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Thermodynamic perspective on negative retention effects in nanofiltration of concentrated sodium chloride solutions

机译:浓缩氯化钠溶液纳米滤波中负潴留作用的热力学透视

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摘要

Transport mechanisms for nanofiltration membranes are usually studied for solutions containing low solute concentrations, whereas practical applications of nanofiltration often use highly concentrated or even saturated solutions. These solutions are amongst others obtained from anti-solvent crystallization processes. This study shows that the NaCl retention for nanofiltration of a solution saturated in NaCl and containing either ionic or neutral anti-solvents can be predicted from thermodynamic considerations. The membrane resistance of nanofiltration membranes during NaCl transport through the membrane for solutions with a high NaCl concentration in the concentrate is negligible. Furthermore, the NaCl retention can be predicted based on simple anti-solvent crystallization experiments, provided that the concentrations of the anti-solvent in the permeate and concentrate are known. The concept has been proven for a range of ionic and neutral anti-solvents and a broad range of nanofiltration membranes.
机译:通常研究纳米过滤膜的运输机制用于含有低溶质浓度的溶液,而纳滤的实际应用通常使用高度浓缩甚至饱和溶液。这些溶液在抗溶剂结晶过程中获得的其他溶液。该研究表明,可以预测热力学考虑,可以预测用于在NaCl中饱和并含有离子或中性抗溶剂的溶液的NaCl保留。在浓缩物中通过膜通过膜的NaCl输送过程中纳米滤膜的膜抗性可忽略不计。此外,可以基于简单的抗溶剂结晶实验预测NaCl保持,条件是已知渗透物和浓缩物中的抗溶剂的浓度。该概念已被证明是一系列离子和中性抗溶剂和广泛的纳滤膜。

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