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首页> 外文期刊>Open Journal of Soil Science >Changes in Physical and Chemical Soil Characteristics as a Result of Subsurface Tile Drainage
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Changes in Physical and Chemical Soil Characteristics as a Result of Subsurface Tile Drainage

机译:地下瓷砖排水导致物理和化学土壤特性的变化

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摘要

This project defined changes in soil properties after construction of subsurface tile drainage. We compared the physical and chemical properties of soil samples taken before construction of drainage and new soil samples taken from identical sites at present. The research was made for Stagnic Cambisols (Dystric) and Haplic Stagnosols. The pH value and saturation of the topsoil sorption complex of both soil types statistically increased and simultaneously the cation exchange capacity (CEC) decreased. In the topsoil of Stagnosols, the effective cation exchange capacity and porosity also decreased, and at the same time the particle density and bulk density increased. Soil organic matter and minimum air capacity increased in the topsoil of Cambisols. Porosity and minimum air capacity increased in both soils in the subsoil. In the Cambisol subsoil, the CEC and bulk density decreased. We can assume that after drainage Stagnosols are susceptible to soil compaction, especially in topsoil.
机译:该项目在构建地下瓦片排水后定义了土壤性质的变化。我们比较了在目前施工施工之前采取的土壤样品的物理和化学性质和新的土壤样品。该研究是针对床卵醇(Dystric)和单级Stagnosol制造的。两种土壤类型的表土吸附复合物的pH值和饱和度统计上增加,同时阳离子交换能力(CEC)降低。在斯塔尼酚的表层中,有效的阳离子交换能力和孔隙率也降低,同时颗粒密度和散装密度增加。土壤有机质和最小空气能力在坎巴斯醇的表土中增加。滤波器的孔隙率和最小空气能力在底土壤中增加。在樟子醇底土中,CEC和散装密度降低。我们可以假设排水静止后易受土壤压实,特别是在表土的影响。

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