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How Overlimiting Current Condition Influences Lactic Acid Recovery and Demineralization by Electrodialysis with Nanofiltration Membrane: Comparison with Conventional Electrodialysis

机译:电流超限如何影响纳滤膜电渗析法回收乳酸和脱矿质:与常规电渗析法的比较

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摘要

Acid whey is the main co-product resulting from the production of fresh cheeses and Greek-type yogurts. It generally goes through a spray-drying process prior to valorization, but it needs to be deacidified (lactic acid recovery) and demineralized beforehand to obtain a powder of quality with all the preserved compounds of interest such as lactose and proteins. Electrodialysis (ED) is a process actually used for acid whey treatment, but scaling formation at the surface of the ion-exchange membrane is still a major problem. In this work, a combination of two new avenues of ED treatment has been studied. First, the integration of a nanofiltration (NF) membrane in an ED conventional stack was compared to a classical ED stack with an anion-exchange membrane in a standard current condition. Secondly, both configurations were tested in the overlimiting current condition to study the impact of electroconvective vortices on process efficiency. The combined effects of the NF membrane and overlimiting current condition led to a higher lactic acid recovery rate of acid whey (40%), while the conventional ED stack in the overlimiting current condition led to a higher demineralization (87% based on the total cation concentration). Those effects were related to the conductivity, pH, global resistance, and energy consumption of each treatment that are influenced by water splitting phenomenon, which was decreased in the overlimiting condition.
机译:酸乳清是新鲜奶酪和希腊型酸奶生产的主要副产品。它通常在脱味之前经过喷雾干燥过程,但是需要先进行脱酸(回收乳酸)和脱矿物质,以获得具有所有保留的目标化合物(如乳糖和蛋白质)的优质粉末。电渗析(ED)是实际用于酸乳清处理的过程,但是离子交换膜表面结垢的形成仍然是一个主要问题。在这项工作中,已经研究了两种新的ED治疗途径的组合。首先,在标准电流条件下,将纳滤(NF)膜在ED常规烟囱中的集成度与带有阴离子交换膜的经典ED烟囱进行了比较。其次,两种结构都在极限电流条件下进行了测试,以研究电对流涡流对工艺效率的影响。 NF膜和极限电流条件的共同作用导致酸乳清的乳酸回收率更高(40%),而在极限电流条件下的常规ED堆栈导致更高的脱盐率(基于总阳离子的87%)浓度)。这些影响与受水分解现象影响的每种处理的电导率,pH,整体电阻和能量消耗有关,在超限条件下水分解现象被降低。

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