首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Positive Impact of Pulsed Electric Field on Lactic Acid Removal Demineralization and Membrane Scaling during Acid Whey Electrodialysis
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Positive Impact of Pulsed Electric Field on Lactic Acid Removal Demineralization and Membrane Scaling during Acid Whey Electrodialysis

机译:脉冲电场对酸乳清电渗析中乳酸去除脱矿质和膜结垢的积极影响

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摘要

The drying of acid whey is hindered by its high mineral and organic acid contents, and their removal is performed industrially through expensive and environmentally impacting serial processes. Previous works demonstrated the ability to remove these elements by electrodialysis alone but with a major concern—membrane scaling. In this study, two conditions of pulsed electric field (PEF) were tested and compared to conventional DC current condition to evaluate the potential of PEF to mitigate membrane scaling and to affect lactic acid and salt removals. The application of a PEF 25 s/25 s pulse/pause combination at an initial under-limiting current density allowed for decreasing the amount of scaling, the final system electrical resistance by 32%, and the relative energy consumption up to 33%. The use of pulsed current also enabled better lactic acid removal than the DC condition by 10% and 16% for PEF 50 s/10 s and 25 s/25 s, respectively. These results would be due to two mechanisms: (1) the mitigation of concentration polarization phenomenon and (2) the rinsing of the membranes during the pause periods. To the best of our knowledge, this was the first time that PEF current conditions were used on acid whey to both demineralize and deacidify it.
机译:酸乳清的干燥因其较高的无机酸和有机酸含量而受到阻碍,并且工业上通过昂贵且对环境有影响的连续过程将其除去。以前的工作证明了仅通过电渗析就可以除去这些元素的能力,但主要涉及膜结垢。在这项研究中,测试了脉冲电场(PEF)的两个条件,并将其与常规DC电流条件进行了比较,以评估PEF减轻膜结垢并影响乳酸和盐分去除的潜力。在初始的极限电流密度下施加25 s / 25 s的PEF 25 s / 25 s脉冲/暂停组合可减少缩放比例,将最终系统电阻降低32%,并将相对能耗降低至33%。对于PEF 50 s / 10 s和25 s / 25 s,脉冲电流的使用还比DC条件下的乳酸去除效果更好,分别为10%和16%。这些结果归因于两个机制:(1)缓解浓度极化现象和(2)在暂停期间冲洗膜。据我们所知,这是首次在酸乳清上使用PEF当前条件对其进行脱盐和脱酸。

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