Effect of soil disturbance on pedotransfer function development for field capacity

M.A. Bell , H. van Keulen
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引用次数: 19

Abstract

The increasing use of simulation models for design and analysis of land use management options has meant an increased need for detailed soil data. When such data are not available, pedotransfer functions (PTFs) can be used to estimate soil properties such as cation exchange capacity (CEC) and field capacity (FC) from other more readily available data. However, if PTFs for FC have been developed from disturbed samples, there is a doubt as to the accuracy of the prediction for in-situ soils. To determine the effect of soil disturbance on the estimate of FC and the development of PTFs, we determined FC on both disturbed and in-situ samples for soils from four contrasting agro-ecological environments in Mexico. Results suggest that PTFs for FC developed from in-situ samples can be used in simulation modeling, as 89% of the variation across the four contrasting soils was explained; soil organic matter (SOM) being the dominant factor in the function. However, caution is required in using PTFs for FC developed from disturbed soil samples as they overestimated in-situ FC for all soils except for the coarser textured soil. Other PTFs for FC from the literature were evaluated in terms of their qualitative and quantitative estimates of in-situ FC.

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土壤扰动对土壤传递函数发展的影响
模拟模型越来越多地用于土地利用管理方案的设计和分析,这意味着对详细土壤数据的需求增加。当这些数据不可用时,土壤转移函数(PTF)可用于根据其他更容易获得的数据估计土壤性质,如阳离子交换容量(CEC)和田间容量(FC)。然而,如果FC的PTF是从扰动样本中开发的,则对原位土壤预测的准确性存在疑问。为了确定土壤扰动对FC估计和PTF发展的影响,我们在墨西哥四个对比农业生态环境的扰动和原位土壤样本上测定了FC。结果表明,从原位样品中开发的FC的PTF可以用于模拟建模,因为四种对比土壤中89%的变化得到了解释;土壤有机质(SOM)是该功能的主导因子。然而,在使用扰动土壤样品开发的FC的PTF时需要小心,因为它们高估了除质地较粗的土壤外的所有土壤的现场FC。文献中FC的其他PTF根据其对原位FC的定性和定量估计进行了评估。
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