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首页> 外文期刊>Scientific reports. >Extreme climatic events down-regulate the grassland biomass response to elevated carbon dioxide
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Extreme climatic events down-regulate the grassland biomass response to elevated carbon dioxide

机译:极端气候事件下调了草地生物量对二氧化碳升高的响应

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Terrestrial ecosystems are considered as carbon sinks that may mitigate the impacts of increased atmospheric CO2 concentration ([CO2]). However, it is not clear what their carbon sink capacity will be under extreme climatic conditions. In this study, we used long-term (1998–2013) data from a C3 grassland Free Air CO2 Enrichment (FACE) experiment in Germany to study the combined effects of elevated [CO2] and extreme climatic events (ECEs) on aboveground biomass production. CO2 fertilization effect (CFE), which represents the promoted plant photosynthesis and water use efficiency under higher [CO2], was quantiffied by calculating the relative differences in biomass between the plots with [CO2] enrichment and the plots with ambient [CO2]. Down-regulated CFEs were found when ECEs occurred during the growing season, and the CFE decreases were statistically significant with p well below 0.05 (t-test). Of all the observed ECEs, the strongest CFE decreases were associated with intensive and prolonged heat waves. These findings suggest that more frequent ECEs in the future are likely to restrict the mitigatory effects of C3 grassland ecosystems, leading to an accelerated warming trend. To reduce the uncertainties of future projections, the atmosphere-vegetation interactions, especially the ECEs effects, are emphasized and need to be better accounted.
机译:陆地生态系统被认为是碳汇,可以减轻大气中二氧化碳浓度([CO2])增加的影响。但是,目前尚不清楚它们在极端气候条件下的碳吸收能力。在这项研究中,我们使用了德国C3草地自由空气CO2浓缩(FACE)实验的长期数据(1998-2013),研究了升高的[CO2]和极端气候事件(ECE)对地上生物量生产的综合影响。 。通过计算富集[CO2]的地块与环境[CO2]的地块之间生物量的相对差异,可以量化CO2施肥效应(CFE),代表在较高[CO2]下植物的光合作用和水分利用效率。当在生长季节发生ECE时,发现CFE的表达下调,并且CFE的下降具有统计学意义,p远低于0.05(t检验)。在所有观察到的ECE中,CFE降幅最大的是强烈和长时间的热浪。这些发现表明,未来更频繁的ECE可能会限制C3草地生态系统的缓解作用,从而导致变暖趋势加速。为了减少未来预测的不确定性,强调了大气与植被的相互作用,尤其是欧洲经委会的影响,需要更好地加以考虑。

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