基于增效内涵与机制的减污降碳协同增效研究进展

李翊宸, 许文, 孙园园, 乔琦, 张玥, 朱旭, 白璐

中国环境科学 ›› 2026, Vol. 46 ›› Issue (2) : 1139-1152.

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中国环境科学 ›› 2026, Vol. 46 ›› Issue (2) : 1139-1152.
碳排放控制

基于增效内涵与机制的减污降碳协同增效研究进展

  • 李翊宸1,2, 许文1, 孙园园1,2, 乔琦1, 张玥1,2, 朱旭1, 白璐1,2
作者信息 +

Research progress on synergistic pollution reduction and carbon reduction based on the connotation and mechanism of efficiency enhancement

  • LI Yi-chen1,2, XU Wen1, SUN Yuan-yuan1,2, QIAO Qi1, ZHANG Yue1,2, ZHU Xu1, BAi Lu1,2
Author information +
文章历史 +

摘要

针对当前减污降碳协同增效研究偏重协同而忽视增效问题,采用文献计量法,凝练研究热点,讨论增效内涵与机制.结果显示:减污降碳协同增效的研究还处在早期探索阶段,热点集中于协同效应的量化表征、实现路径、特征分析与效果评估、效益评价四阶段;增效是污碳协同减排在系统层面引发的环境、生态、经济、气候、社会、健康等多方效益,体现为提高政策效率、降低社会减排成本等;从多维协同到多维增效依托于多要素联动的复杂系统,包括管理主体协同分工和区域联防联控等路径.未来需明确增效的共识,完善减污降碳协同增效的系统性界定;探究从多维协同到多维增效的科学机制,揭示协同与增效间的复杂关联.

Abstract

Current research on the synergistic reduction of pollution and carbon emissions emphasizes "synergy" while neglecting "effectiveness," limiting a systemic understanding. This study aims to integrate and analyze bibliometric findings, further discussing the connotation and mechanisms of "efficiency enhancement". The results reveal that:(1) Research on synergistic pollution-carbon reduction remains in the early exploratory stage, with hotspots focusing on four phases: quantitative characterization of synergy, implementation pathways, feature analysis and effectiveness evaluation, and benefit assessment;(2) "Effectiveness" refers to the multi-dimensional benefits—environmental, ecological, economic, climatic, social, and health-related—triggered by pollution-and-carbon synergy at the systemic level, manifested as enhanced policy efficiency, reduced societal abatement costs, etc.;(3) The transition from multi-dimensional synergy to multi-dimensional effectiveness hinges on complex systems driven by multi-factor interactions, such as collaborative governance among stakeholders and regional joint prevention or control mechanisms.Future directions include: (i) clarifying the definition and consensus on &qquot;efficiency enhancement" to refine the systemic understanding of synergistic pollution-carbon reduction; (ii) investigating the scientific mechanisms linking multi-dimensional synergy to efficiency enhancement, thereby unveiling their intricate relationship.

关键词

减污降碳 / 协同增效 / 增效内涵 / 增效机制 / 文献述评

Key words

pollution reduction and carbon mitigation / synergistic effects / connotation of synergistic effects / mechanisms of synergistic effects / critical review

引用本文

导出引用
李翊宸, 许文, 孙园园, 乔琦, 张玥, 朱旭, 白璐. 基于增效内涵与机制的减污降碳协同增效研究进展[J]. 中国环境科学. 2026, 46(2): 1139-1152
LI Yi-chen, XU Wen, SUN Yuan-yuan, QIAO Qi, ZHANG Yue, ZHU Xu, BAi Lu. Research progress on synergistic pollution reduction and carbon reduction based on the connotation and mechanism of efficiency enhancement[J]. China Environmental Science. 2026, 46(2): 1139-1152
中图分类号: X32   

参考文献

[1] 生态环境部等.减污降碳协同增效实施方案[EB/OL]. (2022-06-10) [2024-12-15].https://www.gov.cn/zhengce/zhengceku/2022-06/17/content_5696364.htm.
[2] IPCC. Climate change 2014: Mitigation of climate change. Working Group III contribution to the IPCC Fifth Assessment Report [R]. Cambridge: Cambridge University Press, 2014.
[3] 毛显强,曾桉,邢有凯,等.从理念到行动:温室气体与局地污染物减排的协同效益与协同控制研究综述[J].气候变化研究进展, 2021,17(3):255-267. Mao X Q, Zeng A, Xing Y K, et al. From concept to action: A review of synergistic benefits and co-control of greenhouse gases and local pollutants [J]. Advances in Climate Change Research, 2021,17(3): 255-267.
[4] 杨静,刘会娟,吉庆华,等.降碳减污多维协同的基础科学问题[J].中国科学基金, 2023,37(6):1021-1026. Yang J, Liu H J, Ji Q H,et al. Fundamental scientific issues of synergizing the reduction of pollution and Carbon Emission[J]. Bulletin of National Natural Science Foundation of China, 2023, 37(6):1021-1026.
[5] 顾斌杰,赵海霞,骆新燎,等.基于文献计量的减污降碳协同减排研究进展与展望[J].环境工程技术学报, 2023,13(1):85-95. Gu B J, Zhao H X, Luo X L, et al. Research progress and prospect of collaborative reduction of pollution and carbon dioxide based on bibliometrics [J]. Journal of Environmental Engineering Technology, 2023,13(1):85-95.
[6] 孔少杰,易洪涛.基于文献计量学的减污降碳政策研究进展与展望[J].环境科学研究, 2025,38(2):231-242. Kong S J, Yi H T. Research progress and prospects of pollution reduction and carbon emission mitigation policies: a bibliometric analysis [J]. Research of Environmental Sciences, 2025,38(2):231-242.
[7] 谭玉菲,王宗爽,赵国华,等.中国减污降碳生态环境标准体系研究[J].环境污染与防治, 2024,46(9):1340-1345,1371. Tan Y F, Wang Z S, Zhao G H, et al. Research on china's eco-environmental standards system for pollution reduction and carbon mitigation [J]. Environmental Pollution and Control, 2024, 46(9):1340-1345,1371.
[8] 孙雪妍,白雨鑫,王灿.减污降碳协同增效:政策困境与完善路径[J].中国环境管理, 2023,15(2):16-23. Sun X Y, Bai Y X, Wang C. Synergizing pollution reduction and carbon mitigation: policy dilemmas and improvement pathways [J]. Chinese Journal of Environmental Management, 2023,15(2):16-23.
[9] 王灿,邓红梅,郭凯迪,等.温室气体和空气污染物协同治理研究展望[J].中国环境管理, 2020,12(4):5-12. Wang C, Deng H M, Guo K D, et al. Research prospects on synergistic governance of greenhouse gases and air pollutants [J]. Chinese Journal of Environmental Management, 2020,12(4):5-12.
[10] 谭琦璐,温宗国,杨宏伟.控制温室气体和大气污染物的协同效应研究评述及建议[J].环境保护, 2018,46(24):51-57. Tan Q L, Wen Z G, Yang H W. Research review and recommendations on synergistic effects of controlling greenhouse gases and air pollutants [J]. Environmental Protection, 2018,46(24):51-57.
[11] 赵曼仪,王科.减污降碳协同效应综合评估的研究综述与展望[J].中国人口·资源与环境, 2024,34(2):58-69. Zhao M Y, Wang K. Research review and prospects on comprehensive assessment of synergistic effects of pollution reduction and carbon mitigation [J]. Chinese Journal of Population, Resources and Environment, 2024,34(2):58-69.
[12] 杨霖,李丽平,杨儒浦.新发展,新思考——减污降碳协同研究[J].环境保护科学, 2024,50(5):58-66. Yang L, Li L P, Yang R P. New development, new thinking: research on synergistic control of pollution and carbon reduction [J]. Environmental Protection Science, 2024,50(5):58-66.
[13] 温宗国,许毛,张蓝心.工业行业降碳减污协同效应与管理方法[J].中国环境管理, 2025,17(2):5-15. Wen Z G, Xu M, Zhang L X. Synergistic effects and management approaches for carbon reduction and pollution control in industrial sectors [J]. Chinese Journal of Environmental Management, 2025,17(2):5-15.
[14] 许文,周潇云,张玥,等.土壤重金属污染源清单研究现状及进展[J].农业环境科学学报, 2024,43(11):2472-2486. Xu W, Zhou X Y, Zhang Y, et al. Research status and progress of heavy metal pollution source inventory in soils [J]. Journal of Agro-Environment Science, 2024,43(11):2472-2486.
[15] 毛显强,曾桉,胡涛,等.技术减排措施协同控制效应评价研究[J].中国人口·资源与环境, 2011,21(12):1-7. Mao X Q, Zeng A, Hu T, et al. Evaluation of co-control effects of technical emission reduction measures [J]. Chinese Journal of Population, Resources and Environment, 2011,21(12):1-7.
[16] 毛显强,邢有凯,高玉冰,等.温室气体与大气污染物协同控制效应评估与规划[J].中国环境科学, 2021,41(7):3390-3398. Mao X Q, Xing Y K, Gao Y B, et al. Assessment and planning of co-control effects of greenhouse gases and air pollutants [J]. China Environmental Science, 2021,41(7):3390-3398.
[17] 刘胜强,毛显强,胡涛,等.中国钢铁行业大气污染与温室气体协同控制路径研究[J].环境科学与技术, 2012,35(7):168-174. Liu S Q, Mao X Q, Hu T, et al. Research on co-control pathways of air pollution and greenhouse gases in China's iron and steel industry [J]. Environmental Science & Technology, 2012,35(7):168-174.
[18] 毛显强,邢有凯,胡涛,等.中国电力行业硫、氮、碳协同减排的环境经济路径分析[J].中国环境科学, 2012,32(4):748-756. Mao X Q, Xing Y K, Hu T, et al. Environmental economic pathway analysis of co-reduction of sulphur, nitrogen, and carbon in China's power industry [J]. China Environmental Science, 2022,32(4):748-756.
[19] Overseas Environmental Cooperation Center. Co-benefits approach to climate change and CDM in developing countries [R]. Tokyo: Overseas Environmental Cooperation Center, 2008.
[20] 高玉冰,毛显强,Gabriel Corsetti,等.城市交通大气污染物与温室气体协同控制效应评价——以乌鲁木齐市为例[J].中国环境科学, 2014,34(11):2985-2992. Gao Y B, Mao X Q, Gabriel Corsetti, et al. Evaluation of co-control effects of air pollutants and greenhouse gases in urban transportation: A case study of Urumqi [J]. China Environmental Science, 2014,34(11):2985-2992.
[21] Zhang Q Y, Wang P, Liu S Y, et al. City-level CO2 and local air pollutants co-control performance evaluation: A case study of 113 key environmental protection cities in China [J]. Advances in Climate Change Research, 2022,13(1):118-130.
[22] 刘茂辉,岳亚云,刘胜楠,等.基于STIRPAT模型天津减污降碳协同效应多维度分析[J].环境科学, 2023,44(3):1277-1286. Liu M H, Yue Y Y, Liu S N, et al. Multidimensional analysis of the synergistic effects of pollution reduction and carbon mitigation in Tianjin based on the STIRPAT model [J]. Environmental Science, 2023,44(3):1277-1286.
[23] 罗红成,廖琪,容誉.湖北省能源消费CO2与大气污染物协同减排研究[J].环境污染与防治, 2022,44(2):266-271. Luo H C, Liao Q, Rong Y. Collaborative reduction of CO2 and air pollutants in Hubei Province's energy consumption [J]. Environmental Pollution & Control, 2022,44(2):266-271.
[24] 唐湘博,张野,曹利珍,等.中国减污降碳协同效应的时空特征及其影响机制分析[J].环境科学研究, 2022,35(10):2252-2263. Tang X B, Zhang Y, Cao L Z, et al. Spatiotemporal characteristics and influencing mechanisms of synergistic effects of pollution reduction and carbon mitigation in China [J]. Research of Environmental Sciences, 2022,35(10):2252-2263.
[25] 李汶豫,文传浩,苏旭阳,等.长江经济带城市减污降碳协同效应时空演化及驱动因素研究[J].环境科学研究, 2024,37(8):1641-1653. Li W Y, Wen C H, Su X Y, et al. Spatiotemporal evolution and driving factors of synergistic effects of pollution reduction and carbon mitigation in cities of the Yangtze River Economic Belt [J]. Research of Environmental Sciences, 2024,37(8):1641-1653.
[26] 崔连标,李晓,段宏波.长三角地区减污降碳协同效应评估[J].中国人口·资源与环境, 2024,34(6):21-32. Cui L B, Li X, Duan H B. Assessment of synergistic effects of pollution reduction and carbon mitigation in the Yangtze River Delta region [J]. Chinese Journal of Population, Resources and Environment, 2024,34(6):21-32.
[27] Xu Y, Zhang L, Liu C X, et al. Spatio-temporal patterns and spillover effects of synergy on carbon dioxide emission and pollution reductions in the Yangtze River Delta region in China [J]. Sustainable Cities and Society, 2024,107(Part A): 105432.
[28] 孙建,冯常洁.中国工业用能权交易制度减污降碳协同效应研究[J].长江流域资源与环境, 2024,33(12):2727-2742. Sun J, Feng C J. Synergistic effects of pollution reduction and carbon mitigation in China’s industrial energy-use rights trading system [J]. Resources and Environment in the Yangtze Basin, 2024,33(12): 2727-2742.
[29] 贾书伟,高宇阳,郭钰莹,等.价格调控策略对城市道路交通减污降碳协同增效影响研究[J].环境科学与管理, 2024,49(3):50-55. Jia S W, Gao Y Y, Guo Y Y, et al. Impact of price regulation strategies on synergistic effects of pollution and carbon reduction in urban road traffic [J]. Environmental Science and Management, 2024,49(3): 50-55.
[30] 孙建,刘波,饶光明.环境保护税、碳交易与中国工业减污降碳协同增效[J].中国人口·资源与环境, 2023,33(11):13-24. Sun J, Liu B, Rao G M. Environmental protection tax, carbon trading, and synergistic effects of pollution and carbon reduction in China's industry [J]. China Population, Resources and Environment, 2023,33(11):13-24.
[31] Huang Z N, Wu Q R, Chen X L, et al. Revealing the impact of China's clean air policies on synergistic control of CO2 and air pollutant emissions: evidence from Chinese cities [J]. Journal of Environmental Management, 2023,344:118512.
[32] 张瑜,孙倩,薛进军,等.减污降碳的协同效应分析及其路径探究[J].中国人口·资源与环境, 2022,32(5):1-13. Zhang Y, Sun Q, Xue J J, et al. Analysis of synergistic effects of pollution reduction and carbon mitigation and exploration of pathways [J]. Chinese Journal of Population, Resources and Environment, 2022,32(5):1-13.
[33] 上官睿佳.黄河流域减污降碳协同效应及其作用机制研究[D].西安:西安理工大学, 2024. Shangguan R J. Research on the synergistic effects of pollution reduction and carbon mitigation in the Yellow River Basin and their Mechanisms [D]. Xi'an: Xi'an University of Technology, 2024.
[34] 宋鹏,张慧敏,毛显强.面向碳达峰目标的重庆市碳减排路径[J].中国环境科学, 2022,42(3):1446-1455. Song P, Zhang H M, Mao X Q. Carbon reduction pathways for Chongqing to achieve the carbon peak target [J]. China Environmental Science, 2022,42(3):1446-1455.
[35] 俞珊,韩玉花,牟洁,等.北京市制造业减污降碳协同效应分析和驱动因素[J].环境科学, 2024,45(4):1917-1925. Yu S, Han Y H, Mu J, et al. Synergistic effect analysis and driving factors of pollution reduction and carbon mitigation in Beijing's manufacturing industry [J]. Environmental Science, 2024,45(4):1917-1925.
[36] Dong F, Zhang Y W, Long R Y, et al. Examining the synergistic effect of CO2 emissions on PM2.5 emissions reduction: evidence from China [J]. Journal of Cleaner Production, 2019,223:759-771.
[37] Du W J, Li M, Yang G F, et al. Assessing the impact of environmental regulation on pollutant abatement and collaborative emissions reduction: micro-evidence from Chinese industrial enterprises [J]. Environmental Impact Assessment Review, 2020,82:106345.
[38] Cheng Z H, Liu J, Zhang L X, et al. The emissions reduction effect and technical progress effect of environmental regulation policy tools [J]. Journal of Cleaner Production, 2017,149:191-205.
[39] Wang B, Liu G C, Muhammad S, et al. Collaborative governance mechanism of climate change and air pollution: Evidence from China [J]. Nature Sustainability, 2021,13(12):1044-1053.
[40] 李胜兰,林沛娜.我国碳排放权交易政策完善与促进地区污染减排效应研究——基于省级面板数据的双重差分分析[J].中山大学学报(社会科学版), 2020,60(5):182-194. Li S L, Lin P N. Study on the improvement of carbon emission trading policy and its effect on regional pollution reduction in China: A difference-in-differences analysis based on provincial panel data [J]. Journal of Sun Yat-sen University (Social Science Edition), 2020,60(5):182-194.
[41] Li Z, Wang Y N, Zhang Y X, et al. Synergistic effect of carbon trading scheme on carbon dioxide and atmospheric pollutants [J]. Sustainability, 2021,13(10):5403.
[42] Zhang B, Ma L, Liu Y W, et al. Does a mandatory cleaner production audit have a synergistic effect on reducing pollution and carbon emissions? [J]. Energy Policy, 2023,182.
[43] 刘亦文,陈熙钧.数智融合发展对中国减污降碳协同治理的影响研究[J].环境科学研究, 2023,36(11):2189-2199. Liu Y W, Chen X J. The impact of integrated development of digitalization and intelligence on collaborative governance of pollution reduction and carbon mitigation in China [J]. Research of Environmental Sciences, 2023,36(11):2189-2199.
[44] 李俊明,魏雯琪,张鹏,等.中国市域数字经济发展对减污降碳协同的促进效应及其空间分异[J].经济地理, 2023,43(12):169-180. Li J M, Wei W Q, Zhang P, et al. The promoting effects and spatial differences of digital economy development on synergistic pollution reduction and carbon mitigation in Chinese cities [J]. Economic Geography, 2023,43(12):169-180.
[45] 刘娜,高新伟.“蓝天保卫战”如何影响减污降碳协同度?[J].中国人口·资源与环境, 2024,34(7):66-75. Liu N, Gao X W. How does the "Blue Sky Protection Campaign" affect the synergy degree of pollution reduction and carbon mitigation? [J]. Chinese Journal of Population, Resources and Environment, 2024, 34(7):66-75.
[46] Xu Y, Li J, Zhang Q, et al. Spatio-temporal patterns and spillover effects of synergy on carbon dioxide emission and pollution reductions in the Yangtze River Delta region in China [J]. Sustainable Cities and Society, 2024,107(2):105432-105444.
[47] 邢文婷,刘明珠,李利娟.长江经济带能源绿色低碳转型与减污降碳协同效应时空演进及地区差异[J/OL].环境科学, 1-21[2025-03- 20]. Xing W T, Liu M Z, Li L J. Spatio-temporal evolution and regional differences of energy green low-carbon transition and synergistic effects of pollution reduction and carbon mitigation in the Yangtze River economic belt [J/OL]. Environmental Science, 1-21[2025-03-20].
[48] Chen X, Wang Y, Liu Z, et al. Spatial patterns and evolution trend of coupling coordination of pollution reduction and carbon reduction along the Yellow River Basin, China [J]. Ecological Indicators, 2023, 154:110723-110735.
[49] 狄乾斌,陈小龙,侯智文.“双碳”目标下中国三大城市群减污降碳协同治理区域差异及关键路径识别[J].资源科学, 2022,44(6): 1155-1167. Di Q B, Chen X L, Hou Z W. Regional differences and key paths identification of collaborative governance on pollution reduction and carbon mitigation in China's three major urban agglomerations under the "Dual Carbon" Goals [J]. Resources Science, 2022,44(6):1155- 1167.
[50] 唐湘博,张野,曹利珍,等.中国减污降碳协同效应的时空特征及其影响机制分析[J].环境科学研究, 2022,35(10):2252-2263. Tang X B, Zhang Y, Cao L Z, et al. Spatio-temporal characteristics and influencing mechanisms of synergistic effects of pollution reduction and carbon mitigation in China [J]. Research of Environmental Sciences, 2022,35(10):2252-2263.
[51] Jiang F M, Chen B J, Li P H, et al. Spatio-temporal evolution and influencing factors of synergizing the reduction of pollution and carbon emissions: Utilizing multi-source remote sensing data and GTWR model [J]. Environmental Research, 2023,229.
[52] Chen S Y, Tan Z X, Mu S Y, et al.Synergy level of pollution and carbon reduction in the Yangtze River economic belt: spatial-temporal evolution characteristics and driving factors [J]. Sustainable Cities and Society, 2023,98.
[53] 刘坤坤,李新创,刘涛,等.钢铁企业技改项目减污降碳协同控制效应评价实例分析[C] //中国环境科学学会环境工程分会.中国环境科学学会2022年科学技术年会--环境工程技术创新与应用分会场论文集(四). 2022. Liu K K, Li X C, Liu T, et al. Case analysis of co-control effect evaluation of pollution reduction and carbon mitigation in steel enterprises' technological transformation projects [C] //Environmental Engineering Branch of Chinese Society for Environmental Sciences. Proceedings of the 2022 Annual Conference of Science and Technology of the Chinese Society for Environmental Sciences-- Environmental Engineering Technology Innovation and Application Sub-forum (IV). 2022.
[54] 薛强,于雷,李敏辉,等.生态环境分区管控减污降碳协同试点实践探索——以广州市增城区为例[J].环境工程技术学报, 2025, 15(1):59-70. Xue Q, Yu L, Li M H, et al. Practical exploration of synergistic pollution reduction and carbon mitigation in ecological environment zoning management: a case study of zengcheng district, Guangzhou [J]. Journal of Environmental Engineering Technology, 2025,15(1): 59-70.
[55] Xi Y, Fei T, Ge H W. Quantifying co-benefit potentials in the Chinese cement sector during 12th Five Year Plan: an analysis based on marginal abatement cost with monetized environmental effect [J]. Journal of Cleaner Production, 2013,58:102-111.
[56] Mao X Q, Chen S Y, Zhang Y Q, et al. Co-control of local air pollutants and CO2 from the Chinese coal-fired power industry [J]. Journal of Cleaner Production, 2024,434:220-227.
[57] Mao X Q, Yang S Q, Liu Y K, et al. Co-control of local air pollutants and CO2 in the Chinese iron and steel industry [J]. Environmental Science & Technology, 2013,47(21):12002-12010.
[58] Mao X Q, Lu Z L, Chen S Y, et al. Achieving CO2 emission reduction and the co-benefits of local air pollution abatement in the transportation sector of China [J]. Environmental Science & Policy, 2012,15(1):1-13.
[59] Zeng A, Li J M, Liu H Y, et al. Regional co-control plan for local air pollutants and CO2 reduction: Method and practice [J]. Journal of Cleaner Production, 2017,140:1226-1235.
[60] 李可心,杨儒浦,李丽平,等.燃煤电厂减污降碳协同增效综合评价体系构建及实证研究[J].环境科学研究, 2024,37(7):1483-1491. Li K X, Yang R P, Li L P, et al. Construction and empirical study of a comprehensive evaluation system for synergistic benefits of pollution reduction and carbon mitigation in coal-fired power plants [J]. Research of Environmental Sciences, 2024,37(7):1483-1491.
[61] 戴章艳,张丰麟,刘坤坤,等.钢铁行业减污降碳协同增效研究[J].冶金经济与管理, 2024,(5):10-12. Dai Z Y, Zhang F L, Liu K K, et al. Research on synergistic effects of pollution reduction and carbon mitigation in the iron and steel industry [J]. Metallurgical Economics and Management, 2024,(5):10-12.
[62] 王常欣,张祥建,连欣燕.长江经济带实现绿色协同发展:基于区域减污降碳协同效应的量化分析[J/OL].环境科学, 1-16[2025-03-20]. Wang C X, Zhang X J, Lian X Y. Realizing green synergistic development in the Yangtze River economic belt: a quantitative analysis based on regional synergistic effects of pollution reduction and carbon mitigation [J/OL]. Environmental Science, 1-16[2025-03-20].
[63] 杨儒浦,王敏,胡敬韬,等.工业园区减污降碳协同增效评价方法及实证研究[J].环境科学研究, 2023,36(2):422-430. Yang R P, Wang M, Hu J T, et al. Evaluation methods and empirical study on synergistic effects of pollution reduction and carbon mitigation in industrial parks [J]. Research of Environmental Sciences, 2023,36(2):422-430.
[64] 崔新蕾,王冉冉.中国降碳-减污-扩绿-增长协同发展空间关联网络特征及影响因素研究[J].环境科学研究, 2024,37(7):1446-1457. Cui X L, Wang R R. Spatial correlation network characteristics and influencing factors of synergistic development of carbon mitigation, pollution reduction, green expansion, and economic growth in China [J]. Research of Environmental Sciences, 2024,37(7):1446-1457.
[65] Markus A, Wagner F, Amann M, et al. Cost-effective control of air quality and greenhouse gases in Europe: Modelling and policy applications [J]. Environmental Modelling & Software, 2011,26(12):1489-1505.
[66] Wagner F, Amann M, Borken-Kleefeld J, et al. Sectoral marginal abatement cost curves: implications for mitigation pledges and air pollution co-benefits for Annex I countries [J]. Nature Sustainability, 2012,7(2):169-184.
[67] Zheng J J, Li R, Huang Z N, et al. Analysis of air pollution reduction and climate change mitigation in the industry sector of Yangtze River Delta in China [J]. Journal of Cleaner Production, 2016,114(2):232-241.
[68] Lu Z, Yang S, Chen X L, et al. Carbon dioxide mitigation co-benefit analysis of energy-related measures in the Air Pollution Prevention and Control Action Plan in the Jing-Jin-Ji region of China [J]. Resources, Conservation & Recycling: X, 2019,5:100006-100016.
[69] Cai W J, Hui J X, Wang C, et al. The Lancet Countdown on PM2.5 pollution-related health impacts of China's projected carbon dioxide mitigation in the electric power generation sector under the Paris Agreement: A modelling study [J]. Lancet Planetary Health, 2018, 4(2):151-161.
[70] Xue W B, Lei Y, Liu X, et al. Synergistic assessment of air pollution and carbon emissions from the economic perspective in China [J]. Science of the Total Environment, 2023,858:159736-159750.
[71] LiuL, Wang K, Wang S S, et al. Assessing energy consumption, CO2 and pollutant emissions and health benefits from China's transport sector through 2050[J]. Energy Policy, 2018,116:382-396.
[72] Mir K A, Purohit P, Cail S, et al. Co-benefits of air pollution control and climate change mitigation strategies in Pakistan [J]. Environmental Science & Policy, 2022,133:31-43.
[73] Cheng J, Tong D, Zhang Q, et al. Pathways of China's PM2.5 air quality 2015~2060 in the context of carbon neutrality [J]. National Science Review, 2021,8(12),11.
[74] Fujimori S, Krey V, Van Vuuren D, et al. A framework for national scenarios with varying emission reductions [J]. Nature Climate Change, 2021,11(6):472.
[75] Bollen J, van der Zwaan B, Brink C, et al. Local air pollution and global climate change: A combined cost-benefit analysis [J]. Resource and Energy Economics, 2009,31(3):161-181.
[76] Chae Y. Co-benefit analysis of an air quality management plan and greenhouse gas reduction strategies in the Seoul metropolitan area [J]. Environmental science & policy, 2010,13(3):205-216.
[77] Van Harmelen T, Bakker J, DE Vries B, et al. Long-term reductions in costs of controlling regional air pollution in Europe due to climate policy [J]. Environmental science & policy, 2002,5(4):349-365.
[78] Jiang H D, Porohit P, Liang Q M, et al. Improving the regional deployment of carbon mitigation efforts by incorporating air-quality co-benefits: a multi-provincial analysis of China [J]. Ecological economics, 2023,204:107675.
[79] 丁瑶瑶.减污降碳协同增效走向深入[J].环境经济, 2022,(15): 18-21. Ding Yaoyao. Synergistic effects of pollution reduction and carbon mitigation gain momentum [J]. Environmental Economy, 2022,(15): 18-21.
[80] 吉喆,王海蕴.“双碳”引领协同推进降碳减污和扩绿增长——访国家发展改革委环资司副司长文华[J].财经界, 2024,(7):12-13. Ji Z, Wang H Y. "'Dual Carbon' leads the coordinated advancement of carbon reduction, pollution control, and green expansion' growth—interview with Wen Hua, deputy director of the department of resource conservation and environmental protection, National Development and Reform Commission" [J]. Finance World, 2024,(7):12-13.
[81] Yue Huanbi, He Chunyang, Huang Qingxu, et al. Stronger policy required to substantially reduce deaths from PM2.5 pollution in China [J]. Nature Communications, 2020,11(1):1462.
[82] Yao Wu, Bo Wen, Tingting Ye, et al. Estimating the urban heat-related mortality burden due to greenness: a global modelling study [J]. The Lancet Planetary Health, 2025,9(7):11.
[83] Song J, Wang B, Yang W, et al. Extracting critical supply chains driving air pollution in China [J]. Journal of Cleaner Production, 2020,276(124282).
[84] Lin Boqiang, Teng Yuqiang. Synergistic disparities of pollution reduction and carbon mitigation in the industrial chain: Evidence from China’s industrial sector [J]. Environmental Research, 2024,(248): 118226.

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黄河流域生态保护和高质量发展联合研究项目(2022- YRUC-01-0404)

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