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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Effect of Cations in Ionic Liquids on the Extraction Characteristics of 1,3-Propanediol by Ionic Liquid-based Aqueous Biphasic Systems
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Effect of Cations in Ionic Liquids on the Extraction Characteristics of 1,3-Propanediol by Ionic Liquid-based Aqueous Biphasic Systems

机译:离子液体中阳离子对离子液体基双相水相体系萃取1,3-丙二醇的影响

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摘要

Separation of 1,3-propanediol (1,3-PDO) from fermentation broths becomes a bottleneck in biological production due to its high hydrophilicity and low concentration. Aqueous biphasic systems (ABS) composed of piperidinium-based ionic liquids (ILs) and K2HPO4 could be an alternative to extract 1,3-propanediol from fermentation broths. In this study, the ability of piperidinium-based ILs to form ABS with aqueous K2HPO4 solution was investigated. Binodal curves and tie-lines and tie-line length were evaluated by three parameter equation and mass balances for each components in top and bottom phases. The piperidinium-based ILs was effective on promoting ABS formation in the presence of K2HPO4 and the forming ability of ABS increased with alkyl chain length of cations in ILs. The volume ratio to top and bottom phase decreased with K2HPO4 concentration and alkyl chain length of cations in ILs. However, above 20 wt % of K2HPO4, the partitioning of water into top phase is dominant, resulting in low phase volume ratio. The extraction efficiency of 1,3-PDO reached up to 95%. It is expected that piperidinium IL-based ABS is a prospective extraction media for the separation and concentration of 1,3-PDO.
机译:从发酵液中分离1,3-丙二醇(1,3-PDO)由于其高亲水性和低浓度而成为生物生产中的瓶颈。由哌啶基离子液体(ILs)和K2HPO4组成的双相水相系统(ABS)可能是从发酵液中提取1,3-丙二醇的替代方法。在这项研究中,研究了基于哌啶鎓的ILs与K2HPO4水溶液形成ABS的能力。通过三个参数方程和顶部和底部相中每个成分的质量平衡,评估了双曲线曲线和联系线和联系线长度。在K2HPO4存在下,基于哌啶的ILs可以有效促进ABS的形成,并且ILs中阳离子的烷基长度会增加ABS的形成能力。 IL中阳离子的K2HPO4浓度和烷基烷基链长度与上相和下相的体积比降低。然而,高于20wt%的K 2 HPO 4,水分配到顶层中占主导,导致相体积比低。 1,3-PDO的提取效率高达95%。预期基于哌啶鎓IL的ABS是分离和浓缩1,3-PDO的潜在提取介质。

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