Spatially resolved land and grid model of carbon neutrality in China

中立 碳中和 网格 中国 环境科学 遥感 碳纤维 温室气体 地理 计算机科学 地质学 政治学 大地测量学 考古 算法 海洋学 法学 复合数
作者
Da Zhang,Ziheng Zhu,Shi Chen,Chongyu Zhang,Xi Lu,Xiliang Zhang,Xiaoye Zhang,Michael R. Davidson
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:121 (10): e2306517121-e2306517121 被引量:57
标识
DOI:10.1073/pnas.2306517121
摘要

China has committed to achieve net carbon neutrality by 2060 to combat global climate change, which will require unprecedented deployment of negative emissions technologies, renewable energies (RE), and complementary infrastructure. At terawatt-scale deployment, land use limitations interact with operational and economic features of power systems. To address this, we developed a spatially resolved resource assessment and power systems planning optimization that models a full year of power system operations, sub-provincial RE siting criteria, and transmission connections. Our modeling results show that wind and solar must be expanded to 2,000 to 3,900 GW each, with one plausible pathway leading to 300 GW/yr combined annual additions in 2046 to 2060, a three-fold increase from today. Over 80% of solar and 55% of wind is constructed within 100 km of major load centers when accounting for current policies regarding land use. Large-scale low-carbon systems must balance key trade-offs in land use, RE resource quality, grid integration, and costs. Under more restrictive RE siting policies, at least 740 GW of distributed solar would become economically feasible in regions with high demand, where utility-scale deployment is limited by competition with agricultural land. Effective planning and policy formulation are necessary to achieve China's climate goals.
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