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首页> 外文期刊>Monatshefte fur Chemie >Osmotic coefficients of aqueous solutions of potassium acesulfame, sodium saccharin, and ammonium and tetramethylammonium cyclohexylsulfamates at the freezing point of solutions
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Osmotic coefficients of aqueous solutions of potassium acesulfame, sodium saccharin, and ammonium and tetramethylammonium cyclohexylsulfamates at the freezing point of solutions

机译:乙酰冰钾,糖精钠,环己基氨基磺酸铵和四甲基铵在溶液的凝固点时的渗透系数

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The osmotic coefficients of aqueous solutions of potassium acesulfame (0.67 mol kg~(-1)), sodium saccharin (0.75 mol kg~(-1)), and tetramethylammonium (0.55 mol kg~(-1)) and ammonium (0.35 mol kg~(-1)) cyclohexylsulfamates were determined up to the molality indicated in parentheses. The osmotic coefficients were fitted to the Pitzer equation, and the ion interaction parameters α1, β~((0)) and β~((1)) were evaluated. The mean ionic activity coefficients of the solutes were calculated, and the non-ideal behaviour of the systems investigated were characterized by calculation of the excess Gibbs energy of the solution and the respective partial molar functions of solute and solvent. The partial molar excess Gibbs energies of the solutes are negative, as also are the corresponding excess Gibbs energies of their solutions, and the partial molar excess Gibbs energies of the solvent are positive and increase slightly with increasing concentrations of the solutes. The solvation ability of water was calculated from differences between the Gibbs energy of solution of water in the aqueous solutions and that of pure water, and are positive and small for all the solutes investigated, throughout the concentration ranges studied.
机译:乙酰磺胺钾(0.67 mol kg〜(-1)),糖精钠(0.75 mol kg〜(-1)),四甲基铵(0.55 mol kg〜(-1))和铵(0.35 mol)的渗透系数确定kg((-1))环己基氨基磺酸盐直至括号中所示的摩尔浓度。将渗透系数拟合到Pitzer方程,并评估离子相互作用参数α1,β〜((0))和β〜((1))。计算溶质的平均离子活度系数,并通过计算溶液的过量吉布斯能量以及溶质和溶剂各自的部分摩尔函数来表征所研究体系的非理想行为。溶质的部分摩尔过量吉布斯能量为负,溶液的相应过量吉布斯能量也为负,溶剂的部分摩尔过量吉布斯能量为正,并随溶质浓度的增加而略有增加。水的溶剂化能力是通过水溶液在水溶液中的吉布斯能量与纯水的吉布斯能量之间的差异计算得出的,并且在所研究的整个浓度范围内,对于所有所研究的溶质而言,其溶解度均为正且较小。

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