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应用生态学报 ›› 2025, Vol. 36 ›› Issue (10): 3211-3224.doi: 10.13287/j.1001-9332.202510.024

• 综合评述 • 上一篇    下一篇

生命周期视角下城市多尺度碳排放研究进展及协同减排策略探索

周含笑1, 胡宏1,2,3*   

  1. 1南京大学建筑与城市规划学院, 南京 210093;
    2城市AI与绿色人居环境营造省高校重点实验室, 南京 210093;
    3江苏智慧城市研究基地, 南京 210093
  • 收稿日期:2025-02-11 修回日期:2025-08-03 发布日期:2026-05-04
  • 通讯作者: *E-mail: h.hu@nju.edu.cn
  • 作者简介:周含笑, 女, 1999年生, 硕士研究生。主要从事低碳城市规划支持方法研究。E-mail: zhouhx0827@163.com
  • 基金资助:
    国家自然科学基金项目(42271202)和国家重点研发计划项目(2024YFE0197900)

Research progress of urban multiscale carbon emission and exploration of collaborative emission reduction strategies from a life cycle perspective

ZHOU Hanxiao1, HU Hong1,2,3*   

  1. 1School of Architecture and Urban Planning, Nanjing University, Nanjing 210093, China;
    2Key Laboratory of Urban AI and Green Built Environment of Provincial Higher Education Institutes, Nanjing 210093, China;
    3Jiangsu Smart City Research Base, Nanjing 210093, China
  • Received:2025-02-11 Revised:2025-08-03 Published:2026-05-04

摘要: 基于全生命周期评价的城市碳排放研究是制定城市协同减排策略的重要依据。虽然国内外相关研究成果日益丰硕,但不同研究侧重的空间尺度和产业领域各异,研究方法和结果也存在较大差异。本文梳理1998—2024年中英文相关文献,概述生命周期视角下城市多尺度碳排放研究趋势及其学科分异特征,进而基于知识图谱分析方法比较城市、街区、建筑3个尺度下碳排放生命周期的关键因素及作用机制。随着研究尺度从宏观城市转向微观建筑,研究方法从基于投入产出模型的分析向基于生命周期的分析过渡,碳排放生命周期影响因素从宏观的社会经济特征、城市形态特征向微观的建筑功能形态及建筑材料与结构过渡。最后,本文从搭建多尺度碳排放生命周期数据管理平台、解析城市碳排放生命周期动态演化机制、实现跨区域多部门碳减排协同管理3个方面探讨了生命周期视角下城市协同碳减排策略,可为低碳导向的城市可持续发展与双碳目标实现提供借鉴。

关键词: 生命周期, 多尺度, 碳排放, 协同减排

Abstract: The research on urban carbon emissions based on the full life cycle assessment is an important basis for formulating collaborative urban emission reduction strategies. Although there are increasingly fruitful research results, the spatial scales, industrial areas, and research methods of different studies differed greatly. We reviewed literature in both Chinese and English between 1998 and 2024, summarized the research trends and disciplinary differentiation characteristics of multiscale urban carbon emissions from a life cycle perspective, and then compared the key factors and mechanisms of the life cycle of carbon emissions at the three scales of city, block, and building based on the method of knowledge graph analysis. As the research scale shifted from macro (cities) to micro level (buildings), the methods transitioned from input-output model-based analysis to life cycle-based analysis, and the factors affecting the life cycle of carbon emissions shifted from socio-economic and urban form characteristics to buil-ding functional forms, building materials, and structures. Finally, we explored urban collaborative carbon reduction strategies from three aspects: building a multiscale carbon emission life cycle data management platform, analyzing the dynamic evolution mechanism of the life cycle of urban carbon emissions, and achieving cross-regional and multi-sectoral carbon reduction collaborative management. These strategies would provide reference for low-carbon oriented urban sustainable development and the achievement of dual carbon goals.

Key words: life cycle, multiscale, carbon emission, collaborative emission reduction