中国碳峰值与碳中和的最新进展与新战略

IF 2.7 4区 环境科学与生态学 Q3 ENERGY & FUELS Greenhouse Gases: Science and Technology Pub Date : 2023-07-08 DOI:10.1002/ghg.2235
Lan Liu, Xin Wang, Zegao Wang
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引用次数: 1

摘要

随着全球气候危机的加剧,生态系统、人类社会和经济活动受到显著影响。世界各国相继提出了碳中和或零碳的目标。在第75届联合国大会上,中国政府明确提出努力实现碳峰值(2030年前碳排放达到峰值)和碳中和(双碳)(2060年前碳中和)的目标。2021年10月,中共中央、国务院印发了《关于全面准确全面贯彻落实新发展理念实现碳峰值和碳中和的意见》和《2030年前实现碳峰值行动计划》,明确了我国实现碳峰值和碳中和的目标任务。作为世界上最大的发展中国家、世界上最大的制造国、世界上工业门类最齐全的国家,中国将面临气候变化、经济转型、环境保护等多重挑战,需要政策、经济、技术、社会等多方面的系统支持。如何实现这一目标将是对中国可持续发展的巨大挑战。学术界在能源转型、产业结构升级、交通减碳、城市规划建设、碳汇增强、低碳技术、绿色金融、配套政策等诸多领域对中国实现碳峰值和碳中和进行了广泛的探索。其中,政策规划和技术创新是实现碳峰值和碳中和目标最重要的环节。第二,产业调整和企业实施也很重要。因此,本文将重点从政策支持、技术创新、产业调整和企业实施等方面对中国实现双碳目标的发展现状和前景进行综述。©2023化学工业协会和John Wiley &儿子,有限公司
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Recent progress and emerging strategies for carbon peak and carbon neutrality in China

As the global climate crisis intensifies, ecosystems, human society and economic activities are significantly affected. Countries around the world have successively put forward the goal of carbon neutrality or zero carbon. At the 75th session of the United Nations General Assembly, the Chinese government explicitly proposed making efforts to reach the goal of Carbon Peak (peak of carbon emissions before 2030) and Carbon Neutrality (Dual Carbon) (carbon neutrality before 2060). In October 2021, the CPC Central Committee and the State Council issued the “Opinions on Fully, Accurately and Comprehensively Implementing the New Development Concepts to Achieve Carbon Peak and Carbon Neutrality” and the Action Plan for Achieving Carbon Peak before 2030, specifying the targets and tasks related to achieving carbon peak and carbon neutrality in China. As the world's largest developing country, the world's largest manufacturer, and a country with the most complete industrial categories, China will face multiple challenges such as climate change, economic transition, and environmental protection, which requires systematic support from policy, economy, technology, and society. How to achieve the goal will be a great challenge to China's sustainable development. The academic community has conducted extensive exploration on the realization of China's carbon peak and carbon neutrality in many fields, such as energy transformation, industrial structure upgrading, transportation carbon reduction, urban planning and construction, carbon sink enhancement, low-carbon technologies, green finance, and supporting policies. Among them, policy planning and technological innovation are the most important to achieve the goal of carbon peak and carbon neutrality. Second, industrial adjustment and enterprise implementation are also important. Therefore, this review will focus on the development status and prospects of policy support, technological innovation, industrial adjustment, and enterprise implementation for achieving dual carbon goals in China. © 2023 Society of Chemical Industry and John Wiley & Sons, Ltd.

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来源期刊
Greenhouse Gases: Science and Technology
Greenhouse Gases: Science and Technology ENERGY & FUELS-ENGINEERING, ENVIRONMENTAL
CiteScore
4.90
自引率
4.50%
发文量
55
审稿时长
3 months
期刊介绍: Greenhouse Gases: Science and Technology is a new online-only scientific journal dedicated to the management of greenhouse gases. The journal will focus on methods for carbon capture and storage (CCS), as well as utilization of carbon dioxide (CO2) as a feedstock for fuels and chemicals. GHG will also provide insight into strategies to mitigate emissions of other greenhouse gases. Significant advances will be explored in critical reviews, commentary articles and short communications of broad interest. In addition, the journal will offer analyses of relevant economic and political issues, industry developments and case studies. Greenhouse Gases: Science and Technology is an exciting new online-only journal published as a co-operative venture of the SCI (Society of Chemical Industry) and John Wiley & Sons, Ltd
期刊最新文献
Issue Information Core-flooding experiments of various concentrations of CO2/N2 mixture in different rocks: II. Effect of rock properties on residual water Development of a multicomponent counter-current flow model to evaluate the impact of oxygen and water vapor on CO2 removal performance in a hollow fiber membrane contactor Invasion percolation & basin modelling for CCS site screening and characterization A study on degradation and CO2 capture performance of aqueous amino acid salts for direct air capture applications
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