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首页> 外文期刊>Chemical Engineering and Processing >Separation and purification of isobutanol from dilute aqueous solutions by a hybrid hydrophobic/hydrophilic pervaporation process
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Separation and purification of isobutanol from dilute aqueous solutions by a hybrid hydrophobic/hydrophilic pervaporation process

机译:通过疏水/亲水混合蒸发工艺从稀水溶液中分离和纯化异丁醇

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摘要

In this study, a hybrid hydrophobic/hydrophilic pervaporation process was employed to separate and purify isobutanol from its dilute aqueous solutions. For this purpose, composite polydimethylsiloxane membranes were initially used for the recovery of isobutanol by hydrophobic pervaporation. Then the hydrophilic pervaporation with a composite polyvinyl alcohol membrane was utilized to separate water from the organic phase of the permeate stream of the hydrophobic pervaporation. The effect of feed flow rate on the performance of pervaporation was investigated. The resistance in series model was also applied to calculate the transport resistances through the composite membranes. It was observed that an enhancement in the feed flow rate led to higher permeation flux and selectivity of the more permeable component, while the flux of the less permeable component was almost constant. Also, the ratio of liquid boundary layer resistance to membrane layer resistance decreased by an increase in the feed flow rate. The isobutanol with a purity of higher than 99 wt.% was produced by the hybrid hydrophobic/hydrophilic pervaporation technique from a 2 wt.% aqueous isobutanol solution.
机译:在这项研究中,采用疏水/亲水混合全蒸发工艺从稀水溶液中分离和纯化异丁醇。为此目的,复合聚二甲基硅氧烷膜最初用于通过疏水性全蒸发回收异丁醇。然后利用复合聚乙烯醇膜的亲水性渗透蒸发将水与疏水性渗透蒸发的渗透物流的有机相分离。研究了进料流速对全蒸发性能的影响。串联电阻模型也用于计算通过复合膜的输送电阻。观察到进料流速的增加导致较高通透性和较高渗透性组分的选择性,而较低渗透性组分的通量几乎恒定。另外,液体边界层电阻与膜层电阻之比随着进料流量的增加而降低。通过杂化疏水/亲水渗透蒸发技术由2重量%的异丁醇水溶液生产纯度高于99重量%的异丁醇。

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