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Calculation of Ion Rejection by Extended Nernst–Planck Equation with Charged Reverse Osmosis Membranes for Single and Mixed Electrolyte Solutions

机译:用扩展的能斯特-普朗克方程计算带排斥反渗透膜的单离子和混合电解质溶液的离子排斥

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References(14) Cited-By(103) The extended Nernst–Planck equation, which takes account of the effective charge densities, was used to calculate rejection of single- and mixed-electrolyte solutions. Ion rejections with negatively charged membranes were calculated for single electrolytes of various valences (sodium chloride, hydrochloric acid, magnesium chloride, sodium hydroxide, magnesium chloride, sodium sulfate), mixed electrolytes having common cations (sodium chloride/sodium sulfate, sodium hydroxide/sodium sulfate) and mixed electrolytes having common anions (sodium chloride/magnesium chloride, hydrochloric acid/magnesium chloride). Mono- and divalent coions in mixtures were found to be separated effectively, and monovalent ions in particular showed negative rejections in a certain condition. Mono- and divalent counter ions in mixtures were not separated as efficiently as coions in mixtures. Rejections were found to be strongly dependent upon volume flux, mole fraction of the mixture and ratio of fixed charge density to feed concentration. For the single solution of mono-monovalent electrolyte, rejection obtained from the extended Nernst–Planck equation was compared with that from the previous model based on the irreversible thermodynamics.
机译:参考文献(14)Cited-By(103)考虑有效电荷密度的扩展Nernst-Planck方程用于计算单电解质溶液和混合电解质溶液的排斥率。对于各种价态的单一电解质(氯化钠,盐酸,氯化镁,氢氧化钠,氯化镁,硫酸钠),具有常见阳离子的混合电解质(氯化钠/硫酸钠,氢氧化钠/钠),计算带负电荷膜的离子排斥率硫酸盐)和具有常见阴离子(氯化钠/氯化镁,盐酸/氯化镁)的混合电解质。发现混合物中的单价和二价离子有效分离,特别是单价离子在一定条件下显示出负排斥。混合物中的一价和二价抗衡离子的分离效率不及混合物中的离子。发现拒绝率很大程度上取决于体积通量,混合物的摩尔分数以及固定电荷密度与进料浓度的比率。对于单价电解质的单溶液,基于不可逆热力学,将从扩展的Nernst–Planck方程获得的排阻与先前模型的排阻进行了比较。

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