• [口頭報告]Breaking the Resource Trap of CO2 Emissions: A Three-tier SDA Based on the Energy Substitution Perspective
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    [口頭報告]Breaking the Resource Trap of CO2 Emissions: A Three-tier SDA Based on the Energy Substitution Perspective

    Breaking the Resource Trap of CO2 Emissions: A Three-tier SDA Based on the Energy Substitution Perspective
    編號:297 稿件編號:36 訪問權限:僅限參會人 更新:2024-05-19 15:33:42 瀏覽:202次 口頭報告

    報告開始:2024年05月30日 17:20 (Asia/Shanghai)

    報告時間:15min

    所在會議:[S10] Green Energy Transformation and Sustainable Development ? [S10-1] Afternoon of May 30th

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    摘要
    Energy substitution is an effective way to deal with CO2 emissions. Considering the complexity of energy substitution’s effect on carbon emissions, this study designs a new three–tier structural decomposition analysis approach to decompose the factors affecting carbon emissions. We apply this approach using Chinese input–output data, energy consumption data, and carbon emission data for 22 consecutive years from 1997 to 2018. The first–tier decomposition results indicate that the energy intensity effect is the main driver of carbon emission reduction. The second–tier continues to decompose the energy intensity effect and shows that the energy substitution effect gradually becomes stronger, but it is unstable. The third–tier decomposes the energy substitution effect into three dimensions based on energy type, industry energy consumption, and the mode of influence. We find that substituting other energy for row coal and coal products can effectively reduce carbon emissions, and that non–high energy consumption sectors can better reduce emissions than high energy consumption ones. This study sheds light on the deeper patterns of energy substitution, thus providing timely insights for policymakers working on energy transition and carbon emission reduction.
     
    關鍵字
    Energy substitution,Three-tier SDA,CO2 emissions,Input-Output,China
    報告人
    Chang Qin
    China University of Mining and Technology

    稿件作者
    暢 秦 中國礦業大學
    鋒 董 中國礦業大學
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