Abstract
AbstractAs a typical climate that occurs in the Yangtze-Huaihe River basin of China with a size of 500,000 km2, plum rain can reduce the photovoltaic (PV) potential by lowering the surface irradiance (SI) in the affected region. Based on hourly meteorological data from 1980 to 2020, we find that plum rain can lower the SI in the affected region with a weekly peak drop of more than 20% at the most affected locations. This SI drop, coupled with a large number of deployed PV systems, can cause incremental CO2 emissions (ICEs) of local power systems by increasing the additional thermal power. Using a cost optimization model, we demonstrate that the ICEs in 2020 already reached 1.22 megatons and could range from 2.21 to 4.73 megatons, 3.47 to 7.19 megatons, and 2.97 to 7.43 megatons in 2030, 2040, and 2050, respectively, considering a change trend interval of a ±25% fluctuation in power generation and demand in the different years. To offset these ICEs, we compare four pathways integrated with promising technologies. This analysis reveals that the advanced deployment of complementary technologies can improve the PV utilization level to address climate impacts.
Funder
Multiple Sclerosis Scientific Research Foundation
National Natural Science Foundation of China
Natural Science Foundation of Jiangsu Province
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry
Reference47 articles.
1. Wang, H. et al. China’s CO2 peak before 2030 implied from characteristics and growth of cities. Nat. Sustain. 2, 748–754 (2019).
2. Bertram, C. et al. Energy system developments and investments in the decisive decade for the Paris Agreement goals. Environ. Res. Lett. 16, 074020 (2021).
3. Central Finance and Economics Committee. This meeting planned the “14th Five-Year” carbon peak and carbon neutral work “construction drawings”. http://www.gov.cn/xinwen/2021-03/16/content_5593348.htm (2021).
4. National Energy Administration. Formulate more active new energy development goals and accelerate the promotion of carbon peaking and carbon neutrality. https://finance.sina.cn/esg/2021-02-02/detail-ikftpnny3458188.d.html?cre=cj (2021).
5. International Energy Agency. Solar. https://www.iea.org/fuels-and-technologies/solar (2021).
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