logo
ResearchBunny Logo
Carbon mitigation potential afforded by rooftop photovoltaic in China

Environmental Studies and Forestry

Carbon mitigation potential afforded by rooftop photovoltaic in China

Z. Zhang, M. Chen, et al.

This groundbreaking study by Zhixin Zhang, Min Chen, Teng Zhong, and colleagues reveals the tremendous carbon mitigation potential of rooftop photovoltaics in 354 Chinese cities, highlighting a staggering opportunity to reduce carbon emissions by 4 billion tons. The research delves into geographical factors and the underutilization of these resources, offering valuable insights for future development.... show more
Abstract
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.
Publisher
Nature Communications
Published On
Apr 24, 2023
Authors
Zhixin Zhang, Min Chen, Teng Zhong, Rui Zhu, Zhen Qian, Fan Zhang, Yue Yang, Kai Zhang, Paolo Santi, Kaicun Wang, Yingxia Pu, Lixin Tian, Guonian Lü, Jinyue Yan
Tags
rooftop photovoltaics
carbon mitigation
Chinese cities
urban expansion
geospatial data
machine learning
sustainability
Listen, Learn & Level Up
Over 10,000 hours of research content in 25+ fields, available in 12+ languages.
No more digging through PDFs, just hit play and absorb the world's latest research in your language, on your time.
listen to research audio papers with researchbunny