化学
醋酸
三元运算
吸附
丁酸
水溶液
动力学
乳酸
等温过程
离子交换
离子交换树脂
色谱法
无机化学
离子
有机化学
热力学
物理
量子力学
生物
计算机科学
细菌
遗传学
程序设计语言
作者
Usman Hamid,Cheng‐Ju Hsieh,Haoran Wu,Lauren Valentino,Meltem Urgun‐Demirtas,Chau‐Chyun Chen
标识
DOI:10.1021/acs.jced.4c00380
摘要
This work is part of an effort to develop thermophysical property data and models supporting adsorptive process development for organic acid separation from a dilute aqueous solution of fermentation broth. It presents systematic experimental measurements for aqueous-phase adsorption equilibrium, kinetics, and column breakthrough for three binary-acid aqueous mixtures (acetic acid + lactic acid, butyric acid + lactic acid, and acetic acid + butyric acid) and one ternary-acid aqueous mixture (acetic acid + butyric acid + lactic acid) on Amberlite IRN-78 ion-exchange resin. The equilibrium measurements covered broad ranges of the initial acid concentration (100–400 mmol/L), initial pH (∼3–7), and temperature (25–55 °C). The equilibrium data for the binary-acid and ternary-acid aqueous mixtures indicate selective adsorption of lactic acid at initial pH levels of ∼3 and 4, while acetic acid and butyric acid are selectively adsorbed at initial pH levels of 5, 6, and 7. The subsequent kinetics and column breakthrough experiments were performed at 200 mmol/L with equimolar ratios, an initial pH of 6, and 25 °C. The measurements provide essential data sets for rigorous thermodynamic modeling and process simulation of adsorptive separation processes for organic acid separation from fermentation broth.
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