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Structure and Properties of Soil Organic-Mineral Gel

机译:土壤有机矿物凝胶的结构与性能

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Changes in the fractal dimension and scattering intensity of colloidal structures in a chernozem, soddy-podzolic soil, and a krasnozem were studied by small-angle neutron scattering at different temperatures and soil water contents. The character of the neutron scattering by soil colloids indicated that the latter were mass fractals in all of the soils studied; i.e., the colloidal particles were located apart from one another even in dry soils. The obtained results confirmed the supposition about thedistribution of colloidal particles in the humus gel matrix. The changes in the fractal parameters of the soddy-podzolic soil and chernozem with increasing water contents were nonmonotonic in character, which indicated complex structural rearrangementsof the colloidal component in these soils. From the results obtained, a conclusion was drawn that the destruction of the molecular network of reinforced humus gel occurred upon heating the soils to high temperatures: colloidal particles reinforcing the humus gel began to move and coagulate with the formation of dense aggregates. The electron-microscopic study of gel films released from the predried and then capillary wetted aggregates in water showed that the gel films were nonhomogeneous and included zones of humus gel reinforced by colloidal particles and zones almost free from these particles.
机译:通过在不同温度和土壤含水量下的小角度中子散射研究了黑钙土,泥质-土壤和克拉斯诺土胶体结构的分形维数和散射强度的变化。土壤胶体的中子散射特性表明,后者在所有研究过的土壤中都是质量分形。即,即使在干燥的土壤中,胶体颗粒也彼此分开。获得的结果证实了关于胶体颗粒在腐殖质凝胶基质中分布的假设。随着水分含量的增加,沙地-土壤和黑钙土的分形参数的变化具有非单调性,表明这些土壤中胶体组分的结构复杂重排。从获得的结果可以得出结论,加热土壤到高温时,增强的腐殖质凝胶的分子网络就会发生破坏:增强腐殖质凝胶的胶体颗粒开始移动并凝结,形成密集的聚集体。用电子显微镜研究了从水中预干燥后再经毛细管湿润的聚集体释放出的凝胶膜,该凝胶膜是不均匀的,包括由胶体颗粒增强的腐殖质凝胶区域和几乎没有这些颗粒的区域。

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