温室气体
地理空间分析
光伏
中国
光伏系统
减缓气候变化
工作(物理)
土地利用
环境科学
气候变化
环境规划
业务
自然资源经济学
环境经济学
地理
土木工程
工程类
地图学
经济
机械工程
生态学
考古
电气工程
生物
作者
Zhixin Zhang,Min Chen,Teng Zhong,Rui Zhu,Zhen Qian,Fan Zhang,Yang Yue,Kai Zhang,Paolo Santi,Kaicun Wang,Yingxia Pu,Lixin Tian,Guonian Lü,Jinyue Yan
标识
DOI:10.1038/s41467-023-38079-3
摘要
Rooftop photovoltaics (RPVs) are crucial in achieving energy transition and climate goals, especially in cities with high building density and substantial energy consumption. Estimating RPV carbon mitigation potential at the city level of an entire large country is challenging given difficulties in assessing rooftop area. Here, using multi-source heterogeneous geospatial data and machine learning regression, we identify a total of 65,962 km2 rooftop area in 2020 for 354 Chinese cities, which represents 4 billion tons of carbon mitigation under ideal assumptions. Considering urban land expansion and power mix transformation, the potential remains at 3-4 billion tons in 2030, when China plans to reach its carbon peak. However, most cities have exploited less than 1% of their potential. We provide analysis of geographical endowment to better support future practice. Our study provides critical insights for targeted RPV development in China and can serve as a foundation for similar work in other countries.
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