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Membrane fouling caused by amino acid and calcium during bipolar membrane electrodialysis

机译:双极膜电渗析过程中氨基酸和钙引起的膜污染

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BACKGROUND: Bipolar membrane electrodialysis (BMED) has been widely applied in the recovery/production of organic acids and in the treatment of wastewater containing ammonium sulfate, sodium nitrate, sodium acetate and ammonium nitrate. However, membrane fouling is still one of the major problems in the electrodialysis process. Since calcium and amino acid are present naturally in fermentation wastewater, this study was carried out to determine the effects of calcium and amino acid on membrane fouling when simulated fermentation wastewater containing ammonium sulfate was treated by BMED. RESULTS: Calcium formed a scale on the cation exchange membrane (CEM) surface in contact with the base cell, but this had no significant adverse effect on the BMED performance. Amino acid, however, caused CEM fouling of the inner membrane, which hampered the BMED process. The coexistence of calcium and amino acid aggravated the membrane fouling, as observed morphologically on the CEM surface on the base cell side. Elemental mapping analysis showed that the membrane foulant was composed of calcium hydroxide and amino acid. CONCLUSION: The CEM fouling caused by calcium and that due to amino acid, which were distributed differently on the membrane, had different effects on the BMED performance. The coexistence of amino acid and calcium deteriorated the CEM fouling during BMED. (C) 2008 Society of Chemical Industry
机译:背景:双极膜电渗析(BMED)已广泛应用于有机酸的回收/生产以及含硫酸铵,硝酸钠,乙酸钠和硝酸铵的废水的处理。然而,膜结垢仍然是电渗析过程中的主要问题之一。由于发酵废水中天然存在钙和氨基酸,因此本研究旨在确定采用BMED处理含硫酸铵的模拟发酵废水时,钙和氨基酸对膜污染的影响。结果:钙在与基础细胞接触的阳离子交换膜(CEM)表面上形成水垢,但这对BMED性能没有明显的不利影响。然而,氨基酸引起内膜的CEM结垢,从而阻碍了BMED过程。钙和氨基酸的共存加剧了膜结垢,如在基础细胞一侧的CEM表面形态学上所观察到的。元素作图分析表明,膜垢由氢氧化钙和氨基酸组成。结论:钙引起的CEM结垢和氨基酸引起的CEM结垢在膜上的分布不同,对BMED性能有不同的影响。氨基酸和钙的共存使BMED过程中的CEM结垢恶化。 (C)2008年化学工业学会

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