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Current-voltage curves of a composite bipolar membrane in organic acid-water solutions

机译:复合双极性膜在有机酸-水溶液中的电流-电压曲线

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摘要

The current-voltage curves of a composite bipolar membrane (CBM) were measured experimentally for the various mole fractions of formic acid + water, acetic acid+water and propionic acid+water mixed solution systems. The experimental results showed that a CBM has the characteristics of a bipolar membrane. The current-voltage characteristics were analyzed using Mafe's and Ramirez's ion transport theory by applying the chemical reaction model in the intermediate region, and the theoretical calculations could well explain the experimental results. The increase in the mole fraction of the organic acid causes the increase of the ion concentration in the solution, and this effect enhances the water splitting. On the other hand, the increase in the mole fraction of the organic acid causes the decrease of the water concentration in the space charge region of the membrane also, and the effect lessens the water splitting. Based on the above two effects, it could be expected that with an increase in the mole fraction of the organic acid, the maximum local effective value of a CBM resistance decreases firstly, and then increases when the mole fraction of water becomes rather low. The results that we found in our experiments correspond to the above discussion.
机译:通过实验测量了甲酸+水,乙酸+水和丙酸+水混合溶液系统的各种摩尔分数,复合双极膜(CBM)的电流-电压曲线。实验结果表明,煤层气具有双极膜的特征。通过在中间区域应用化学反应模型,利用Mafe's和Ramirez's离子迁移理论分析了电流-电压特性,理论计算可以很好地解释实验结果。有机酸的摩尔分数的增加引起溶液中离子浓度的增加,并且这种效果增强了水的分解。另一方面,有机酸的摩尔分数的增加也引起膜的空间电荷区域中水浓度的降低,并且该效果减少了水的分解。基于以上两个效果,可以预期,随着有机酸的摩尔分数的增加,CBM电阻的最大局部有效值首先减小,然后在水的摩尔分数变得很低时增大。我们在实验中发现的结果与上述讨论相对应。

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