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Prospects in application of thermal analysis for assessing the total water potential of soils

机译:热分析在评估土壤总水势中的应用前景

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The theoretically derived dependence of the water vapor density (concentration) in the air on the absolute temperature permitted us to use the information obtained by thermogravimetric method for assessing the total potential of water remaining in colloids after drying at different temperatures. A close correlation and corresponding linear relationship fitting the fundamental physicochemical law by Landau-Derjaguin were observed between the logarithm modulus of the total potential of moisture left in soil colloids after drying at temperatures 27-70A degrees and 70-200A degrees C and their moisture. The total potential of water bound by hydrates and crystalline hydrates of substances in the soils varied in the range from-660 to-2394 J/g water, and that of water bound in soil clay minerals varied in the range from-714 to-2814 J/g water (which corresponds to the total soil water pressure of-7140 to-28140 atm.).
机译:从理论上得出的空气中水蒸气密度(浓度)对绝对温度的依赖性,使我们能够使用通过热重法获得的信息来评估在不同温度下干燥后胶体中残留的水的总潜力。在27-70A和70-200A的温度下干燥后,观察到土壤胶体中残留的水分总势的对数模量与水分之间存在紧密的相关性,并且线性关系符合Landau-Derjaguin的基本理化规律。土壤中与物质的水合物和结晶水合物结合的水的总势在-660至-2394 J / g水的范围内变化,而在土壤粘土矿物中结合的水的总势在-714至-2814范围内变化J / g水(对应于-7140至-28140 atm。的总土壤水压)。

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