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Spatio-temporal drivers of soil and ecosystem carbon fluxes at field scale in an upland grassland in Germany

机译:德国高原草地土壤和生态系统碳通量的时空驱动因素

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摘要

Ecosystem carbon (C) fluxes in terrestrial ecosystems are affected by varying environmental conditions (e.g. soil heterogeneity and the weather) and land management. However, the interactions between soil respiration (Rs) and net ecosystem exchange (NEE) and their spatio-temporal dependence on environmental conditions and land management at field scale is not well understood. We performed repeated C flux measurement at 21 sites during the 2013 growing season in a temperate upland grassland in Germany, which was fertilized and cut three times according to the agricultural practice typical of the region. Repeated measurements included determination of NEE, Rs, leaf area index (LAI), meteorological conditions as well as physical and chemical soil properties. Temporal variability of Rs was controlled by air temperature, while LAI influenced the temporal variability of NEE. The three grass cuts reduced LAI and affected NEE markedly. More than 50% of NEE variability was explained by defoliation at field scale. Additionally, soil heterogeneity affected NEE, but to a lower extent (>30%), while Rs remained unaffected. We conclude that grassland management (i.e. repeated defoliation) and soil heterogeneity affects the spatio-temporal variability of NEE at field scale.
机译:陆地生态系统中的生态系统碳通量受到变化的环境条件(例如土壤异质性和天气)和土地管理的影响。然而,人们对土壤呼吸(Rs)和净生态系统交换(NEE)之间的相互作用及其时空对环境条件和田间土地管理的依赖尚不十分了解。我们在2013年生长季节的德国温带高地草原上对21个地点进行了重复的C通量测量,并根据该地区的典型农业实践对其施肥并砍了3次。重复测量包括确定NEE,Rs,叶面积指数(LAI),气象条件以及土壤物理化学性质。 Rs的时间变异性受气温控制,而LAI影响NEE的时间变异性。三个割草减少了LAI并明显影响了NEE。超过50%的NEE变异性由田间规模的落叶解释。此外,土壤异质性影响NEE,但程度较小(> 30%),而Rs仍不受影响。我们得出的结论是,草地管理(即反复落叶)和土壤异质性会在田间尺度上影响NEE的时空变化。

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