Warm and wet spring compensated for the reduction in carbon sinks due to an extreme summer heatwave-drought event in 2022 in southern China
ID:658 View Protection:ATTENDEE Updated Time:2025-04-01 17:13:11 Hits:589 Poster Presentation

Start Time:2025-04-18 08:17(Asia/Shanghai)

Duration:1min

Session:PO 墙报 » po墙报

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Abstract
During the summer of 2022, a record-breaking heatwave-drought (DH2022) hit southern China, especially in the middle and lower reaches of the Yangtze River basin (MLYR). It caused unprecedented decline in vegetation photosynthesis, however, its impact on the regional carbon budget remains unclear. Here, we assessed the response of regional terrestrial carbon fluxes to DH2022 using the Global Carbon Assimilation System (GCASv2) by assimilating OCO-2 XCO2 retrievals. Our results show that compared to the mean state over 2015-2021, MLYR experienced a clear reduction in carbon uptake by 45.8TgC (44.1%) during July-September. Despite impacted by the extreme event, the total annual carbon sink in southern China increased by 42.8 TgC. This is due to a warm and wet spring before summer, leading to an increase in carbon sink by 50.8 TgC and greatly compensating for the carbon losses. Also, the remaining areas except MLYR mitigated the impacts of the DH2022. Especially in Yunnan Province, the annual carbon sinks increased by 37.8 TgC. Our study provides a comprehensive assessment of land carbon dynamics in southern China under the influence of DH2022, enhancing our understanding of the impacts of climate extremes on the regional carbon cycle.
 
Keywords
Drought; Heatwave; Atmospheric inversion model; Net ecosystem exchange; Terrestrial carbon sink
Speaker
张圆圆
学生 南京大学

Submission Author
张圆圆 南京大学
江飞 南京大学
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    Apr 17

    2025

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    Apr 21

    2025

  • Apr 10 2025

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  • Apr 28 2025

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中国科学院大气物理研究所
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中国科学院大气物理研究所
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