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Limiting partial molar volume of sodium chloride in 2-methyl-2,4-pentandiol-water mixed solvents at 25 degrees C

机译:25°C下2-甲基-2,4-戊二醇-水混合溶剂中氯化钠的极限分摩尔体积

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Herein we report density measurements for the binary system 2-methyl-2,4-pentanediol(MPD,1)-water(0), and for the ternary system MPD(1)-NaCl(2)-water(0), at several fixed MPD/water ratios and at varying NaCl concentrations. The partial molar volume of MPD in the binary system has been discussed according to the McMillan-Meyer theory. At low MPD concentrations, the non-bonding MPD-MPD interactions are related to the overlapping of the hydrophobic parts of the hydration cospheres, whereas at higher concentrations the hydrophilic moieties are also involved in the solute-solute interactions. The ternary density data allowed us to determine the salt partial molar volume at infinite dilution. The trend of this quantity as a function of the MPD content in the MPD-water "mixed solvent" has been interpreted on the basis of the water partial molar volume in the binary MPD-water system.
机译:本文中,我们报告了二元系统2-甲基-2,4-戊二醇(MPD,1)-水(0)和三元系统MPD(1)-NaCl(2)-水(0)的密度测量值,几个固定的MPD /水比和不同的NaCl浓度。根据McMillan-Meyer理论讨论了二元体系中MPD的部分摩尔体积。在低MPD浓度下,非键MPD-MPD相互作用与水合作用层的疏水部分的重叠有关,而在较高浓度下,亲水性部分也参与溶质-溶质相互作用。三元密度数据使我们能够确定无限稀释下的盐分摩尔体积。已经基于二元MPD-水系统中水的部分摩尔体积来解释了该量作为MPD-水“混合溶剂”中MPD含量的函数的趋势。

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