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Extraction of butanol from ABE solution by MFI zeolite membranes

机译:MFI沸石膜从ABE溶液中提取丁醇

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Pervaporation is considered as a promising technique for biobutanol extraction from fermentation solution. In this work, hydrophobic MFI zeolite membranes were adopted to enrich butanol from low-concentration aqueous solution. The membranes were prepared by secondary growth method on Al-free hollow fibers. The membrane performance was evaluated by pervaporation separation of ABE solution and 5 wt% binary aqueous solutions containing ethanol, acetone, butanol. The effect of operation temperature (from 40 degrees C to 80 degrees C) on flux, separation factor as well as the membrane stabilities was investigated. Increasing temperature could improve the permeation of organics, but influence the stability of MFI zeolite membrane. Compared with organic solvent such as acetone, butanol and ethanol, the stability of MFI zeolite membrane is easily influenced by water, especially at high temperature. Water tends to attack the silicon defects in MFI zeolite membrane, leading to the decrease of crystallinity and the degradation of separation performance. A low operation temperature is favorable to keep the stability of zeolite membrane and the coupling of membrane separation and fermentation process. At 40 degrees C, the MFI zeolite membrane showed long-term stability for selective removal of butanol from ABE solution with the total flux of 0.12 kg.m(-2).h(-1) and the separation factor of 14 for 120 h. Our results indicated that the integration of pervaporation using MFI zeolite membrane with an ABE fermentation could be a promising process to product bio-butanol efficiently.
机译:渗透蒸发被认为是对发酵溶液的生物灭菌溶液提取的有希望的技术。在这项工作中,采用疏水性MFI沸石膜来富浓度水溶液富含丁醇。通过在无酰基中空纤维上通过二次生长方法制备膜。通过ABE溶液的渗透分离和含有乙醇,丙酮,丁醇的5wt%二元水溶液的渗透分离来评价膜性能。研究了操作温度(40℃至80℃)的助焊剂,分离因子以及膜稳定性的影响。越来越多的温度可以改善有机物的渗透,但影响MFI沸石膜的稳定性。与丙酮,丁醇和乙醇如丙酮,丁醇和乙醇等有机溶剂相比,MFI沸石膜的稳定性容易受水的影响,特别是在高温下。水往往会攻击MFI沸石膜中的硅缺陷,导致结晶度降低和分离性能的降解。低操作温度有利于保持沸石膜的稳定性和膜分离和发酵过程的偶联。在40℃下,MFI沸石膜显示出从ABE溶液中选择性除去丁醇的长期稳定性,总通量为0.12kg.m(-2).h(-1),分离因子为120小时。我们的研究结果表明,使用MFI沸石膜与ABE发酵的渗透蒸发的整合可能是高效产品生物丁醇的有希望的过程。

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