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首页> 外文期刊>Journal of Colloid and Interface Science >Ionic separation efficiency of a novel electric-field-assisted membrane module comprising an array of microchannel units
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Ionic separation efficiency of a novel electric-field-assisted membrane module comprising an array of microchannel units

机译:具有微通道单元阵列的新型电场辅助膜组件的离子分离效率

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The ionic separation efficiency of a novel membrane module comprising an array of microchannel units is analyzed. Under the Debye-Huckel approximation, we derive a semianalytical expression for the ionic separation efficiency. Analyses reveal that the effects of the size of the microchannel, the fixed charge density in the membrane layer, and the permittivity of the membrane layer on ionic separation efficiency depend strongly on the valence type of electrolyte in treated water. Under the condition of a symmetric electrolyte, the ionic separation efficiency is found to be about unity and unresponsive to variation of system parameters. If the valence of the cation is higher than that of the anion, the ionic separation efficiency is larger than unity, and decreases to unity as the size of the microchannel increases. In contrast, if the valence of the cation is lower than that of the anion, the ionic separation efficiency is smaller than unity and increases to unity as the size of the microchannel increases. Under the latter two conditions, the effects of both fixed charge density in the membrane layer and permittivity of the membrane layer on the ionic separation efficiency are found to be reversed. (c) 2006 Elsevier Inc. All rights reserved.
机译:分析了包括微通道单元阵列的新型膜组件的离子分离效率。在Debye-Huckel近似下,我们导出了离子分离效率的半解析表达式。分析表明,微通道尺寸,膜层中固定电荷密度以及膜层介电常数对离子分离效率的影响在很大程度上取决于处理水中电解质的价态类型。在对称电解质的条件下,发现离子分离效率约为1,并且对系统参数的变化无响应。如果阳离子的化合价高于阴离子的化合价,则离子的分离效率大于一,并且随着微通道尺寸的增加而降低至一。相反,如果阳离子的化合价低于阴离子的化合价,则离子的分离效率小于1,并且随着微通道尺寸的增加而增加至1。在后两种条件下,发现膜层中固定电荷密度和膜层介电常数对离子分离效率的影响是相反的。 (c)2006 Elsevier Inc.保留所有权利。

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