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Recovery of organic acids with high molecular weight using a combined electrodialytic process

机译:使用组合电渗析工艺回收高分子量有机酸

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When organic acids having molecular weights of around 200 kg kmol~-l or more are recovered using electrodialysis with bipolar membranes (EDB) in a three compartment arrangement, mass transfer (conversion rate) is rather low and energy consumption is relatively high. One of the problems lies in the coupled system between anion exchange membranes and bipolar membranes. In order to reduce the bipolar membrane area, a high transport rate through the anion exchange membranes is necessary. This, however, leads to an unpropotionately high energy consumption. In this study an attempt was made to improve the process by splitting the three compartment EDB into a conventional ED, and a two compartment system with bipola-r and cation exchange membranes. This means, the bipolar membrane area will be determined by the transport rates of Na~+ through the cation exchange membrane, which is advantageous. However, the equivalent Na~+ amount must be transported two times. The organic acids separated were gluconic and citric acid. The results showed that in both cases an improvement of the technology appears possible. The bipolar membrane area can be significantly reduced, which from the economic point of view is very important. Normally, energy and membrane costs are to a certain degree variable. Thus, the degree to which the process can be made more economical has to be considered case by case.
机译:当使用三室布置中的双极膜(EDB)通过电渗析回收分子量为约200kg·km-1或更高的有机酸时,传质(转化率)相当低并且能量消耗相对较高。问题之一在于阴离子交换膜和双极膜之间的耦合系统。为了减小双极性膜的面积,需要通过阴离子交换膜的高传输速率。但是,这导致了不适当的高能耗。在这项研究中,人们试图通过将三室EDB分成传统的ED以及带有bipola-r和阳离子交换膜的两室系统来改善工艺。这意味着,双极膜面积将由Na +通过阳离子交换膜的传输速率决定,这是有利的。但是,等效的Na〜+量必须运输两次。分离的有机酸是葡萄糖酸和柠檬酸。结果表明,在两种情况下,都有可能对技术进行改进。双极膜的面积可以显着减小,从经济角度来看这是非常重要的。通常,能源和膜成本在一定程度上是可变的。因此,必须逐案考虑使该过程更经济的程度。

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