论文标题

在中国改造燃煤发电厂与汞相关的健康益处

Mercury-related health benefits from retrofitting coal-fired power plants in China

论文作者

Li, Jiashuo, Zhou, Sili, Wei, Wendong, Qi, Jianchuan, Li, Yumeng, Chen, Bin, Zhang, Ning, Guan, Dabo, Qian, Haoqi, Wu, Xiaohui, Miao, Jiawen, Chen, Long, Liang, Sai, Feng, Kuishuang

论文摘要

中国已经实施了燃煤电厂(CFPP)的改造措施,以通过小型单位关闭(SUS),安装空气污染控制设备(APCD)和发电效率(PGE)的改善来减少空气污染。剧毒HG排放量的减少及其与这些措施相关的健康影响尚未得到很好的研究。为了完善缓解选择,我们通过将植物水平的HG HG排放库存与中国HG风险源追踪模型相结合,通过在中国的第12五年计划期间通过改造hg排放措施来评估了HG排放量减少的健康益处。我们发现,这些措施使HG排放量减少了23.5吨(2010年的CFPP中约为1/5吨),防止了0.0021点智力智能(IQ)减少,并导致致命心脏病发作的114点死亡。这些好处以CFPP关闭和APCD安装为主。省健康益处在很大程度上归因于其他地区的HG减少。我们还证明了在选择HG控制设备时考虑人类健康影响,而不仅仅是HG排放量的必要性。这项研究还表明,HG控制策略应考虑各种因素,例如CFPP位置,人口密度和减少总HG(THG)和HG2+之间的权衡。

China has implemented retrofitting measures in coal-fired power plants (CFPPs) to reduce air pollution through small unit shutdown (SUS), the installation of air pollution control devices (APCDs) and power generation efficiency (PGE) improvement. The reductions in highly toxic Hg emissions and their related health impacts by these measures have not been well studied. To refine mitigation options, we evaluated the health benefits of reduced Hg emissions via retrofitting measures during China's 12th Five-Year Plan by combining plant-level Hg emission inventories with the China Hg Risk Source-Tracking Model. We found that the measures reduced Hg emissions by 23.5 tons (approximately 1/5 of that from CFPPs in 2010), preventing 0.0021 points of per-foetus intelligence quotient (IQ) decrements and 114 deaths from fatal heart attacks. These benefits were dominated by CFPP shutdowns and APCD installations. Provincial health benefits were largely attributable to Hg reductions in other regions. We also demonstrated the necessity of considering human health impacts, rather than just Hg emission reductions, in selecting Hg control devices. This study also suggests that Hg control strategies should consider various factors, such as CFPP locations, population densities and trade-offs between reductions of total Hg (THg) and Hg2+.

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