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Modeling temperature effects on decomposition

机译:模拟温度对分解的影响

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摘要

Temperature strongly affects carbon decomposition making it difficult to apply decay rates determined in one environment to another. After considering a number of approaches, this study recommends modeling decay by using the Arrhenius equation to adjust time. The resulting decay constants are independent of temperature and can therefore be applied to similar materials in other climates. To test the method, parameters developed from a mesophilic mulch decomposition study are applied to a thermophilic compost experiment. A two compartment linear model is used and cases are considered where Q(10) values for labile and recalcitrant compartments are uniform and where they differ. In the uniform case, Q(10) = 2 is found to be reasonable. Where different Q(10) values are allowed, it is found that Q(10) = 1 for the labile fraction and Q(10) = 3.3 for recalcitrant materials suggesting that labile and recalcitrant materials may respond differently to temperature gradients. [References: 27]
机译:温度强烈影响碳的分解,因此很难将一种环境中确定的衰减率应用于另一种环境。在考虑了多种方法之后,本研究建议使用Arrhenius方程调整时间来对衰减建模。所得的衰减常数与温度无关,因此可以在其他气候下应用于相似的材料。为了测试该方法,将从中温覆盖分解研究中得出的参数应用于嗜热堆肥实验。使用两室线性模型,并考虑了不稳定和顽固性室的Q(10)值是统一的且不同的情况。在统一情况下,发现Q(10)= 2是合理的。在允许使用不同的Q(10)值的情况下,发现不稳定部分的Q(10)= 1,顽固性材料的Q(10)= 3.3,这表明不稳定和顽固性材料对温度梯度的响应可能不同。 [参考:27]

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