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中国特大城市温室气体排放与空气污染的双层协同治理:深圳的影响评估与政策启示。

Two-Tier Synergic Governance of Greenhouse Gas Emissions and Air Pollution in China's Megacity, Shenzhen: Impact Evaluation and Policy Implication.

机构信息

School of Economics and Management, Harbin Institute of Technology (Shenzhen), Shenzhen 518055, China.

School of Environmental Science and Engineering, Southern University of Science and Technology, Shenzhen 518055, China.

出版信息

Environ Sci Technol. 2021 Jun 1;55(11):7225-7236. doi: 10.1021/acs.est.0c06952. Epub 2021 May 11.

Abstract

Making a cost-effective governance of greenhouse gas (GHG) emissions and air pollution is of great importance for megacities to pursue a sustainable future. To achieve this, the present study advocates megacities to implement a two-tier synergic governance system consisting of both synergic governance between GHG and air pollutant emission reductions and between megacities and their surrounding regions. Based on the LEAP model and WRF-SMOKE-CMAQ simulation platform, this study found that climate governance of China's megacity, Shenzhen, could synergistically contribute to decreasing urban annual PM concentration by 5.6% in 2030. Using synergic governance with surrounding regions could further help cap and then quickly decrease the megacity's GHG emissions and lower its PM concentrations by an additional 11.8%. The results demonstrated the substantial effects of transdepartment and transregional synergic governance on Shenzhen's GHG emission reduction and air quality improvement. Furthermore, this study suggested road transportation and power generation and supply as the two priority fields for wide-ranging megacities to promote two-tier synergic governance, highlighting an integration of improved urban electrification with high-efficiency electricity use and a renewable-based power supply.

摘要

实现温室气体(GHG)排放和空气污染的具有成本效益的治理,对于追求可持续未来的特大城市至关重要。为此,本研究主张特大城市实施双层协同治理系统,包括 GHG 减排与空气污染物减排之间以及特大城市与其周边地区之间的协同治理。基于 LEAP 模型和 WRF-SMOKE-CMAQ 模拟平台,本研究发现,中国特大城市深圳的气候治理可以协同作用,将城市的年 PM2.5 浓度在 2030 年降低 5.6%。与周边地区协同治理可以进一步帮助控制并迅速减少特大城市的 GHG 排放,并将 PM2.5 浓度再降低 11.8%。研究结果表明,跨部门和跨区域协同治理对深圳 GHG 减排和空气质量改善具有重大影响。此外,本研究建议道路交通和发电及供电作为广泛实施双层协同治理的两个优先领域,突出了提高城市电气化水平与高效用电和基于可再生能源的电力供应的融合。

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