北京和中国去碳化和清洁空气政策的健康效益。

IF 5.8 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Environmental Research Letters Pub Date : 2024-12-01 Epub Date: 2024-11-15 DOI:10.1088/1748-9326/ad8c65
Gregor Kiesewetter, Shaohui Zhang, Jun Liu
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引用次数: 0

摘要

尽管中国的空气污染水平在过去十年中大幅下降,但 PM2.5 浓度仍数次超过世界卫生组织的指导值,造成了巨大的死亡和发病负担。由于已经采取了许多 "低悬挂果实 "的减排措施,进一步的改善将更加困难,可能需要采取与迄今为止不同的策略。本研究探讨了在当前能源政策和空气污染控制立法下的预期趋势,并分析了中国环境 PM2.5 的来源,特别关注北京这个特大城市。尽管预计会有所减少,但中国似乎尚未走上实现温室气体排放长期目标和未来国家空气质量标准的轨道。在现行政策之外,我们分析了解决这两个问题的措施的效果,并量化了实现 2060 年碳中和国家目标所需的进一步去碳化政策带来的健康共同利益,以及进一步缓解空气污染的潜力。
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Health benefits of decarbonization and clean air policies in Beijing and China.

Although China has seen strong reductions in air pollution levels in the last decade, PM2.5 concentrations still exceed the WHO Guideline several times, causing a substantial burden of mortality and morbidity. With many 'low hanging fruits' in terms of abatement measures already taken, further improvements will be more difficult and likely require different strategies than pursued so far. This study looks into the trends expected under current energy policies and air pollution control legislation and analyses the source contributions to ambient PM2.5 in China, with a special focus on the megacity of Beijing. Although reductions are foreseen, China appears not yet on track to meet its long-term targets for greenhouse gas emissions nor the future national air quality standards. Going beyond current policies, we analyze effects of measures which tackle both issues and quantify health co-benefits from further decarbonization policies required to meet the national target of reaching carbon neutrality by 2060, as well as the potential for further air pollution mitigation.

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来源期刊
Environmental Research Letters
Environmental Research Letters 环境科学-环境科学
CiteScore
11.90
自引率
4.50%
发文量
763
审稿时长
4.3 months
期刊介绍: Environmental Research Letters (ERL) is a high-impact, open-access journal intended to be the meeting place of the research and policy communities concerned with environmental change and management. The journal''s coverage reflects the increasingly interdisciplinary nature of environmental science, recognizing the wide-ranging contributions to the development of methods, tools and evaluation strategies relevant to the field. Submissions from across all components of the Earth system, i.e. land, atmosphere, cryosphere, biosphere and hydrosphere, and exchanges between these components are welcome.
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