Progress and performance in synergizing the reduction of pollution and carbon emissions in China from 2015 to 2022
作者:Chenglin Yun, Xiaojun Chen, Yixuan Zheng, Chuchu Chen, Xiaohui Song, Yueyi Feng, Wei Liu, Zhang Wen, Yuxi Liu, Huili Wang, Qian Ma, Zechen Zhang, Fangming Jiang, Yichao He, Wenxin Cao, Zhulin Qi, Hongkuan Zang, Wenbo Xue, Shufang Tian, Yu Lei, Gang Yan · 发表于:Ecological Indicators · 年份:2026 · DOI:10.1016/j.ecolind.2026.114869 · 被引用次数:1 · 研究领域:Environmental Impact and Sustainability、COVID-19 impact on air quality、Climate Change Policy and Economics
As the world confronts the dual crises of environmental pollution and climate change, China—one of the largest developing economies—faces particularly urgent demands for coordinated action. However, systematic frameworks for tracking cross-sector progress in pollution and carbon co-control remain underexplored. Here, we propose the Index for Synergies in Environmental protection and Carbon reduction (ISEC)—a nationwide, multidimensional system that integrates status and progress indicators using observation-based evidence. The ISEC framework includes three core dimensions: Synergetic Effect, Synergetic Action, and Synergetic Management, each with specific indicators reflecting the interplay between pollution reduction and decarbonization efforts. We apply ISEC to assess China's pollution–carbon co-control performance from 2015 to 2022 at both national and provincial scales. Our results show that China's national ISEC score rose by 53.9% over the study period, reflecting substantial gains in coordinated pollution and carbon reduction. At the provincial level, marked regional disparities remain: economically developed regions with stronger environmental capacity, such as Beijing, Shanghai, and the southeast coast, consistently demonstrate higher synergy levels, whereas resource-dependent regions in northern and western China (e.g., Inner Mongolia, Ningxia, Xinjiang) continue to face severe challenges. These findings underscore the importance of promoting continuous structural t...