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Systematic Study of the Impact of Pulsed Electric Field Parameters (Pulse/Pause Duration and Frequency) on ED Performances during Acid Whey Treatment

机译:酸乳清处理过程中脉冲电场参数(脉冲/暂停持续时间和频率)对ED性能影响的系统研究

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摘要

Processing acid whey is still a challenge for the dairy industry due to its high lactic acid and mineral contents. Their removal processes represent a high investment and running cost in addition to significant production of polluting effluents. A previous study showed that the use of electrodialysis with the application of pulsed electric fields (PEFs) was sufficiently efficient to produce dryable acid whey with reduced scaling issues during the process. In the present work, eight PEF conditions using different pulse/pause durations and frequencies were tested for 1) process optimization and 2) understanding of the underlying mechanisms involved in PEF process improvements. Best results were obtained for PEF conditions (5 s/5 s) and (15 s/15 s) with almost complete scaling mitigation and minimal energy consumption (5.3 ± 0.4 Wh/g of lactic acid vs. 9.33 ± 1.38 Wh/g for continuous current). Longer pause times also led to better divalent ion demineralization at the expense of sodium elimination induced by stronger affinity with the membrane and longer retention times. For the first time, PEF parameters of relatively low frequencies (<1) were studied in sub-limiting current conditions on a complex solution such as acid whey.
机译:酸乳清的加工由于其高乳酸和矿物质含量,仍然是乳品行业的挑战。除大量生产污染废水外,它们的去除过程还意味着高投资和运行成本。先前的一项研究表明,将电渗析与脉冲电场(PEF)结合使用,足以生产出可干燥的酸乳清,并且在加工过程中减少了结垢问题。在本工作中,测试了使用不同脉冲/暂停持续时间和频率的8种PEF条件,以进行1)工艺优化和2)了解PEF工艺改进所涉及的基本机制。在PEF条件下(5 s / 5 s)和(15 s / 15 s)可获得最佳结果,几乎可以完全缓解水垢,并且能耗最低(乳酸5.3±0.4 Wh / g,而乳酸的9.33±1.38 Wh / g连续电流)。更长的停顿时间还导致更好的二价离子脱矿质,但代价是与膜之间的亲和力更强且保留时间更长,从而导致钠的消除。第一次,在限制电流条件下,在酸乳清等复杂溶液中研究了相对较低频率(<1)的PEF参数。

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