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Potential for detecting changes in soil organic carbon concentrations resulting from climate change

机译:检测气候变化导致土壤有机碳浓度变化的潜力

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摘要

The interaction between soil organic carbon pools and climate change is an important determinant of future atmospheric CO2 concentrations. Much effort has so far been allocated to manipulative process studies and predictive modelling exercises. Here, we examine the potential for directly detecting predicted changes through repeated soil sampling. Two contrasting benchmark plots were selected in the steppe at the Russian-Mongolian border, where soil organic carbon losses are predicted to be around 10% over the first 50 years of climate change. In both plots, 50 samples were taken to 20 and 30 cm depths. The estimated time intervals before re-sampling by the same method that were likely to prove significant soil organic carbon losses (alpha=0.05; statistical power=0.90) were 43 and 26 years.
机译:土壤有机碳库与气候变化之间的相互作用是未来大气中二氧化碳浓度的重要决定因素。迄今为止,已经为操纵过程研究和预测建模练习付出了很多努力。在这里,我们研究了通过重复土壤采样直接检测预测变化的潜力。在俄罗斯和蒙古边境的草原上,选择了两个截然不同的基准地块,据预测,在气候变化的前50年中,土壤有机碳损失约为10%。在两个图中,将50个样品采集到20和30 cm的深度。用同样的方法重新采样之前估计有可能证明土壤有机碳大量流失的估计时间间隔(α= 0.05;统计功效= 0.90)分别为43年和26年。

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