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德克萨斯州电力部门脱碳的多种途径带来健康协同效益,但未能缓解空气污染暴露的不平等。

Diverse Pathways for Power Sector Decarbonization in Texas Yield Health Cobenefits but Fail to Alleviate Air Pollution Exposure Inequities.

机构信息

Department of Civil, Construction, and Environmental Engineering, North Carolina State University, Raleigh, North Carolina 27607, United States.

出版信息

Environ Sci Technol. 2022 Sep 20;56(18):13274-13283. doi: 10.1021/acs.est.2c00881. Epub 2022 Sep 7.

Abstract

Decarbonizing power systems is a critical component of climate change mitigation, which can have public health cobenefits by reducing air pollution. Many studies have examined strategies to decarbonize power grids and quantified their health cobenefits. However, few of them focus on near-term cobenefits at community levels, while comparing various decarbonization pathways. Here, we use a coupled power system and air quality modeling framework to quantify the costs and benefits of decarbonizing the Texas power grid through a carbon tax; replacing coal with natural gas, solar, or wind; and internalizing human health impacts into operations. Our results show that all decarbonization pathways can result in major reductions in CO emissions and public health impacts from power sector emissions, leading to large net benefits when considering the costs to implement these strategies. Operational changes with existing infrastructure can serve as a transitional strategy during the process of replacing coal with renewable energy, which offers the largest benefits. However, we also find that Black and lower-income populations receive disproportionately higher air pollution damages and that none of the examined decarbonization strategies mitigate this disparity. These findings suggest that additional interventions are necessary to mitigate environmental inequity while decarbonizing power grids.

摘要

电力系统脱碳是气候变化缓解的关键组成部分,通过减少空气污染,还可以带来公共卫生协同效益。许多研究都考察了使电网脱碳的策略,并量化了它们的健康协同效益。然而,其中很少有研究关注社区层面的近期协同效益,同时比较各种脱碳途径。在这里,我们使用一个耦合的电力系统和空气质量建模框架,通过碳税、用天然气、太阳能或风能取代煤炭以及将人类健康影响纳入运营来量化德克萨斯州电网脱碳的成本和收益。我们的结果表明,所有脱碳途径都可以大大减少 CO 排放和电力部门排放对公众健康的影响,当考虑实施这些策略的成本时,会带来很大的净收益。利用现有基础设施进行运营调整可以作为用可再生能源取代煤炭的过渡策略,该策略带来的效益最大。然而,我们还发现,黑人和低收入人群受到不成比例的高空气污染损害,而且所研究的脱碳策略都没有减轻这种差距。这些发现表明,在使电网脱碳的同时,还需要采取额外的干预措施来减轻环境不公平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de06/9494738/692e78e03685/es2c00881_0002.jpg

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