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Analysis of CO2 emission reduction contribution and efficiency of China's solar photovoltaic industry: Based on Input-output perspective

机译:中国太阳能光伏产业二氧化碳排放减排贡献及效率分析:基于投入输出观点

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摘要

As one of the most promising renewable energy sources, the amount of solar photovoltaics has reached 104.1 GW in 2018. China not only has the natural advantages of abundant solar energy resources, but the photovoltaic industry under the government's support has also become the main driving force for global development. Facing the structural adjustment of solar photovoltaic parity online and the important contribution of solar power generation to energy conservation and emission reduction, this paper based on the radial and non-radial comprehensive consideration of EBM (Epsilon-Based Measure) DEA (Data envelopment analysis) model from the input-output perspective on solar photovoltaic industry CO2 emission reduction and efficiency analyze. It is concluded that the total efficiency of the solar photovoltaic industry in China's six regions shows a growing trend, but the regional differences are obvious. The overall efficiency of the northwest region is superior. Among the index efficiency, CO2 emission reduction efficiency is better than cumulative installed capacity efficiency, solar energy utilization hour efficiency is the lowest, and CO2 emission reduction and cumulative installed capacity efficiency all show a consistent trend. It shows that the efficiency of cumulative installed capacity has a positive impact on CO2 emission reduction, but the efficiency of solar power generation needs to be improved.
机译:作为最有前途的可再生能源之一,2018年太阳能光伏量已达到104.1 GW。中国不仅具有丰富的太阳能资源的自然优势,而且政府支持下的光伏产业也成为主要的推动力对于全球发展。面对太阳能光伏平等的结构调整,太阳能发电与节能减排的重要贡献,本文基于辐射和非径向综合考虑EBM(epsilon为基础)DEA(数据包络分析)从输入输出透视上的模型太阳能光伏产业二氧化碳减排及效率分析。得出结论,中国六个地区太阳能光伏产业的总效率表现出不断增长的趋势,但区域差异很明显。西北地区的整体效率优越。在指数效率中,二氧化碳排放减少效率优于累积装机能力效率,太阳能利用时效率是最低的,二氧化碳排放减少和累积装机能力效率都显示出一致的趋势。它表明,累积装机容量的效率对二氧化碳排放减少具有积极影响,但需要改善太阳能发电的效率。

著录项

  • 来源
    《Energy》 |2020年第may15期|117493.1-117493.12|共12页
  • 作者单位

    Business School Hohai University Nanjing 211100 China;

    Business School Hohai University Changzhou 213022 China;

    School of Business Administration Anhui University of Finance & Economics Bengbu 233030 China Business School Hohai University Nanjing 211100 China;

    Business School Hohai University Changzhou 213022 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Solar photovoltaic; CO_2 emission reduction; Efficiency evaluation; Input-output;

    机译:太阳能光伏;CO_2减排;效率评估;输入输出;

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