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Salt Concentration Differences Alter Membrane Resistance in Reverse Electrodialysis Stacks

机译:盐浓度差异会改变反向电渗析堆的膜电阻。

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Membrane ionic resistance is usually measured by immersing the membrane in a salt solution at a single, fixed concentration. While salt concentration is known to affect membrane resistance when the same concentration is used on both sides of the membrane, little is known about membrane resistance when the membrane is placed between solutions of different concentrations, such as in a reverse electrodialysis (RED) stack. Ionic resistance measurements obtained using Selemion CMV and AMV that separated sodium chloride and ammonium bicarbonate solutions of different concentrations were greater than those measured using only the high- concentration solution. Measured RED stack resistances showed good agreement with resistances calculated using an equivalent series resistance model, where the membranes accounted for 46% of the total stack resistance. The high area resistance of the membranes separating different salt concentration solutions has implications for modeling and optimizing membranes used in RED systems.
机译:膜离子电阻通常通过将膜浸入单一固定浓度的盐溶液中来测量。当在膜的两面使用相同的浓度时,虽然盐浓度会影响膜的电阻,但是当将膜置于不同浓度的溶液之间时(例如在反向电渗析(RED)堆中),对于膜的电阻知之甚少。使用Selemion CMV和AMV分离不同浓度的氯化钠和碳酸氢铵溶液获得的离子电阻测量结果大于仅使用高浓度溶液测量的离子电阻测量结果。测得的RED叠层电阻与使用等效串联电阻模型计算的电阻显示出良好的一致性,其中膜占总叠层电阻的46%。分离不同盐浓度溶液的膜的高面积电阻对RED系统中使用的膜的建模和优化具有影响。

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