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Gross Primary Productivity of Four European Ecosystems Constrained by Joint CO2 and COS Flux Measurements

机译:受CO2和COS通量联合测量约束的四个欧洲生态系统的总初级生产力

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摘要

Gross primary productivity (GPP), the gross uptake of carbon dioxide (CO2) by plant photosynthesis, is the primary driver of the land carbon sink, which presently removes around one quarter of the anthropogenic CO2 emissions each year. GPP, however, cannot be measured directly and the resulting uncertainty undermines our ability to project the magnitude of the future land carbon sink. Carbonyl sulfide (COS) has been proposed as an independent proxy for GPP as it diffuses into leaves in a fashion very similar to CO2, but in contrast to the latter is generally not emitted. Here we use concurrent ecosystem‐scale flux measurements of CO2 and COS at four European biomes for a joint constraint on CO2 flux partitioning. The resulting GPP estimates generally agree with classical approaches relying exclusively on CO2 fluxes but indicate a systematic underestimation under low light conditions, demonstrating the importance of using multiple approaches for constraining present‐day GPP.
机译:总初级生产力(GPP)是植物光合作用对二氧化碳(CO2)的总吸收,是土地碳汇的主要驱动力,目前该土地每年减少约四分之一的人为二氧化碳排放量。但是,GPP无法直接测量,因此产生的不确定性破坏了我们预测未来陆地碳汇规模的能力。羰基硫醚(COS)已被提议作为GPP的独立代理,因为它以与CO2非常相似的方式扩散到叶片中,但与之相反,后者通常不被排放。在这里,我们在四个欧洲生物群落上同时进行了生态系统规模的CO2和COS通量测量,以共同约束CO2通量分配。产生的GPP估算通常与仅依靠CO2通量的经典方法一致,但表明在弱光条件下系统的低估,这表明使用多种方法来约束当今GPP的重要性。

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