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中国2060碳中和能源系统转型路径研究

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面对全球气候持续变暖的压力,我国提出"2030年碳达峰、2060年碳中和"双碳目标,然而,如何在经济增长和碳减排之间的矛盾下实现能源系统碳中和转型将是亟待规划解决的现实问题.本文针对多环节、多部门综合能源系统,考虑可再生能源潜力、终端部门节能与电气化潜力、非能源过程碳排放等因素提出碳中和能源系统规划方法体系.以中国能源系统为例,本文基于碳中和能源系统规划方法体系,构建参考路径和低碳转型的2℃路径、1.5℃路径和碳中和路径,探索至2060年实现碳中和目标的可行性及所需的技术支撑和成本要求.就能源供给和技术应用而言,在逼近所有可再生能源潜力和节能潜力等前提下,中国能源系统能在2060年甚至之前实现2℃路径、1.5℃路径和碳中和路径规划下所有减排目标.研究结果也表明,能源系统低碳转型有助于提升未来系统经济性.对比参考路径,2℃路径和1.5℃路径在2060年能源系统总成本分别下降19.2%和21.1%.碳中和路径虽然大规模引入可再生能源和碳捕集等技术,但其总成本仅为参考路径的86.4%.此外,本文还针对生物质使用、跨部门协同支撑技术应用和碳捕集技术应用等关键问题进行详细探讨.总而言之,本文提出的碳中和能源系统规划方法体系可用于任意地区构建低碳转型路径,为达成碳减排目标提供了可靠有效的支撑.
Transition pathway for China to achieve carbon neutrality by 2060
Faced with the pressure of global warming,China has pledged to peak its CO2 emissions before 2030 and achieve carbon neutrality before 2060.Realizing the carbon-neutral transition of the energy system under the contradiction between economic growth and CO2 emission reduction is an urgent and realistic problem.This study proposes a methodology for constructing a carbon-neutral energy system that considers renewable energy,energy conservation,and electrification potential in the energy sector and emissions from industrial processes.Based on the proposed methodology,this study takes China's energy system as an example and formulates a business-as-usual pathway,three low-carbon transition pathways according to the 2℃ warming goal,1.5℃ warming goal,and the carbon-neutral goal to explore the feasibility of achieving carbon neutrality by 2060 and the corresponding technical support and cost requirements.In terms of energy supply and technological applications,China's energy system can realize all the emission-reduction goals by 2060 or even earlier with renewable energy sources and energy conservations pushed to the maximum constraints.The results show that the low-carbon transition can help improve the economy of the future energy system.Compared with the business-as-usual pathway,the 2℃ and 1.5℃ pathways can reduce the energy system costs by 19.2%and 21.1%,respectively,in 2060.Despite the large-scale introduction of renewable and carbon capture technologies in the carbon-neutral pathway,its cost is only 86.4%of the business-as-usual pathway.In addition,this study discusses several key issues,including biomass use,cross-sectoral technologies,and carbon capture technology deployment.To sum up,the carbon-neutral energy system construction methodology proposed in this paper can be applied in any region to build low-carbon transition pathways for the local energy system and provide reliable and effective support to achieve the emission-reduction targets.

carbon neutralityChina's energy systemenergy system planningrenewable energylow-carbon transition

罗仕华、胡维昊、刘雯、张真源、白春光、杜月芳、黄琦、陈哲

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电子科技大学电力系统广域测量与控制四川省重点实验室,成都 611731

乌特勒支大学哥白尼可持续发展学院,乌得勒支3584CB,荷兰

电子科技大学经济与管理学院,成都 611731

奥尔堡大学能源技术学院,奥尔堡9220,丹麦

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碳中和 中国能源系统 能源系统规划 可再生能源 低碳转型

国家重点研发计划

2018YFE0127600

2024

中国科学(技术科学)
中国科学院

中国科学(技术科学)

CSTPCD北大核心
影响因子:0.752
ISSN:1674-7259
年,卷(期):2024.54(1)
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