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首页> 外文期刊>Chemical engineering journal >Separation of 1,3-propanediol using supercritical CO2 microemulsion with non-ionic surfactant Ls-54: Experiment and simulation
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Separation of 1,3-propanediol using supercritical CO2 microemulsion with non-ionic surfactant Ls-54: Experiment and simulation

机译:超临界CO2微乳液与非离子表面活性剂Ls-54分离1,3-丙二醇:实验与模拟

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The phase behavior and micro-structure of the supercritical CO2 (scCO(2)) microemulsion system with nonionic dodecyl (poly(ethylene-methylethylene glycol)) ether Ls-54 as surfactant are investigated in this study. A synergistic experimental and simulation study highlights the separation of 1,3-propanediol (1,3-PDO) from dilute aqueous solution in fermentation broth using this scCO(2) microemulsion system. Phase behavior measurement and all-atom molecular dynamic simulation are carried out on the Ls-54/CO2/H2O ternary system and Ls-54/CO2/H2O/1,3-PDO quaternary system to study the solubilization property of 1,3-PDO. The results not only indicate the formation of the thermodynamic stable microemulsion system, but also demonstrate that 1,3-PDO can be selectively solubilized from dilute aqueous solution using the scCO(2) microemulsion system with Ls-54 as surfactant by easily controlling the operating pressure. Moreover, the simulation results reveal that the microemulsion formation depends on the interaction between the water cluster and head groups of surfactant. Therefore, a new formation mechanism of the scCO(2) microemulsion system with non-ionic surfactant is proposed. In addition, the size of microemulsion droplets in Ls-54/CO2/H2O/ethanol(EtOH) and Ls-54/CO2/H2O/1,3-PDO/EtOH system with ethanol as co-solvent are obtained using the method of small-angle X-ray scattering (SAXS) experiment, which also confirms the solubilization of 1,3-PDO in scCO(2) microemulsion system. This work might provide reference to the purification of polyols in fermentation broth and help to understand. the microstructure and solubilization property of polar compounds in scCO(2) microemulsion system. (C) 2015 Elsevier B.V. All rights reserved.
机译:本研究研究了以非离子十二烷基(聚(乙烯-甲基乙二醇))醚Ls-54为表面活性剂的超临界CO2(scCO(2))微乳液体系的相行为和微观结构。一项协同实验和模拟研究强调了使用此scCO(2)微乳系统从发酵液中的稀水溶液中分离1,3-丙二醇(1,3-PDO)。在Ls-54 / CO2 / H2O三元体系和Ls-54 / CO2 / H2O / 1,3-PDO四元体系上进行相行为测量和全原子分子动力学模拟,研究1,3-增溶性能PDO。结果不仅表明热力学稳定的微乳液体系的形成,而且还表明可以使用scCO(2)微乳液体系以Ls-54作为表面活性剂,通过轻松控制操作,从稀水溶液中选择性地溶解1,3-PDO。压力。此外,模拟结果表明,微乳液的形成取决于水团簇与表面活性剂头基之间的相互作用。因此,提出了具有非离子表面活性剂的scCO(2)微乳液体系的新形成机理。此外,采用以下方法获得Ls-54 / CO2 / H2O /乙醇(EtOH)和Ls-54 / CO2 / H2O / 1,3-PDO / EtOH系统中以乙醇为助溶剂的微乳液液滴尺寸。小角度X射线散射(SAXS)实验,也证实了scCO(2)微乳液系统中1,3-PDO的增溶作用。这项工作可能为发酵液中多元醇的纯化提供参考,并有助于理解。 scCO(2)微乳体系中极性化合物的微结构和增溶性能。 (C)2015 Elsevier B.V.保留所有权利。

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