调整区域碳中和路径与国家气候目标:一个综合分析框架

IF 14 1区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Li Zhang , Mingyu Li , Zhe Zhang , Linyan Li , Jin Yuan , Shuying Zhu , Huili Wang , Min Jia , Jianhui Ruan , Lingyun Pang , Yingying Gu , Shu Ye , Xiaojun Chen , Lirong Zhang , Bofeng Cai , Jinnan Wang
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引用次数: 0

摘要

根据国家碳中和目标,能源生产地区在减排方面负有重大责任。鉴于这些地区不同的经济、工业和资源状况,量身定制的战略对于设计区域排放路径至关重要。目前,缺乏同时整合更广泛的国家气候目标和区域异质性的系统分析,阻碍了本地化路线图的制定。为了解决这一差距,我们提出了一个结合自顶向下和自底向上方法的综合分析框架。它考虑宏观层面的制约因素(社会经济发展)和微观层面的可行性(可再生能源潜力和森林碳汇),并结合不同的区域特征,如资源禀赋、能源消费模式和产业结构。我们将这种方法应用于中国中部的一个能源产区。我们的分析强调了清洁能源转型的必要性,以维护能源安全并满足日益增长的电力需求。到2060年,风能和太阳能预计将占到总发电量的87%,这意味着目前依赖化石燃料的结构将发生重大转变。通过优化能源结构、加强生产控制以及在工业、交通和建筑领域部署先进技术,可以显著减少温室气体排放。此外,加强碳清除战略将进一步支持减排目标。该框架展示了在依赖化石燃料的地区实现气候目标的可行性,为将区域特征纳入国家脱碳计划提供了战略指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Aligning regional carbon neutrality pathways with national climate goals: An integrated analytical framework

Aligning regional carbon neutrality pathways with national climate goals: An integrated analytical framework
Under national carbon neutrality targets, energy-producing regions hold significant responsibilities for reducing emissions. Given the diverse economic, industrial, and resource profiles of these regions, tailored strategies are essential for designing regional emission pathways. Currently, a systematic analysis that simultaneously integrates broader national climate objectives and regional heterogeneity is lacking, hindering the formulation of localized roadmaps. To address this gap, we propose an integrated analytical framework combing top-down and bottom-up approaches. It considers macro-level constraints (socio-economic development) and micro-level feasibility (renewable energy potential and forest carbon sinks), incorporating diverse regional characteristics such as resource endowment, energy consumption patterns, and industrial structures. We apply this approach to an energy-producing region in central China. Our analysis highlights the need for a clean energy transition that maintains energy security and meets growing electricity demands. By 2060, wind and solar power are projected to account for 87 % of electricity generation, representing a substantial shift from the current fossil-fuel-dependent structure. Significant reductions in greenhouse gas emissions can be achieved by optimizing the energy structure, enforcing production controls, and deploying advanced technologies across industry, transportation, and buildings. Additionally, enhancing carbon removal strategies will further support emission reduction targets. This framework demonstrates the feasibility of achieving climate objectives in fossil-fuel-dependent regions, providing strategic guidance for integrating regional traits into national decarbonization plans.
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来源期刊
CiteScore
20.40
自引率
6.30%
发文量
11
审稿时长
18 days
期刊介绍: Environmental Science & Ecotechnology (ESE) is an international, open-access journal publishing original research in environmental science, engineering, ecotechnology, and related fields. Authors publishing in ESE can immediately, permanently, and freely share their work. They have license options and retain copyright. Published by Elsevier, ESE is co-organized by the Chinese Society for Environmental Sciences, Harbin Institute of Technology, and the Chinese Research Academy of Environmental Sciences, under the supervision of the China Association for Science and Technology.
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