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首页> 外文期刊>Journal of Membrane Science >An in situ coupling separation process of electro-electrodialysis with back-extraction
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An in situ coupling separation process of electro-electrodialysis with back-extraction

机译:电渗析与反萃取的原位耦合分离过程

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摘要

To intensify mass transfer and simplify the separation processes in recovering and concentrating organic acids from their fermentation broths, an in situ coupling separation process of electro-electrodialysis with back-extraction has been developed. In this new process an oil-in-water disperse system comprised by extractant phase and stripping phase flew in the cathode chamber concurrently. The two steps, including back-extraction and concentration, happen at the same time in one module. The experimental studies on the process were carried out, with a mixed solvent of a kind of tertiary amine with long aliphatic chains and n-octanol as the extractant, and citric acid as the solute. The salt aqueous solution of mono-sodium citrate was used as the stripping phase. The influence of the current density, phase ratio of the extractant phase to the stripping phase, salt concentration of the stripping phase and initial concentration of receptor was investigated. The experimental results showed that the new process integrated the EED process with the back-extraction process in one module successfully, which made the separation process simple and the equipment cost less. The current efficiency of 103.5% and the specific energy consumption of 2.48 kW h/kg were reached. Meanwhile the voltage was not higher than 24 V. Compared with a normal EED process, it is a process with the advantages of higher mass transfer performance and slightly lower energy consumption. © 2005 Elsevier B.V. All rights reserved.
机译:为了加强传质并简化从发酵液中回收和浓缩有机酸的分离过程,已经开发了电渗析与反萃取的原位耦合分离方法。在这一新工艺中,由萃取相和汽提相组成的水包油分散系统同时在阴极室中飞行。反萃取和浓缩这两个步骤在一个模块中同时进行。以长脂肪族链的叔胺和正辛醇为萃取剂,柠檬酸为溶质的混合溶剂,对该工艺进行了实验研究。柠檬酸一钠的盐水溶液用作汽提相。研究了电流密度,萃取剂相与汽提相的相比,汽提相的盐浓度和受体初始浓度的影响。实验结果表明,该新工艺成功地将EED工艺与反萃取工艺集成在一个模块中,简化了分离工艺,降低了设备成本。达到了103.5%的电流效率和2.48 kW h / kg的单位能耗。同时电压不高于24V。与普通EED工艺相比,该工艺具有更高的传质性能和更低的能耗。 &复制; 2005 Elsevier B.V.保留所有权利。

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