文章摘要
张兴华,朱 晔.基于能-碳耦合视角的零碳园区建设关键技术综述[J].电力需求侧管理,2025,27(6):01-09
基于能-碳耦合视角的零碳园区建设关键技术综述
A review of key technologies for zero-carbon park construction from an energycarbon coupling perspective
投稿时间:2025-07-01  修订日期:2025-09-15
DOI:10. 3969 / j. issn. 1009-1831. 2025. 06. 001
中文关键词: 零碳园区  综合能源系统  运行与规划  碳资产  技术平台
英文关键词: zero-carbon park  integrated energy system  operation and planning  carbon assets  technology platform
基金项目:国家电网总部科技基金资助项目(5400-202340383A-2-3-XG)
作者单位
张兴华 国家电网公司北京 100031 
朱 晔 国网电力科学研究院有限公司(南瑞集团有限公司)南京 210000国网电力科学研究院 武汉能效测评有限公司武汉 430200 
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中文摘要:
      在“双碳”战略目标的引领下,零碳园区作为推动能源系统清洁低碳转型、构建以新能源为主体的新型电力系统的关键实践载体,已进入快速规划与建设阶段。零碳园区的建设本质上是一个从低碳逐步演进至零碳的系统性减碳过程,其中减碳与降碳技术的创新与应用尤为关键。基于此从能-碳耦合的视角出发,系统阐述零碳园区建设过程中关键减碳技术体系的研究进展与应用实践,重点围绕规划技术、运行优化技术、碳资产协同管理技术以及关键支撑技术平台四个核心技术领域展开深入调研,梳理其在当前建设中面临的主要挑战与核心技术支撑,总结各项技术的发展现状、存在的不足,并展望其未来发展趋势,以期为我国零碳园区的理论研究和工程实践提供参考。
英文摘要:
      Guided by the“dual carbon”strategic goal, zero-carbon parks, as a key practical vehicle for promoting the clean and low-carbon transformation of the energy system and building a new power system dominated by new energy, have been brought into a stage of rapid planning and construction. The construction of a zero-carbon park is regarded as essentially a systematic carbon reduction process that gradually evolves from low carbon to zero carbon, in which the innovation and application of carbon reduction and carbon reduction technologies are particularly critical. Based on this, an in-depth analysis from the perspective of energy-carbon coupling is conducted to systematically expound the research progress and application practice of the key carbon reduction technology system in the process of zero-carbon park construction. It is focused on in-depth research in four core technology areas:planning technology, operation optimization technology, carbon asset collaborative management technology, and key supporting technology platforms. The main challenges and core technical support faced in the current construction are sorted out, summarizes the development status and existing deficiencies of each technology are summarized, and its future development trends are looked forward to, in order to provide a reference for theoretical research and engineering practice of zero-carbon parks in my country.
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