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Variability of Soil Physical Properties in a Clay-Loam Soil and Its Implication on Soil Management Practices

机译:粘土壤土中土壤物理性质的变异性及其对土壤管理实践的启示

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We assessed the spatial variability of soil physical properties in a clay-loam soil cropped to corn and soybean. The study was conducted at Lincoln University in Jefferson City, Missouri. Soil samples were taken at four depths: 0–10?cm, 10–20, 20–40, and 40–60?cm and were oven dried at 105°C for 72 hours. Bulk density (BDY), volumetric (VWC) and gravimetric (GWC) water contents, volumetric air content (VAC), total pore space (TPS), air-filled (AFPS) and water-filled (WFPS) pore space, the relative gas diffusion coefficient (DIFF), and the pore tortuosity factor (TORT) were calculated. Results showed that, in comparison to depth 1, means for AFPS, Diff, TPS, and VAC decreased in Depth 2. Opposingly, BDY, Tort, VWC, and WFPS increased in depth 2. Semivariogram analysis showed that GWC, VWC, BDY, and TPS in depth 2 fitted to an exponential variogram model. The range of spatial variability () for BDY, TPS, VAC, WFPS, AFPS, DIFF, and TORT was the same (25.77?m) in depths 1 and 4, suggesting that these soil properties can be sampled together at the same distance. The analysis also showed the presence of a strong (≤25%) to weak (>75%) spatial dependence for soil physical properties.
机译:我们评估了种植玉米和大豆的黏土壤土的土壤物理性质的空间变异性。该研究是在密苏里州杰斐逊市的林肯大学进行的。在四个深度:0–10?cm,10–20、20–40和40–60?cm处采集土壤样品,并在105°C下烘干72小时。堆积密度(BDY),体积(VWC)和重量(GWC)含水量,体积空气含量(VAC),总孔隙空间(TPS),空气填充(AFPS)和水填充(WFPS)孔隙空间计算了气体扩散系数(DIFF)和孔隙曲折系数(TORT)。结果表明,与深度1相比,深度2的AFPS,Diff,TPS和VAC平均值降低。相反,深度2的BDY,Tort,VWC和WFPS升高。半变异函数分析表明,GWC,VWC,BDY,和深度2中的TPS拟合到指数变异函数模型。在深度1和深度4中,BDY,TPS,VAC,WFPS,AFPS,DIFF和TORT的空间变异性()范围相同(25.77?m),这表明可以在相同距离处一起采样这些土壤特性。分析还表明,土壤物理特性存在强(≤25%)至弱(> 75%)的空间依赖性。

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