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Impacts of Flow Rate and Pulsed Electric Field Current Mode on Protein Fouling Formation during Bipolar Membrane Electroacidification of Skim Milk

机译:流速和脉冲电场电流模式对脱脂牛奶双极膜电涂层蛋白质污垢形成的影响

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摘要

Fouling is one of the major problems in electrodialysis. The aim of the present work was to investigate the effect of five different solution flow rates (corresponding to Reynolds numbers of 162, 242, 323, 404 and 485) combined with the use of pulsed electric field (PEF) current mode on protein fouling of bipolar membrane (BPM) during electrodialysis with bipolar membranes (EDBM) of skim milk. The application of PEF prevented the fouling formation by proteins on the cationic interface of the BPM almost completely, regardless of the flow rate or Reynolds number. Indeed, under PEF mode of current the weight of protein fouling was negligible in comparison with CC current mode (0.07 ± 0.08 mg/cm2 versus 5.56 ± 2.40 mg/cm2). When a continuous current (CC) mode was applied, Reynolds number equals or higher than 323 corresponded to a minimal value of protein fouling of BPM. This positive effect of both increasing the flow rate and using PEF is due to the facts that during pauses, the solution flow flushes the accumulated protein from the membrane while in the same time there is a decrease in concentration polarization (CP) and consequently decrease in H+ generation at the cationic interface of the BPM, minimizing fouling formation and accumulation.
机译:Fouling是电渗透的主要问题之一。本作本作的目的是研究五种不同的溶液流速的影响(对应于162,242,323,404和485的雷诺数),所述脉冲电场(PEF)电流模式对蛋白质污垢的使用相结合在电渗析期间的双极膜(BPM)用双极膜(EDBM)的脱脂乳。 PEF的应用阻止了蛋白质在BPM的阳离子界面上的污垢形成几乎完全,无论流速还是雷诺数。实际上,在PEF模式下,与CC电流模式相比,蛋白质污染的重量可以忽略不计(0.07±0.08mg / cm 2与5.56±2.40mg / cm2)。当施加连续电流(CC)模式时,雷诺数等于或高于323,与BPM的蛋白质污垢的最小值相对应。这种阳性效果增加了流速和使用PEF是由于在暂停期间,溶液流动从膜中冲洗累积的蛋白质,同时浓度极化(CP)降低,从而减少H +在BPM的阳离子界面产生,最大限度地减少了污垢的形成和积累。

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