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Decomposition of energy-related CO2 emission in China: 1957–2000. (2005). Wang, Can ; Zou, Ji ; Chen, Jining .
In: Energy.
RePEc:eee:energy:v:30:y:2005:i:1:p:73-83.

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  81. Chinas numerical management system for reducing national energy intensity. (2016). Yu, Yuqing ; Li, Huimin ; Wu, Tong ; Zhao, Xiaofan ; Qi, YE.
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  82. Decoupling CO2 emissions and industrial growth in China over 1993–2013: The role of investment. (2016). Shao, Shuai ; Zhao, Xingrong ; Zhang, XI.
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  83. An analysis of the driving factors of energy-related CO2 emission reduction in China from 2005 to 2013. (2016). Zhang, Xiliang ; Weng, Yuyan ; Qi, Tianyu ; He, Jiankun .
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  84. New provincial CO2 emission inventories in China based on apparent energy consumption data and updated emission factors. (2016). Shao, Shuai ; Shan, Yuli ; Guan, Dabo ; Wang, Peng ; Xu, Xinwanghao ; Liu, Zhu.
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  85. Impacts of industrial transition on water use intensity and energy-related carbon intensity in China: A spatio-temporal analysis during 2003–2012. (2016). Cai, Jialiang ; Varis, Olli ; Yin, HE.
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  86. Assessing regional progress towards a ‘Green Energy Economy’. (2016). MARKANDYA, ANIL ; Mundaca, Luis.
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  87. Decomposition analysis of Philippine CO2 emissions from fuel combustion and electricity generation. (2016). Sumabat, Ana Karmela ; Yu, Krista Danielle ; Geng, Yong ; Li, Richard ; Hao, Han ; Lopez, Neil Stephen .
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  88. 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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  89. Study on China’s energy-related CO 2 emission at provincial level. (2015). Song, Yan ; Dai, Shuang ; Zhang, Ming.
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  90. Decomposition and allocation of energy-related carbon dioxide emission allowance over provinces of China. (2015). Chen, Yanan ; Lin, Sheng.
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  91. 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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  92. 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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  93. 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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  94. Carbon emissions from energy intensive industry in China: Evidence from the iron & steel industry. (2015). Lin, Boqiang ; Wang, Xiaolei.
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  95. 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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  96. 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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  97. Driving factors behind carbon dioxide emissions in China: A modified production-theoretical decomposition analysis. (2015). Wang, Qunwei ; Chiu, yung-ho.
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  98. The impact of economic growth, industrial structure and urbanization on carbon emission intensity in China. (2014). Zhang, Yue-Jun ; Liu, Zhao ; Tan, Tai-De .
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  99. Do Economic and Financial Development Increase Carbon Emission in Pakistan: Empirical Analysis through ARDL Cointegration and VECM Causality. (2014). Hurr, Maryam ; Shahzad, Syed Jawad Hussain, ; Zakaria, Muhammad ; Rehman, Mobeen Ur .
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  100. Decomposition analysis of the change of energy intensity of manufacturing industries in Thailand. (2014). Buddhivanich, Atinat ; Wiboonchutikula, Paitoon ; Chontanawat, Jaruwan .
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  101. 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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  102. 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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  103. 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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  104. Uncovering China’s transport CO2 emission patterns at the regional level. (2014). Chiu, Anthony ; Geng, Yong ; Liu, Yaxuan ; Hao, Han ; Guo, Bin ; Franke, Bernd .
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  105. China׳s carbon mitigation strategies: Enough?. (2014). Liao, Hua ; Wang, Can ; Cai, Wenjia ; Lin, Jie.
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  106. 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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  107. Factorial decomposition of CO2 emissions: A generalized Divisia index approach. (2014). Vaninsky, Alexander.
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  108. Convergence behavior of carbon dioxide emissions in China. (2014). Wang, Yiming ; Cai, Changda ; Zhang, Pei ; Huang, Dake .
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  109. Changes of energy-related GHG emissions in China: An empirical analysis from sectoral perspective. (2014). Kang, Jidong ; Zhao, Tao ; Liu, Nan.
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  110. CO2 emissions reduction potential in China’s cement industry compared to IEA’s Cement Technology Roadmap up to 2050. (2014). Xu, Jin-Hua ; Fan, Ying ; Eichhammer, Wolfgang ; Fleiter, Tobias .
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  111. 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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  112. The value of a clear, long-term climate policy agenda: A case study of China’s power sector using a multi-region optimization model. (2014). Wang, Can ; Cai, Wenjia ; Ye, Minhua ; Chen, Jining .
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  113. Decomposing the changes of energy-related carbon emissions in China: evidence from the PDA approach. (2013). Zhang, Yue-Jun ; Da, Ya-Bin.
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  114. Policies and Practices of Low Carbon City Development in China. (2013). Zhang, ZhongXiang.
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  115. Global convergence in per capita CO2 emissions. (2013). Lin, Boqiang.
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  116. Measuring carbon dioxide emission performance in Chinese provinces: A parametric approach. (2013). Zhou, Peng ; Wang, Qunwei ; Shen, N..
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  117. 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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  118. Differential output growth across regions and carbon dioxide emissions: Evidence from U.S. and China. (2013). Wang, Chunhua.
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  119. Walking away from a low-carbon economy? Recent and historical trends using a regional decomposition analysis. (2013). Mundaca, Luis ; MARKANDYA, ANIL ; Mundaca T., Luis, ; Norgaard, Jorgen .
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  120. Decomposition of Irelands carbon emissions from 1990 to 2010: An extended Kaya identity. (2013). O´ Mahony, Tadhg ; O'Mahony, Tadhg.
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  121. Carbon dioxide mitigation target of China in 2020 and key economic sectors. (2013). Liang, Sai ; Wang, Yafei.
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  122. Decomposing the change of CO2 emissions: A joint production theoretical approach. (2013). Zhang, Jing ; Tan, Qin-Liang .
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  123. Industrial structural transformation and carbon dioxide emissions in China. (2013). Zhang, Jie ; Zhou, Xiaoyan ; Li, Junpeng .
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  124. Energy intensity and foreign direct investment: A Chinese city-level study. (2013). Sun, Puyang ; Elliott, Robert ; Elliott, Robert J. R., ; Chen, Siyang.
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  125. 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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  126. 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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  127. Examining the impact factors of energy-related CO2 emissions using the STIRPAT model in Guangdong Province, China. (2013). Wei, Yi-Ming ; Zhu, Bangzhu ; Wu, Wanshui ; Wang, Ping.
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  128. 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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  129. The Composite Impact of the Low-Carbon Development Policies in Beijing’s Urbanization: A Regional Dynamic CGE Modeling. (2013). Zhang, Yumei ; Wei, Taoyuan ; Fan, Mingtai.
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  130. 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.
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  131. European CO2 emission trends: A decomposition analysis for water and aviation transport sectors. (2012). Galmarini, S. ; Andreoni, V..
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  132. 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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  133. 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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  134. Effects of decoupling of carbon dioxide emission by Chinese nonferrous metals industry. (2012). Ren, Shenggang ; Hu, Zhen.
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  135. International comparison of industrial CO2 emission trends and the energy efficiency paradox utilizing production-based decomposition. (2012). Kim, Yeonbae.
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  136. Regional variation of energy-related industrial CO2 emissions mitigation in China. (2012). Ren, Shenggang ; Chen, Xiaohong ; Fu, Xiang .
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  137. Economic development and carbon dioxide emissions in China: Provincial panel data analysis. (2012). WEI, Chu ; Du, Limin ; Cai, Shenghua .
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  138. An empirical research on the influencing factors of regional CO2 emissions: Evidence from Beijing city, China. (2012). Zhang, Yixiang ; Wang, Zhao-Hua ; Yin, Fangchao .
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  139. Regional societal and ecosystem metabolism analysis in China: A multi-scale integrated analysis of societal metabolism(MSIASM) approach. (2011). Xue, Bing ; Geng, Yong ; Liu, YE ; Zhao, Hengxin .
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  140. Variance analysis of global CO2 emission – A management accounting approach for decomposition study. (2011). Pani, Ratnakar ; Mukhopadhyay, Ujjaini.
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  141. Interactions of energy technology development and new energy exploitation with water technology development in China. (2011). Liang, Sai ; Zhang, Tianzhu.
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  142. Carbon inequality at the sub-national scale: A case study of provincial-level inequality in CO2 emissions in China 1997-2007. (2011). Clarke-Sather, Afton ; Li, Yan ; Wang, Qin ; Zeng, Jingjing ; Qu, Jiansheng.
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  143. The effect of carbon tax on per capita CO2 emissions. (2011). Lin, Boqiang.
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  144. 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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  145. What is driving CO2 emissions in a typical manufacturing center of South China? The case of Jiangsu Province. (2011). Liang, Sai ; Zhang, Tianzhu.
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  146. Decomposing the decoupling of CO2 emissions and economic growth in Brazil. (2011). Kaneko, Shinji ; De Freitas, Luciano.
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  147. A study of residential energy use in Hong Kong by decomposition analysis, 1990–2007. (2011). Ip, C. Y. ; Chung, William ; Kam, M. S..
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  148. Examining the driving forces for improving China’s CO2 emission intensity using the decomposing method. (2011). Wang, Jianhui ; Tan, Zhongfu ; Li, LI.
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  149. 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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  150. Physical sustainability assessment for the China society: Exergy-based systems account for resources use and environmental emissions. (2010). Zhang, BO ; Chen, G. Q..
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  151. 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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  152. An analysis of the driving forces of CO2 emissions embodied in Japan-China trade. (2010). Ishikawa, Masanobu ; Wang, Can ; Dong, Yanli ; Lidong, Yan ; Liu, Xianbing .
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  153. Account for sector heterogeneity in Chinas energy consumption: Sector price indices vs. GDP deflator. (2010). Ma, Chunbo.
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  154. Supply-side structural effect on carbon emissions in China. (2010). Zhang, Youguo .
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  155. Decomposing the change of CO2 emissions in China: A distance function approach. (2010). Li, Man.
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  156. 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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  157. Accounting for energy-related CO2 emission in China, 1991-2006. (2009). Mu, Hailin ; Ning, Yadong ; Zhang, Ming.
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  158. Transport sector CO2 emissions growth in Asia: Underlying factors and policy options. (2009). Timilsina, Govinda ; Shrestha, Ashish .
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  159. Decomposition of energy-related CO2 emission over 1991-2006 in China. (2009). Mu, Hailin ; Song, Yongchen ; Ning, Yadong ; Zhang, Ming.
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  160. Chinas regional carbon emissions change over 1997-2007. (2009). Wei, Yi-Ming ; Liu, Lancui ; Wu, Gang ; Wang, Jin-Nan .
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  161. Biomass and Chinas carbon emissions: A missing piece of carbon decomposition. (2008). Stern, David ; Ma, Chunbo.
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  162. Atmospheric stabilization of CO2 emissions: Near-term reductions and absolute versus intensity-based targets. (2008). Timilsina, Govinda.
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  163. Decomposition of aggregate CO2 emissions: A production-theoretical approach. (2008). Zhou, Peng ; Ang, B. W..
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