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首页> 外文期刊>The Journal of Chemical Physics >Theoretical analysis of aqueous solutions of mixed strong electrolytes by a smaller-ion shell electrostatic model
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Theoretical analysis of aqueous solutions of mixed strong electrolytes by a smaller-ion shell electrostatic model

机译:基于小离子壳静电模型的混合强电解质水溶液理论分析

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In spite of the great importance of mixed electrolytes in science and technology, no compelling theoretical explanation has been offered yet for the thermodynamic behavior of such systems, such as their deviation from ideality and the variation of their excess functions with ionic composition and concentration. Using the newly introduced Smaller-ion Shell treatment - an extension of the Debye-Hückel theory to ions of dissimilar size (hence DH-SiS) - simple analytic mathematical expressions can be derived for the mean and single-ion activity coefficients of binary electrolyte components of ternary ionic systems. Such expressions are based on modifying the parallel DH-SiS equations for pure binary ionic systems, by adding to the three ion-size parameters - a (of counterions), b+ (of positive coions), and b_- (of negative coions) - a fourth parameter. For the (+ + -) system, this is "b_(++)," the contact distance between non-coion cations. b_(++) is derived from fits with experiment and, like the other b's, is constant at varying ion concentration and combination. Four case studies are presented: (1) HCl-NaCl-H_2O, (2) HCl-NH_4Cl-H_2O, (3) (0.01 M HX)-MX-H_2O with X = Cl, Br, and with M = Li, Na, K, Cs, and (4) HCl-MCl_n-H_2O with n = 2, M = Sr, Ba; and n = 3, M = Al, Ce. In all cases, theory is fully consistent with experiment when using a of the measured binary electrolyte as the sole fitting parameter. DH-SiS is thus shown to explain known "mysteries" in the behavior of ternary electrolytes, including Harned rule, and to adequately predict the pH of acid solutions in which ionized salts are present at different concentrations.
机译:尽管混合电解质在科学和技术中非常重要,但尚未提供有关此类系统的热力学行为的令人信服的理论解释,例如其偏离理想状态以及其过剩功能随离子组成和浓度的变化。使用新引入的Smaller-ion Shell处理方法-将Debye-Hückel理论扩展到大小不同的离子(因此DH-SiS)-可以得出简单的解析数学表达式,以表示二元电解质组分的均值和单离子活度系数三元离子系统。这些表达式基于修改纯二元离子系统的平行DH-SiS方程,方法是在三个离子大小参数上加上-(抗衡离子),b +(正离子)和b_-(负离子)-第四个参数。对于(+ +-)系统,这是“ b _(++)”,即非结合阳离子之间的接触距离。 b _(++)源自与实验的拟合,并且像其他b一样,在变化的离子浓度和组合下恒定。提出了四个案例研究:(1)HCl-NaCl-H_2O,(2)HCl-NH_4Cl-H_2O,(3)(0.01 M HX)-MX-H_2O,其中X = Cl,Br,M = Li,Na ,K,Cs和(4)HCl-MCl_n-H_2O,n = 2,M = Sr,Ba; n = 3,M = Al,Ce。在所有情况下,当使用实测二元电解质中的一个作为唯一拟合参数时,理论与实验完全一致。因此显示出DH-SiS可以解释三元电解质行为的已知“奥秘”,包括Harned法则,并可以充分预测其中离子化盐浓度不同的酸性溶液的pH值。

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