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Soil moisture controls on temperature sensitivity of soil organic carbon decomposition for a mesic grassland

机译:土壤水分对中型草原土壤有机碳分解温度敏感性的控制

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We examined relationships between soil moisture and the temperature sensitivity of decomposition of labile soil organic carbon at a central North American grassland. For soils collected from shallow, xeric uplands, temperature sensitivity was greatest at intermediate soil moisture. For soils collected from the deeper, mesic lowlands, temperature sensitivity increased with increasing soil moisture. For example, lowland soils incubated at 75% WHC exhibited an apparent activation energy (E sub(a)) that was 15 kJ mol super(-1) greater than soils incubated at 30% WHC, the equivalent of a Q sub(10) of 2.8 vs. 2.3. Although further research is still needed to understand why moisture-temperature sensitivity relationships would differ between topographic positions, the magnitude of the soil moisture effect is large enough to alter soil C budgets and should be considered explicitly when predicting ecosystem responses to global change scenarios.
机译:我们研究了北美中部草原土壤水分与不稳定土壤有机碳分解的温度敏感性之间的关系。对于从干燥的旱地高地收集的土壤,在中等土壤湿度下温度敏感性最大。对于从较深的中陆低地收集的土壤,温度敏感性随土壤湿度的增加而增加。例如,在75%WHC下孵育的低地土壤表现出的表观活化能(E sub(a))比在30%WHC下孵育的土壤的表观活化能大15 kJ mol super(-1),相当于Q sub(10)分别为2.8和2.3。尽管仍需要进一步的研究来理解为什么湿气温度敏感性之间的关系在地形位置之间会有所不同,但是土壤湿气影响的大小足以改变土壤C的预算,因此在预测生态系统对全球变化情景的响应时应明确考虑。

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