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首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Pervaporation Purification of Ethylene Glycol Using the Highly Permeable PIM-1 Membrane
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Pervaporation Purification of Ethylene Glycol Using the Highly Permeable PIM-1 Membrane

机译:使用高渗透性PIM-1膜对乙二醇进行全蒸发纯化

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摘要

Ethylene glycol (EG) is an essential chemical and forms mixtures with water or methanol in the production processes. Its purification is imperative in the production of pure EG from its water/methanol mixtures. Conventionally, distillation is employed in this separation process at the expense of massive energy consumption. Here water/methanol-EG mixtures are separated by the highly permeable PIM-1 membrane via pervaporation to produce the pure EG product. PIM-1 is one of most representative polymers of intrinsic microporosity (PIMs) that are attractive membrane materials. The overall separation performances for water/methanol-EG mixtures are investigated systematically. The membrane shows good separation performances as well as high purifying efficiency. Typically, the membrane has a high flux of 10.40 kg mu m m(-2) h(-1) and separation factor of 24.2 in the pervaporation of methanol (18.50 wt %)-EG mixtures at 30 degrees C. In addition, effects of feed composition and temperature are investigated respectively on the separation performances. The flux and separation factor increases simultaneously with the water/methanol content in feed, whereas the separation factor decreases with increasing feed temperature for the methanol-EG mixture and the opposite for the water-EG mixture. The PIM-1 membrane shows a great potential in the EG purification industries.
机译:乙二醇(EG)是必不可少的化学品,在生产过程中会与水或甲醇形成混合物。从其水/甲醇混合物生产纯EG时,必须对其进行纯化。通常,在该分离过程中使用蒸馏以消耗大量能量为代价。在这里,水/甲醇-EG混合物通过高渗透性被高渗透性PIM-1膜分离,从而产生纯EG产品。 PIM-1是内在微孔(PIM)最具代表性的聚合物之一,是具有吸引力的膜材料。系统地研究了水/甲醇-EG混合物的整体分离性能。该膜表现出良好的分离性能以及高净化效率。通常,该膜在30°C的甲醇(18.50 wt%)-EG混合物的全蒸发中具有10.40 kg mu mm(-2)h(-1)的高通量和24.2的分离系数。对进料组成和温度分别进行了分离性能研究。通量和分离因子随进料中水/甲醇含量的增加而增加,而分离因子随甲醇-EG混合物进料温度的升高而降低,而与水-EG混合物相反。 PIM-1膜在EG纯化行业中显示出巨大潜力。

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