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Solubility of KF and NaCl in water by molecular simulation

机译:分子模拟KF和NaCl在水中的溶解度

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The solubility of two ionic salts, namely, KF and NaCl, in water has been calculated by Monte Carlo molecular simulation. Water has been modeled with the extended simple point charge model (SPC/E), ions with the Tosi-Fumi model and the interaction between water and ions with the Smith-Dang model. The chemical potential of the solute in the solution has been computed as the derivative of the total free energy with respect to the number of solute particles. The chemical potential of the solute in the solid phase has been calculated by thermodynamic integration to an Einstein crystal. The solubility of the salt has been calculated as the concentration at which the chemical potential of the salt in the solution becomes identical to that of the pure solid. The methodology used in this work has been tested by reproducing the results for the solubility of KF determined previously by Ferrario [J. Chem. Phys. 117, 4947 (2002)]. For KF, it was found that the solubility of the model is only in qualitative agreement with experiment. The variation of the solubility with temperature for KF has also been studied. For NaCl, the potential model used predicts a solubility in good agreement with the experimental value. The same is true for the hydration chemical potential at infinite dilution. Given the practical importance of solutions of NaCl in water the model used in this work, whereas simple, can be of interest for future studies. (c) 2007 American Institute of Physics.
机译:已经通过蒙特卡洛分子模拟计算了两种离子盐,即KF和NaCl在水中的溶解度。使用扩展的简单点电荷模型(SPC / E),使用Tosi-Fumi模型的离子以及使用Smith-Dang模型的水与离子之间的相互作用对水​​进行建模。溶液中溶质的化学势已计算为总自由能相对于溶质颗粒数的导数。固相中溶质的化学势已通过热力学积分与爱因斯坦晶体进行了计算。已将盐的溶解度计算为溶液中盐的化学势变得与纯固体相同的浓度。已通过复制费拉里奥[J.化学物理117,4947(2002)]。对于KF,发现模型的溶解度仅与实验定性一致。还研究了KF的溶解度随温度的变化。对于NaCl,所使用的电势模型预测溶解度与实验值高度吻合。对于无限稀释下的水合化学势也是如此。考虑到NaCl水溶液的实际重要性,此工作中使用的模型虽然简单,但可能对将来的研究感兴趣。 (c)2007年美国物理研究所。

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