首页> 外文期刊>Geoderma: An International Journal of Soil Science >Modification of the RothC model for simulations of soil organic C dynamics in dryland regions.
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Modification of the RothC model for simulations of soil organic C dynamics in dryland regions.

机译:RothC模型的修改,以模拟干旱地区的土壤有机碳动态。

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The Rothamsted Carbon Model (RothC), models the turnover of soil organic carbon (C) in non-waterlogged topsoils. It requires only easily obtainable inputs, and has been widely and successfully used in many regions of the world. However, it has been shown to have limitations when used to predict soil C dynamics in semiarid areas, where unrealistically high C inputs have been required to obtain good simulations. Soils of semiarid regions, highly vulnerable to soil C depletion, could represent a sink of C and become economically valuable in the C credit market. Hence, we introduced modifications to RothC with the aim of improving the prediction of soil C dynamics for semiarid regions. Modifications made were: (i) the minimum value of the rate modifying factor for moisture was changed from 0.2 to 0.15 and 0.10 (indicated with the suffix 20, 15 and 10, respectively, in the name of the model); (ii) the maximum soil moisture deficit was increased and the hydrological constants (field capacity, wilting point and hygroscopic water) were calculated using pedotransfer function by van Genuchten (1980) (RothC20, RothC15, and RothC10); and (iii) soils that were bare were allowed to dry out more than in the current version of RothC (RothC_N, RothC20_N, RothC15_N, and RothC10_N). The modifications were tested on data from six experiments: five sites from semiarid regions and one from a temperate region. The modifications made in this study, which essentially reduce decomposition rate in soil, improved the model's performance for dry regions, especially when the rotation included a fallow. The model now requires more realistic C inputs to the soil, and one additional input (silt) that is normally measured with clay. These modifications do not impair the performance of the model under temperate conditions and so represent a broadening in the capability of the RothC model. Among all the various models compared, for simulation of SOC turnover we suggest the use of RothC10_N for dry regions as a part of global scale modelling.
机译:Rothamsted碳模型(RothC)对非涝渍表层土壤中有机碳(C)的转化进行建模。它只需要容易获得的输入,并已在世界许多地区广泛成功地使用。但是,在半干旱地区预测土壤C的动力学时,已显示出局限性,而为获得良好的模拟,需要不切实际的高C输入。半干旱地区的土壤极易遭受碳耗竭的影响,可能代表碳汇,并在碳信用市场上具有经济价值。因此,我们对RothC进行了修改,目的是改善半干旱地区土壤C动力学的预测。进行了以下修改:(i)将水分率调节因子的最小值从0.2更改为0.15和0.10(以型号名称分别以20、15和10为后缀); (ii)增加最大土壤水分亏缺,并利用van Genuchten(1980)(RothC20,RothC15和RothC10)的脚踏传递函数计算水文常数(田间持水量,枯萎点和吸湿水); (iii)使裸露的土壤变干的程度超过当前版本的RothC(RothC_N,RothC20_N,RothC15_N和RothC10_N)。根据来自六个实验的数据测试了这些修饰:五个来自半干旱地区的地点,一个来自温带地区的地点。这项研究所做的修改实质上降低了土壤中的分解速率,从而改善了模型在干旱地区的性能,尤其是当旋转包括休耕时。该模型现在需要向土壤提供更多逼真的碳输入,以及一个通常用粘土测量的附加输入(淤泥)。这些修改不会损害模型在温和条件下的性能,因此代表了RothC模型功能的扩展。在所有比较的模型中,为了模拟SOC转换,我们建议在干燥地区使用RothC10_N作为全球规模建模的一部分。

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