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Physically based mathematical models of the water vapor sorption by soils.

机译:基于物理原理的土壤水蒸气吸附数学模型。

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Models for the quantitative description of the water vapor sorption isotherms in soils were developed on the basis of fundamental equations of equilibrium thermodynamics and the molecular-kinetic theory of gases. The derivation of the corresponding equations, their analytical study, and real data for some isotherms of the water vapor sorption by soils of different genesis and degree of dispersion were described. The models adequately described typical S-shaped sorption isotherms in the entire range of the relative water pressure with high determination coefficients (0.98 <= R2 <= 1) and statistically reliable parameters of the nonlinear regression. Along with the variable relative water content (pressure) of the water vapor in the atmosphere and the content of water in the soil, the parameters of the solid phase (specific surface), soil solution (concentration, electrolyte charges), and temperature were used as the base parameters of the models, which theoretically enable the prediction of changes in the sorption isotherms under the effect of these factors.Notes Translated from Pochvovedenie (2011) 6, 719-730 (Ru).
机译:基于平衡热力学的基本方程和气体的分子动力学理论,开发了土壤中水蒸气吸附等温线的定量描述模型。描述了相应方程的推导,它们的分析研究以及不同成因和分散度的土壤对水蒸气吸收的一些等温线的真实数据。该模型以较高的确定系数(0.98 <= R 2 <= 1)充分描述了相对水压整个范围内的典型S形吸附等温线。非线性回归的参数。连同大气中水蒸气的可变相对水含量(压力)和土壤中水的含量一起,使用固相(比表面),土壤溶液(浓度,电解质电荷)和温度的参数作为模型的基本参数,理论上可以预测这些因素影响下的吸附等温线的变化。注意事项摘录自 Pochvovedenie (2011) 6 ,719 -730(Ru)。

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