Building a New-Type Power System to Promote Carbon Peaking and Carbon Neutrality in the Power Industry in China

IF 1.6 Q3 URBAN STUDIES
Chang-Yi Liu, Xin Tan, Yifang Liu
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引用次数: 3

Abstract

Power industry is the largest carbon emission sector in China. Therefore, this industry will play an important role in achieving the carbon peaking and carbon neutrality goals (“dual carbon” goals) for the whole society. For this purpose, it is critical to balance four relationships, i.e. relationship between carbon mitigation and energy security, carbon peaking in the short term and carbon neutrality in the long term, the coordinated carbon mitigation in power industry and other industries, and technical feasibility and economic efficiency. This paper proposes the China’s Energy Interconnection scenario to promote carbon peaking and carbon neutrality of the society, which can be divided into three stages, i.e. peaking carbon emissions before 2030, rapid emission reduction during 2030–2050, and comprehensive carbon neutrality before 2060. It is expected that the power system will achieve zero emissions before other industries and contribute negative emissions afterwards, providing emission space for carbon neutrality in other industries across the society. Looking into the future, China’s electricity demand will continue to grow. Clean energy will become the main power source, the use of coal-fired power will be gradually reduced, and gas-fired power will undertake the function of peak-load regulation. Faster progress will be made in forming an overall grid pattern with ultra-high voltage (UHV) grid as the backbone and featuring “west-to-east and north-to-south power transmission, a balanced energy mix, and transnational power interconnection.” Finally, this paper discusses a new-type of power system characterized by a high proportion of electricity generated from clean energy, high ratio of electric and electronic equipment, and a high proportion of power transmission and reception, together with summer and winter high load periods, and points out the challenges faced by the new-type power system with a high proportion of renewable energy sources in terms of flexibility, safety, and economic efficiency, and proposes corresponding policy recommendations.
构建新型电力系统促进中国电力工业碳调峰和碳中和
电力行业是中国最大的碳排放行业。因此,该行业将在实现全社会碳达峰和碳中和目标(“双碳”目标)方面发挥重要作用。为此,必须平衡四个关系,即碳减排与能源安全的关系、短期碳达峰与长期碳中和的关系、电力行业和其他行业的协调碳减排以及技术可行性和经济效率。本文提出了中国能源互联互通情景,以促进社会碳达峰和碳中和,可分为三个阶段,即2030年前碳排放达峰、2030-2050年快速减排和2060年前全面碳中和。预计电力系统将先于其他行业实现零排放,之后贡献负排放,为社会其他行业的碳中和提供排放空间。展望未来,中国的电力需求将继续增长。清洁能源将成为主要能源,燃煤电力的使用将逐步减少,燃气电力将承担调峰功能。加快形成以特高压电网为骨干、“西电东送、北电南送、能源结构均衡、电力跨国互联”的整体电网格局,高比例的电力和电子设备、高比例的输电和受电,以及夏季和冬季的高负荷期,指出了可再生能源比例高的新型电力系统在灵活性、安全性和经济性方面面临的挑战,并提出了相应的政策建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.90
自引率
0.00%
发文量
24
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