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The potential of industrial electricity savings to reduce air pollution from coal-fired power generation in China

机译:工业电力节省的潜力降低了中国燃煤发电的空气污染

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摘要

Coal-intensive power supply systems, along with a fast-growing electricity demand driven by industry has caused serious air pollution and health concerns. These concerns are particularly prominent in countries where electricity use is likewise dominated by industry and heavily dependent on coal-based electricity. A more efficient industry and coal-free electricity systems are the core components of the United Nations 2030 Agenda for Sustainable Development. Previous studies rarely reflect on the impacts of the electricity savings of industrial consumers on the electricity supply sector with respect to future air emission changes, and also neglect the potential benefits of reducing investments in new generation capacity. Here, a comprehensive modeling framework is newly developed to quantify the connections of electricity savings, coal-based electricity systems, air pollutant emissions, and control investments in China, a country exposed to poor air quality. The modeling framework includes 175 energy efficiency technologies (covering multiple industrial sectors) and detailed information of power generation units (thermal efficiency, environmental performance, and lifespan), and allows for unit-by-unit assessment. We find that industrial efficiency improvements can significantly decrease the dependence on coal-fired power generation, particularly the most polluting power fleet. Efficient use of electricity in industry can drive all small high-polluting coal generation units (i.e. units below 300 MW, in total 753 units) to be phased out and effectively curb less efficient coal-fired plants to come online in China. Meanwhile, the air pollutant emissions can be significantly avoided because of the closed coal-fired power units. Developed cost portfolios demonstrate that improving industrial energy efficiency is more cost-effective than installing flue gas controls in coal-fired plants. We further reveal that a sustainable industry could contribute to climate change mitigation even if less remarkable than air quality improvement, while enabling the expansion of intermittent renewable power supply. (C) 2021 The Author(s). Published by Elsevier Ltd.
机译:煤切电力供应系统,随着行业推动的快速增长的电力需求造成了严重的空气污染和健康问题。这些担忧在电力使用同样被行业主导的国家和严重依赖于煤炭电力的国家尤其突出。一种更高效的行业和无煤炭电力系统是联合国2030年可持续发展议程的核心组成部分。以前的研究很少反思工业消费者电力节省对未来播放变化的电力供应部门的影响,也忽视了减少新一代能力投资的潜在利益。在这里,新开发了全面的建模框架,以量化电力节省,煤炭的电力系统,空气污染物排放和控制在中国的控制,一个暴露于空气质量差的国家。建模框架包括175个能效技术(覆盖多个工业部门)和发电单位的详细信息(热效率,环境性能和寿命),并允许按单元进行评估。我们发现,工业效率改进可以显着降低对燃煤发电的依赖,特别是最具污染的电力车队。有效地使用行业的电力可以驱动所有小型高污染的煤炭发电单位(即300 MW的单位,总共753个单位)进行逐步逐步淘汰,并有效地遏制较低的燃煤厂在中国上网。同时,由于封闭的燃煤动力装置,可以显着避免空气污染物排放。开发成本投资组合表明,提高的工业能源效率比在燃煤植物中安装烟气控制更具成本效益。我们进一步揭示了可持续行业可能导致气候变化缓解,即使比空气质量改善不太显着,同时能够扩大间歇性再生能源。 (c)2021提交人。 elsevier有限公司出版

著录项

  • 来源
    《Journal of Cleaner Production》 |2021年第10期|126978.1-126978.18|共18页
  • 作者单位

    Zhengzhou Univ Ctr Energy Environm & Econ Res Sci Ave 100 Zhengzhou 450001 Peoples R China|Univ Utrecht Copernicus Inst Sustainable Dev Princetonlaan 8a NL-3584 CB Utrecht Netherlands;

    Univ Utrecht Copernicus Inst Sustainable Dev Princetonlaan 8a NL-3584 CB Utrecht Netherlands;

    Univ Utrecht Copernicus Inst Sustainable Dev Princetonlaan 8a NL-3584 CB Utrecht Netherlands;

    Beihang Univ Sch Econ & Management Xueyuan Rd 37 Beijing 100191 Peoples R China|Int Inst Appl Syst Anal IIASA Schlosspl 1 A-2361 Laxenburg Austria;

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

    Energy planning; Electricity consumption; Air pollution; Co-benefits; CO2 emission;

    机译:能量规划;电力消耗;空气污染;共同福利;二氧化碳排放;

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