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Projected increases in intensity frequency and terrestrial carbon costs of compound drought and aridity events

机译:复合干旱和干旱事件的强度频率和陆地碳成本的预计增加

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摘要

Drought and atmospheric aridity pose large risks to ecosystem services and agricultural production. However, these factors are seldom assessed together as compound events, although they often occur simultaneously. Drought stress on terrestrial carbon uptake is characterized by soil moisture (SM) deficit and high vapor pressure deficit (VPD). We used in situ observations and 15 Earth system models to show that compound events with very high VPD and low SM occur more frequently than expected if these events were independent. These compound events are projected to become more frequent and more extreme and exert increasingly negative effects on continental productivity. Models project intensified negative effects of high VPD and low SM on vegetation productivity, with the intensification of SM exceeding those of VPD in the Northern Hemisphere. These results highlight the importance of compound extreme events and their threats for the capability of continents to act as a carbon sink.
机译:干旱和大气干旱对生态系统服务和农业生产构成重大风险。但是,尽管这些因素通常同时发生,但很少将它们作为复合事件一起评估。陆地碳吸收的干旱胁迫的特征是土壤水分(SM)不足和高蒸气压不足(VPD)。我们使用原位观测和15个地球系统模型来显示,如果这些事件是独立的,则具有非常高的VPD和低SM的复合事件比预期的发生频率更高。这些复合事件预计将变得更加频繁和极端,并对大陆生产力产生越来越多的负面影响。模型预测了高VPD和低SM对植被生产力的负面影响加剧,北半球的SM强度超过VPD。这些结果凸显了复合极端事件的重要性及其对各大洲发挥碳汇能力的威胁。

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