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Recovery of citric acid from fermented liquid by bipolar membrane electrodialysis

机译:双极膜电渗析法从发酵液中回收柠檬酸

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The process of recovering citric acid from fermented liquid by bipolar membrane electrodialysis (BMED) was studied. Two bipolar membranes and one cation exchange membrane were stacked to form a two compartment BMED stack configuration. The effects of the current density, initial concentration of sodium citrate, and structure of the acid compartment (AC) and base compartment (BC) on the performance of the BMED process were investigated. Filling mixed-bed ion exchange resins in BC could decrease the compartment resistance and led to a pure base solution for reuse. The highest acid recovery of 97.1% was achieved with 3.3% initial sodium citrate under a current density of 40 mA cm(-1). Additionally, a decrease of voltage across AC by filling cation exchange resins restricted the migration of H+ ions from AC to BC. A higher initial concentration of sodium citrate has an adverse effect on the recovery of citric acid. BC with a bipolar membrane (BPM) exhibited lower energy consumption and a higher recovery rate of citric acid. BMED appears to be a promising technology for recovering citric acid from fermented liquid. (C) 2016 Elsevier Ltd. All rights reserved.
机译:研究了双极膜电渗析法从发酵液中回收柠檬酸的工艺。堆叠两个双极膜和一个阳离子交换膜以形成两个隔室的BMED堆叠结构。研究了电流密度,柠檬酸钠的初始浓度以及酸隔室(AC)和碱隔室(BC)的结构对BMED工艺性能的影响。在BC中填充混合床离子交换树脂可能会降低隔室阻力,并导致纯碱溶液可重复使用。在40 mA cm(-1)的电流密度下,用3.3%的初始柠檬酸钠可达到97.1%的最高酸回收率。另外,通过填充阳离子交换树脂来降低AC两端的电压会限制H +离子从AC迁移到BC。较高的柠檬酸钠初始浓度会对柠檬酸的回收产生不利影响。具有双极膜(BPM)的BC表现出较低的能耗和较高的柠檬酸回收率。 BMED似乎是一种从发酵液中回收柠檬酸的有前途的技术。 (C)2016 Elsevier Ltd.保留所有权利。

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