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Efficiency and abatement costs of energy-related CO2 emissions in China: A slacks-based efficiency measure. (2012). Zhang, Ning ; Zhou, Peng ; Choi, Yongrok.
In: Applied Energy.
RePEc:eee:appene:v:98:y:2012:i:c:p:198-208.

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  83. Pollution abatement costs and technical changes under different environmental regulations. (2020). Zhang, Chunhong ; Yang, KE ; Owens, Katharine A ; Liu, Haiying.
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  84. Technical and environmental efficiency of livestock farms in China: A slacks-based DEA approach. (2020). Baležentis, Tomas ; Wang, Dan ; Hou, Lingling ; Balezentis, Tomas ; Kuhn, Lena.
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  85. A bibliometric study for DEA applied to energy efficiency: Trends and future challenges. (2020). He, Xiaorong ; Yu, Dejian.
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  86. Are Emissions Trading Schemes Cost-effective?. (2020). , Majazarkovic ; di Maria, Corrado ; Hintermann, Beat ; Zarkovic, Maja.
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  87. The Convergence of China’s Marginal Abatement Cost of CO2: An Emission-Weighted Continuous State Space Approach. (2019). Ma, Chunbo ; Wu, Jianxin.
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  88. Sustainability Governance in China: An Analysis of Regional Ecological Efficiency. (2019). Loh, Lawrence ; Sun, Xiangxiang.
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  89. Estimating Regional Shadow Prices of CO 2 in China: A Directional Environmental Production Frontier Approach. (2019). Lin, Huaxing ; Wu, Qunli.
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  90. The Assessment of Carbon Performance under the Region-Sector Perspective based on the Nonparametric Estimation: A Case Study of the Northern Province in China. (2019). Wang, Xipan ; Duan, Haiyan ; Song, Junnian ; Li, Wenbo.
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  91. Transportation Efficiency Evaluation Considering the Environmental Impact for China’s Freight Sector: A Parallel Data Envelopment Analysis. (2019). Sun, Hui ; You, Jianxin ; Tang, Tianbo ; Zhang, Hao.
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  92. Energy, CO 2 , and AQI Efficiency and Improvement of the Yangtze River Economic Belt. (2019). Chiu, yung-ho ; Tian, ZE ; Ren, Fang-Rong ; Lin, Tai-Yu ; Shen, Yu-Ting.
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  93. Emission Reduction and Energy Performance Improvement with Different Regional Treatment Intensity in China. (2019). Chiu, yung-ho ; Lu, Danting ; Teng, Xiangyu.
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  94. Energy Efficiency Improvement Assessment in Africa: An Integrated Dynamic DEA Approach. (2019). Li, Mingxing ; Ma, Zhiqiang ; Amowine, Nelson ; Asunka, Benjamin Azembila ; Zhou, Zhixiang.
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  95. Evaluation of Energy-Environment Efficiency of European Transport Sectors: Non-Radial DEA and TOPSIS Approach. (2019). Krmac, Evelin ; Djordjevi, Boban.
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  96. Does Energy-Growth and Environment Quality Matter for Agriculture Sector in Pakistan or not? An Application of Cointegration Approach. (2019). Rauf, Abdul ; Jiang, Yuansheng ; Chandio, Abbas Ali ; Shehzad, Khurram ; Ahmad, Fayyaz ; Shar, Rashid Usman ; Mirani, Amir Ali.
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  97. Evaluating the sustainability of national logistics performance using Data Envelopment Analysis. (2019). Cullinane, Kevin ; Rashidi, Kamran.
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  98. Does energy research funding work? Evidence from the Natural Science Foundation of China using TEI@I method. (2019). Choi, Yongrok ; Zhang, Ning ; Wang, Wei.
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  99. Carbon mitigation effects and potential cost savings from carbon emissions trading in Chinas regional industry. (2019). Yu, Yanni ; Zhang, Ning.
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  100. Resource abundance, industrial structure, and regional carbon emissions efficiency in China. (2019). Shi, Xunpeng ; Sun, Yongping ; Wu, Meng ; Wang, Keying ; Zhang, Ping.
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  101. The static and dynamic heterogeneity and determinants of marginal abatement cost of CO2 emissions in Chinese cities. (2019). Ma, Chunbo ; Wu, Jianxin ; Tang, Kai.
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  102. Improvement path, the improvement potential and the dynamic evolution of regional energy efficiency in China: Based on an improved nonradial multidirectional efficiency analysis. (2019). Wang, Ying ; Yang, Guangchun ; Qi, Lin ; Shang, Peipei ; Zhu, Lin.
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  103. Towards a green world: How do green technology innovations affect total-factor carbon productivity. (2019). Li, Jianglong ; Du, Kerui.
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  104. A critical review of distance function based economic research on China’s marginal abatement cost of carbon dioxide emissions. (2019). Ma, Chunbo ; You, Chaoying ; Hailu, Atakelty.
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  105. Treating undesirable outputs in DEA: A critical review. (2019). HALKOS, GEORGE ; Petrou, Kleoniki Natalia.
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  106. Inequalities in carbon intensity in China: A multi-scalar and multi-mechanism analysis. (2019). Feng, Kuishuang ; Fang, Chuanglin ; Wang, Jieyu.
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  107. Coupling analysis of urbanization and energy-environment efficiency: Evidence from Guangdong province. (2019). Feng, Kuishuang ; Li, Shijie ; Wang, Shaojian.
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  108. Industrial carbon abatement allocations and regional collaboration: Re-evaluating China through a modified data envelopment analysis. (2019). Rudkin, Simon ; Zhang, Hao ; You, Jianxin ; Yu, Anyu.
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  109. A critical review of the main methods to treat undesirable outputs in DEA. (2018). HALKOS, GEORGE ; Petrou, Kleoniki Natalia.
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  110. Allocating Provincial CO2 Quotas for the Chinese National Carbon Program. (2018). Chevallier, Julien ; Zhu, Bangzhu ; Jiang, Minxing ; Xie, Rui.
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  111. Fujian’s Industrial Eco-Efficiency: Evaluation Based on SBM and the Empirical Analysis of lnfluencing Factors. (2018). Majeed, Salman ; Wu, Qiuming ; Wang, Xiaoqing ; Sun, Donghao.
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  112. The Shadow Prices of Carbon Emissions in China’s Planting Industry. (2018). Wu, Xianrong ; Zhang, Junbiao ; Guan, Xiaoliang ; Cheng, Linlin.
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  113. A Study on the Sustainable Performance of the Steel Industry in Korea Based on SBM-DEA. (2018). Lee, Hyoungseok ; Yu, Yanni ; Choi, Yongrok.
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  114. Considering Emission Treatment for Energy-Efficiency Improvement and Air Pollution Reduction in China’s Industrial Sector. (2018). Chiu, yung-ho ; Lu, Liang Chun ; Teng, Xiangyu.
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  115. Energy Efficiency of the Baltic Sea Countries: An Application of Stochastic Frontier Analysis. (2018). Hu, Jin-Li ; Chang, Ming-Chung ; Hsiao, Wen-Ling.
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  116. Regional Energy, CO 2 , and Economic and Air Quality Index Performances in China: A Meta-Frontier Approach. (2018). Chiu, yung-ho ; Lu, Liangchun ; Li, Ying.
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  117. Can China Achieve the 2020 and 2030 Carbon Intensity Targets through Energy Structure Adjustment?. (2018). He, Lichun ; Shang, Peipei ; Wang, Ying ; Liu, Dandan ; Zhang, Yingchun.
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  118. Structure decomposition analysis of embodied carbon from transition economies. (2018). Pu, Zhengning ; Shao, Jun ; Zhang, Chi ; Fu, Jiasha.
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  119. Chinas SO2 shadow prices and environmental technical efficiency at the province level. (2018). Zeng, Shihong ; Nan, Xin ; Su, Bin ; Jiang, Xue .
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  120. Environmental efficiency for 192 thermal power plants in the Yangtze River Delta considering heterogeneity: A metafrontier directional slacks-based measure approach. (2018). Long, Xingle ; Zhang, Jing ; Wu, Chao.
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  121. A meta-frontier DEA approach to efficiency comparison of carbon reduction technologies on project level. (2018). Wang, Nannan ; Chang, Yen-Chiang ; Yao, Shengnan ; Chen, JI.
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  122. Spatial-temporal disparities, saving potential and influential factors of industrial land use efficiency: A case study in urban agglomeration in the middle reaches of the Yangtze River. (2018). Wang, Wei ; Wu, Qing ; Lu, Fucai ; Chen, Qianru ; Xie, Hualin.
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  123. Estimation of carbon efficiency decomposition in materials and potential material savings for Chinas construction industry. (2018). Zhang, Puwei ; Yu, Anyu ; Chen, Jindao ; Jia, Guangshe ; You, Jianxin .
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  124. Regional differences on CO2 emission efficiency in metallurgical industry of China. (2018). Lin, Boqiang ; Xu, Mengmeng.
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  125. Will regional economic integration influence carbon dioxide marginal abatement costs? Evidence from Chinese panel data. (2018). Wang, Zhao-Hua ; He, Weijun.
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  126. Estimation and allocation of cost savings from collaborative CO2 abatement in China. (2018). Wang, Zhao-Hua ; Zhu, Joe ; Yang, YI ; He, Weijun.
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  127. Data envelopment analysis application in sustainability: The origins, development and future directions. (2018). Zhou, Haibo ; Zhu, Joe ; Chen, Yao ; Yang, YI.
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  128. Resource utilization for sustainability enhancement in Japanese industries. (2018). Sueyoshi, Toshiyuki ; Goto, Mika.
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  129. Productivity and energy efficiency assessment of existing industrial gases facilities via data envelopment analysis and the Malmquist index. (2018). Fernandez, David ; Guillen-Gosalbez, Gonzalo ; Jimenez, Laureano ; Folgado, Ruben ; Pozo, Carlos.
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  130. Allocating provincial CO2 quotas for the Chinese national carbon program. (2018). Chevallier, Julien ; Xie, Rui ; Zhu, Bangzhu ; Jiang, Minxing.
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  131. Allocating provincial CO2 quotas for the Chinese national carbon program. (2018). Xie, Rui ; Chevallier, Julien ; Zhu, Bangzhu ; Jiang, Minxing.
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  132. Applying a Ruggiero three-stage super-efficiency DEA model to gauge regional carbon emission efficiency: evidence from China. (2017). Xu, Xihui ; Bian, Zhengfu ; Long, Ruyin ; Dong, Feng ; Wang, Ying ; Yu, Bolin.
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  133. The carbon dioxide marginal abatement cost calculation of Chinese provinces based on stochastic frontier analysis. (2017). Lei, Yalin ; Yang, Kejia.
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  134. China’s regional energy and carbon dioxide emissions efficiency evaluation with the presence of recovery energy: an interval slacks-based measure approach. (2017). Yu, Anyu ; Lv, Kangjuan ; Kangjuan Lv, ; Bian, Yiwen.
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  135. Bounded and discrete data and Likert scales in data envelopment analysis: application to regional energy efficiency in China. (2017). Chen, Ya ; Du, Juan ; Cook, Wade D ; Zhu, Joe.
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  136. Regional energy efficiency and its determinants in China during 2001–2010: a slacks-based measure and spatial econometric analysis. (2017). Bian, Yiwen ; Yu, Anyu ; Lv, Kangjuan ; Kangjuan Lv, .
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  137. CO 2 Emission Performance, Mitigation Potential, and Marginal Abatement Cost of Industries Covered in China’s Nationwide Emission Trading Scheme: A Meta-Frontier Analysis. (2017). Zhang, Jie ; Wang, Jigan ; Xing, Zhencheng.
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  138. The Allocation of Carbon Intensity Reduction Target by 2020 among Industrial Sectors in China. (2017). Yang, Baochen ; Su, Yunpeng ; Liu, Chuanze ; Jing, Xin.
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  139. Marginal Abatement Cost of CO 2 in China Based on Directional Distance Function: An Industry Perspective. (2017). Wu, Han ; Niu, Dongxiao ; Xiao, Bowen ; Wang, Haichao.
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  140. Towards green growth and management: Relative efficiency and gaps of Chinese cities. (2017). Zhao, Ting ; Yang, Zhenshan.
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  141. Environment-adjusted operational performance evaluation of solar photovoltaic power plants: A three stage efficiency analysis. (2017). Wang, Ke ; Huang, Zhimin ; Li, YI.
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  142. The integrated efficiency of inputs–outputs and energy – CO2 emissions performance of Chinas agricultural sector. (2017). Lin, Boqiang ; Fei, Rilong .
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  143. Evolution and projection of CO2 emissions for Chinas cement industry from 1980 to 2020. (2017). Gao, Tianming ; Chen, Fengnan ; Liu, Litao ; Shen, Ming .
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  144. Ecological total-factor energy efficiency of Chinas heavy and light industries: Which performs better?. (2017). Lin, Boqiang.
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  145. A comprehensive review of data envelopment analysis (DEA) approach in energy efficiency. (2017). Mardani, Abbas ; Khoshnoudi, Masoumeh ; Jusoh, Ahmad ; Streimikiene, Dalia ; Zavadskas, Edmundas Kazimieras.
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  146. Fossil energy saving and CO2 emissions reduction performance, and dynamic change in performance considering renewable energy input. (2017). Chen, Weidong ; Geng, Wenxin .
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  147. International comparison of total-factor energy productivity growth: A parametric Malmquist index approach. (2017). Lin, Boqiang ; Du, Kerui.
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  148. The congestion total-factor energy efficiency of regions in Taiwan. (2017). Hu, Jin-Li ; Tsay, Hui-Wen ; Chang, Ming-Chung.
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  149. The substitutability of non-fossil energy, potential carbon emission reduction and energy shadow prices in China. (2017). Xie, Hualin ; Liu, Yanchu ; Wang, Wei ; Yu, Yanni.
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  150. Energy efficiency and marginal carbon dioxide emission abatement cost in urban China. (2017). Wang, Jian ; Cheng, YU ; Bian, Yiwen ; Lv, Kangjuan ; Kangjuan Lv, .
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  151. Does energy and CO2 emissions performance of China benefit from regional integration?. (2017). Lin, Boqiang.
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  152. Rationality of energy efficiency improvement targets under the PAT scheme in India – A case of thermal power plants. (2017). Sahoo, Biresh ; Mahanty, Biswajit.
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  153. A literature study for DEA applied to energy and environment. (2017). Sueyoshi, Toshiyuki ; Goto, Mika ; Yuan, Yan.
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  154. Measuring and decomposing profit inefficiency through the Slacks-Based Measure. (2017). Aparicio, Juan ; Pastor, Jesus T ; Ortiz, Lidia .
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  155. Potential assessment of optimizing energy structure in the city of carbon intensity target. (2017). Lu, Shibao ; Chen, Huixiong ; Bao, Haijun ; Shang, Yizi ; Wang, Jianhua.
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  156. The Shadow Price of CO2 Emissions in Chinas Iron and Steel Industry. (2017). Wei, Yi-Ming ; Wang, Ke ; Ma, Chunbo ; Che, Linan .
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  157. Progressive Time-Weighted Dynamic Energy Efficiency, Energy Decoupling Rate, and Decarbonization: An Empirical Study on G7 and BRICS. (2016). Chang, Ming-Chung ; Chen, Chiang-Ping ; Tu, Chia-Jung .
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  158. Analysis of CO 2 Emission Performance and Abatement Potential for Municipal Industrial Sectors in Jiangsu, China. (2016). Xing, Zhencheng ; Zhang, Jie ; Wang, Jigan.
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  159. Measuring the Total-Factor Carbon Emission Performance of Industrial Land Use in China Based on the Global Directional Distance Function and Non-Radial Luenberger Productivity Index. (2016). Xie, Xue ; Wang, Wei ; Jiang, Tong ; Zhang, Daobei .
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  160. Effect of Population Structure Change on Carbon Emission in China. (2016). Dai, Hongjun ; Sun, Tao ; Guo, Wen.
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  161. Industrial Carbon Emissions of China’s Regions: A Spatial Econometric Analysis. (2016). Zhang, Ning ; LIU, YU ; Xiao, Hongwei.
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  46. Efficiency measurement with carbon dioxide emissions: The case of China. (2012). Zhou, Peng ; Wang, Qunwei.
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  47. Industry-level Total-factor Energy Efficiency in Developed Countries. (2011). Hu, Jin-Li ; Honma, Satoshi.
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  48. Are Private Providers more Productive and Efficient than Public Providers of International Education? Evidence from New Zealand.. (2011). Talukder, Dayal.
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  49. Chinas energy security: The perspective of energy users. (2011). Sovacool, Benjamin K. ; Bambawale, Malavika Jain .
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  50. Regional total factor energy efficiency: An empirical analysis of industrial sector in China. (2011). Zhang, Yixiang ; Wei, Yi-Ming ; Wang, Zhao-Hua ; Zeng, Hua-Lin .
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