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Reactive extraction of carboxylic acids from apolar hydrocarbons using aqueous solutions of sodium hydrogen carbonate with back-recovery using carbon dioxide under pressure

机译:使用碳酸氢钠水溶液从非极性烃中反应萃取羧酸,并在一定压力下使用二氧化碳进行反回收

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摘要

A combination of using an aqueous solution of sodium hydrogen carbonate for forward-extraction of carboxylic acids from a dilute apolar organic solvent,and carbon dioxide under pressure for its back-recovery,is studied.Used in combination,these two steps might provide a technique for the recovery of a carboxylic acid from an organic solution in which no formation of by-products (inorganic salts) occurs and only environmentally benign chemicals are used.Results show that the aqueous solution of sodium hydrogen carbonate provides distribution ratios for several aromatic and aliphatic acids as high as 200,whereas the solubility of the organic solvent in the aqueous solution remains unchanged relative to pure water.Two options for the back-recovery of the extracted acids based on the use of CO_2 under pressure are evaluated: by new phase (liquid or solid) formation or by back-extraction.Equilibrium stage recoveries of around 50% are obtained in both cases.That recovery can be further improved by addition of a salting-out agent in the aqueous phase.In that case the recoveries of up to 90% are achieved,where the recovery of 50% is already reached at a CO_2 pressure of 5 bar.Therefore,both forward-extraction using an aqueous solution of sodium hydrogen carbonate and back-recovery by carbon dioxide under pressure are feasible options for the recovery of carboxylic acids from organic solvents.
机译:研究了使用碳酸氢钠水溶液从稀的非极性有机溶剂中正向萃取羧酸和将二氧化碳加压回收的组合方法。将这两个步骤结合使用,这两个步骤可能提供一种技术从有机溶液中回收羧酸,其中不形成副产物(无机盐),仅使用对环境无害的化学物质。结果表明,碳酸氢钠水溶液为几种芳香族和脂肪族提供了分配比酸高达200,而有机溶剂在水溶液中的溶解度相对于纯净水则保持不变。基于压力下使用CO_2对萃取酸进行反回收的两种方法被评估:通过新相(液体或固体)形成或通过反萃取。在两种情况下均达到约50%的平衡阶段回收率,这种回收率可能进一步提高在水相中加入盐析剂即可获得的回收率高达90%,而在5 bar的CO_2压力下已达到50%的回收率。使用碳酸氢钠水溶液和在压力下通过二氧化碳进行反回收是从有机溶剂中回收羧酸的可行选择。

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