Liquid-Liquid Extraction of Itaconic Acid from the Aqueous Phase Using Natural and Chemical Solvents

Vipashavi Agnihotri, Anuj Kumar, Diwakar Z. Shende, K. Wasewar
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Abstract

Itaconic acid, also known as methylene succinic acid, is a colorless, crystalline substance that is found in nature. Due to its two functional carboxylic acid forms and - unsaturated bond, it can be used in a variety of sectors (plastics, super-absorbents, biopolymers, anti-scaling agents, etc.). Itaconic acid can be produced via thermally decarboxylating citric acid, catalysing the condensation of succinic acid derivatives with formaldehyde, decarboxylating aconitic acid, and fermentation utilizing Aspergillus terreus and other microbes. It is quite expensive and harmful to extract itaconic acid from the fermentation broth. In the present study, Iso-butanol, iso-octanol, groundnut, soybean, mustard, and rice bran oil were incorporated as solvents for separating itaconic acid from their solutions in distilled water. Liquid-liquid extraction experiments were conducted over the range of 0.08-0.533 mol.L-1 of itaconic acid. The results thus obtained were defined as the separation efficiency (E) and distribution coefficient (KD). Separation was observed at maximum efficiencies of 69.33%, 47.8%, 12.93%, 17.9%, 15.625% & 14.18% with iso-butanol, iso-octanol groundnut, soybean, mustard, and rice bran oil respectively. Since the solvents used in this study were natural and chemical, it can be helpful to make the process more eco-friendly and the efficiency of the process can be further increased with the help of reactive extractants.
天然溶剂和化学溶剂液液萃取衣康酸的研究
衣康酸,也被称为亚甲基琥珀酸,是一种在自然界中发现的无色结晶物质。由于其两种功能羧酸形式和-不饱和键,可用于各种领域(塑料、高吸水性、生物聚合物、防垢剂等)。衣康酸可以通过柠檬酸热脱羧、琥珀酸衍生物与甲醛催化缩合、乌头酸脱羧、利用地曲霉等微生物发酵等途径生产。从发酵液中提取衣康酸既昂贵又有害。本研究以异丁醇、异辛醇、花生、大豆、芥菜和米糠油为溶剂,在蒸馏水中分离衣康酸。对衣康酸在0.08 ~ 0.533 mol.L-1范围内进行液液萃取实验。将所得结果定义为分离效率(E)和分配系数(KD)。对异丁醇、异辛醇花生油、大豆油、芥菜油和米糠油的分离效率分别为69.33%、47.8%、12.93%、17.9%、15.625%和14.18%。由于本研究中使用的溶剂均为天然溶剂和化学溶剂,因此在活性萃取剂的帮助下,可以使工艺更加环保,并进一步提高工艺效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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