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Simulating decomposition of labile soil organic carbon: Effects of pH

机译:模拟不稳定土壤有机碳的分解:pH值的影响

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Based on previous studies we suppose common soil carbon turnover modelling approaches to fail to accurately simulate the fate of labile organic carbon in acidic soils possibly because pH effects on decomposition are not accounted for. For mountainous permanent grasslands with higher shares of particulate carbon, turnover times of this fraction were calculated by means of radiocarbon dating and compared with rate constants of the RothC model. The model rate constant for plant litter decomposition was adjusted by pH response functions derived from (i) published data of litter decomposition or soil N dynamics and (ii) a best fit through the radiocarbon-derived turnover rates. After parameterization, the match of radiocarbon-based and model-based values was significantly improved for both rate constants and pool sizes. The results suggest that ignoring soil pH effects in models might produce misleading projections on soil carbon stocks under warming.
机译:根据先前的研究,我们认为常见的土壤碳转换模型方法无法准确模拟酸性土壤中不稳定有机碳的命运,这可能是因为未考虑pH对分解的影响。对于颗粒碳含量较高的山区永久性草地,通过放射性碳年代测定法计算该馏分的周转时间,并将其与RothC模型的速率常数进行比较。植物凋落物分解的模型速率常数是通过pH响应函数进行调整的,pH响应函数来自(i)凋落物分解或土壤N动态的公开数据,以及(ii)放射性碳衍生的周转率的最佳拟合。参数化后,速率常数和池大小的放射性碳基值和模型基值的匹配都得到了显着改善。结果表明,在模型中忽略土壤pH值的影响可能会对升温条件下的土壤碳储量产生误导性的预测。

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