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Effects of Salt Concentration Changes During Freezing on the Unfrozen Water Content of Porous Materials

机译:冷冻过程中盐浓度变化对多孔材料未冻结含水量的影响

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By combining equations for salt concentration by water removal from porous bodies with those for freezing point depression in normal solutions, equations are developed for calculating freezing point depression shifts due to the gradual removal of water upon freezing in porous bodies. The same equations can be used for the calculation of shifts in the osmotic potential of the water in drying porous bodies by using a simple conversion factor. Graphs relating the remaining water content to the freezing point shift for various initial soluble salt contents are given. Good agreement is found between the measured freezing point depression shifts for a silty clay soil treated with three concentrations of sodium chloride and with dimethyl sulfoxide at various contents of unfrozen water and the calculated values. The order of magnitude of the shifts expected in various natural conditions is discussed.
机译:通过将从多孔体中除水的盐浓度方程与正态溶液中冰点降低的方程相结合,建立了用于计算多孔体冻结时逐渐除去水导致的冰点降低位移的方程。通过使用简单的转换因子,可以使用相同的方程来计算干燥多孔体中水的渗透势位变化。给出了将剩余水含量与各种初始可溶性盐含量的凝固点变化联系起来的图表。在不同浓度的未冻结水中,用3浓度氯化钠和二甲基亚砜处理的粉质粘土的冰点凹陷位移与计算值之间有很好的一致性。讨论了在各种自然条件下预期的变化数量级。

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