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Changes in the geometric structure of pores and aggregates as indicators of the structural degradation of cultivated soils

机译:孔隙和聚集体几何结构的变化,指示耕地土壤的结构退化

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As shown by the example of loamy soils of the European territory of Russia, the geometric parameters of soil structure, along with the agrophysical soil parameters, should be taken into account for the comprehensive assessment of the physical degradation of cultivated soils. Different variants of the geometric transformation of soil structure in the plow horizons are analyzed. The shape and orientation of soil pores in thin sections prepared from undisturbed oriented soil samples are considered to be the main diagnostic indices. A computer-aided analysis of soil pores in thin sections made it possible to distinguish and characterize different levels of the geometric transformation of soil structure upon soil compaction: (a) without the disturbance of the shape and orientation of the aggregates, (b) with the transformation of soil aggregates from the crumb (granular) to the angular blocky shape, (c) with the development of a platy structure characterized by the predominantly horizontal orientation of the pores and aggregates, and (d) the complete disappearance of separate aggregates with the formation of a massive soil structure. The validity of the assessments of the geometric transformation of the soil pore space against the background of a considerable spatial variability in the geometric properties of soil structure in the plow horizon is discussed. The structural-functional specificity of the distinguished levels of the geometric transformation of soil structure is outlined.
机译:如俄罗斯欧洲领土上的壤土示例所示,应综合考虑土壤结构的几何参数以及农业物理土壤参数,以综合评估耕种土壤的物理退化。分析了犁耕层土壤结构几何变化的不同变体。由未扰动的定向土壤样品制备的薄片中土壤孔隙的形状和方向被认为是主要的诊断指标。通过计算机辅助分析薄部分中的土壤孔隙,可以区分和表征土壤压实后土壤结构几何变化的不同水平:(a)不受聚集体形状和方向的干扰,(b)土壤团聚体从碎屑(颗粒状)转变为角块状,(c)以板状结构的发展为特征,其主要是孔隙和团聚体的水平取向,以及(d)单独的团聚体完全消失。形成庞大的土壤结构。讨论了在犁地层中土壤结构的几何特性发生较大空间变化的背景下,土壤孔隙空间的几何转换评估的有效性。概述了土壤结构几何转换的显着水平的结构功能特异性。

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