon dioxide emissions in the Japanese economy, 1970-1995. (2007). Tamura, Makoto ; Okushima, Shinichiro.
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  528. Income growth and atmospheric pollution in Spain: An input-output approach. (2007). Serrano, Mònica ; Roca, Jordi.
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  529. Changes in carbon intensity in China: Empirical findings from 1980-2003. (2007). Wei, Yi-Ming ; Liu, Lancui ; Wu, Gang ; Fan, Ying ; Tsai, Hsien-Tang .
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  530. How do market reforms affect Chinas responsiveness to environmental policy?. (2007). Ho, Mun ; Fisher-Vanden, Karen.
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  531. The Impact of Structural Change on Physical Flows in the Economy: Forecasting and Backcasting Using Structural Decomposition Analysis. (2006). van den Bergh, Jeroen ; Hoekstra, Rutger.
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  532. Energy Conservation in the United States: Understanding its Role in Climate Policy. (2006). Metcalf, Gilbert.
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  533. Mixing oil and water? Using hybrid input-output tables in a Structural decomposition analysis. (2006). Stage, Jesper ; Dietzenbacher, Erik.
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  534. UNDERSTANDING LONG-TERM ENERGY USE AND CARBON DIOXIDE EMISSIONS IN THE USA. (2006). Tol, Richard ; Socolow, Robert H. ; Pacala, Stephen W..
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  535. Energy Conservation in the United States: Understanding its Role in Climate Policy. (2006). Metcalf, Gilbert.
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  536. A bottom-up decomposition analysis of energy-related CO2 emissions in Greece. (2006). Diakoulaki, D. ; Papayannakis, L. ; Mavrotas, G. ; Orkopoulos, D..
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  537. Monitoring changes in economy-wide energy efficiency: From energy-GDP ratio to composite efficiency index. (2006). Ang, B. W..
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  538. Decomposition analysis of CO2 emission intensity between oil-producing and non-oil-producing sub-Saharan African countries. (2006). Ikeme, Anthony Jekwu ; Ebohon, Obas John.
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  539. Dynamics of energy-related CO2 emissions in China during 1980 to 2002: The relative importance of energy supply-side and demand-side effects. (2006). Kaneko, Shinji ; Wu, Libo ; Matsuoka, Shunji .
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  540. A cross-country analysis of aggregate energy and carbon intensities. (2006). Ang, B. W. ; Liu, N..
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  541. Decomposing electric power plant emissions within a joint production framework. (2006). Pasurka, Carl ; Pasurka, Carl Jr., .
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  542. Index number analysis of Namibian water intensity. (2006). Stage, Jesper ; Miller, Richard ; Luyanga, Shadrick.
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  543. Decomposition analysis and the mean-rate-of-change index. (2006). Lenzen, Manfred.
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  544. Income Growth and Atmospheric Pollution in Spain: An Input-Output Approach. (2006). Serrano, Mònica ; Roca, Jordi.
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  545. Income growth and atmospheric pollution in Spain: an Input-Output approach. (2006). Serrano, Mònica ; Roca, Jordi.
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  546. Incorporating sustainability indicators into a computable general equilibrium model of the scottish economy. (2005). Turner, Karen ; Swales, John ; McGregor, Peter ; Ferguson, Linda ; Yin, Ya.
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  547. Le transport de marchandises et la croissance économique. (2005). Brunel, Julien.
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  548. The non-energy intensive manufacturing sector.. (2005). Ramirez, C. A. ; Patel, M. ; Blok, K..
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  549. Decomposition of energy-related CO2 emission in China: 1957–2000. (2005). Wang, Can ; Zou, Ji ; Chen, Jining .
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  550. Changes in energy demand in Thai industry between 1981 and 2000. (2005). Ussanarassamee, Arjaree ; Bhattacharyya, Subhes C..
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  551. Changes in energy intensities of Thai industry between 1981 and 2000: a decomposition analysis. (2005). Ussanarassamee, Arjaree ; Bhattacharyya, Subhes C..
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  552. Carbon emission coefficient of power consumption in India: baseline determination from the demand side. (2005). Nag, Barnali ; Parikh, Jyoti K..
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  553. Structural change in energy use. (2005). Schafer, Andreas.
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  554. Driving forces behind the stagnancy of Chinas energy-related CO2 emissions from 1996 to 1999: the relative importance of structural change, intensity change and scale change. (2005). Kaneko, Shinji ; Wu, Libo ; Matsuoka, Shunji .
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  555. What is driving Chinas decline in energy intensity?. (2004). jefferson, gary ; Fisher-Vanden, Karen ; Liu, Hongmei ; Tao, Quan.
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  556. Decomposition analysis for policymaking in energy:: which is the preferred method?. (2004). Ang, B. W..
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  557. The European Union balancing between CO2 reduction commitments and growth policies: decomposition analyses. (2004). Kaivo-oja, Jari ; Luukkanen, Jyrki.
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  558. Decomposition of energy and CO2 intensities of Thai industry between 1981 and 2000. (2004). Ussanarassamee, Arjaree ; Bhattacharyya, Subhes C..
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  559. A generalized Fisher index approach to energy decomposition analysis. (2004). Ang, B. W. ; Liu, F. L..
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  560. Effects of human behavior on aggregate carbon intensity of personal transportation: comparison of 10 OECD countries for the period 1970-1993. (2004). Greening, Lorna.
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  561. La evolución de la intensidad energética de la industria vasca entre 1982-2001: Un análisis de descomposición. (2003). Ansuategi, Alberto ; Arto, Iaki.
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  562. Perfect decomposition techniques in energy and environmental analysis. (2003). Ang, B. W. ; Liu, F. L. ; Chew, E. P..
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  563. Decomposition of aggregate energy intensity changes in two measures: ratio and difference. (2003). Ang, B. W. ; Choi, Ki-Hong.
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  564. Comparing structural decomposition analysis and index. (2003). van den Bergh, Jeroen ; Hoekstra, Rutger ; van den Bergh, Jeroen C. J. M., .
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  565. International comparison of sectoral energy- and labour-productivity performance; stylised facts and decomposition of trends. (2003). Mulder, Peter ; de Groot, Henri.
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  566. Structural Decomposition Analysis of Physical Flows in the Economy. (2002). van den Bergh, Jeroen ; Hoekstra, Rutger.
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  567. Energy Efficiency Trends and Policies: Cross-Country Comparison in Europe. (2002). Gunay, Emine ; CEYLAN, Duygu ; E. Nur Ozkan Gunay, .
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  568. Decomposition Analysis of CO2 Emissions from Passenger Cars: The cases of Greece and Denmark. (2002). Diakoulaki, Danae ; Papagiannaki, Katerina .
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  569. Measuring thermal efficiency improvement in power generation. (2002). Ang, B. W. ; Choi, Ki-Hong.
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  570. A comparison of Nordic energy and CO2 intensity dynamics in the years 1960–1997. (2002). Kaivo-oja, Jari ; Luukkanen, J..
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  571. A Shapley decomposition of carbon emissions without residuals. (2002). Schoors, Koen ; Albrecht, Johan ; Francois, Delphine.
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  572. ASEAN tigers and sustainability of energy use--decomposition analysis of energy and CO2 efficiency dynamics. (2002). Kaivo-oja, Jari ; Luukkanen, Jyrki.
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  573. Boundary problem in carbon emission decomposition. (2002). Ang, B. W. ; Choi, Ki-Hong.
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  574. A new energy decomposition method: perfect in decomposition and consistent in aggregation. (2001). Ang, B. W. ; Liu, F. L..
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  575. DECOMPOSITION OF NAMIBIAN ENERGY INTENSITY. (2001). Stage, Jesper.
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    Full description at Econpapers || Download paper

  40. Is the energy intensity a less useful indicator than the carbon factor in the study of climate change?. (1999). Ang, B. W..
    In: Energy Policy.
    RePEc:eee:enepol:v:27:y:1999:i:15:p:943-946.

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