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Acetic acid Separation as a Function of Temperature Using Commercial Pervaporation Membrane

机译:使用市售全蒸发膜分离乙酸与温度的关系

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摘要

Acetic acid was separated from a dilute mixture using a commercial polyvinyl alcohol (PVA) membrane. Intrinsic separation characteristics of the membrane were studied as a function of temperature. The degree of membrane swelling decreased marginally with increase in feed temperature. At 25 degrees C the maximum degree of swelling was found out to be 46.3%, which reduced to 39.5% at 65 degrees C. Although the pervaporation flux increased with increasing temperature of the liquid feed mixture, the separation factor decreased. From the temperature dependence of diffusion and permeation values, the Arrhenius apparent activation parameters for water permeation were estimated. Diffusion and partition coefficient for water and acid were found to increase with temperature, but the diffusion coefficient of water was substantially higher than that of acetic acid at a constant feed concentration. The membrane used in the present study could tolerate highly concentrated corrosive acetic acid, thus may be useful for dehydration of other organics.
机译:使用市售聚乙烯醇(PVA)膜从稀混合物中分离出乙酸。研究了膜的固有分离特性随温度的变化。膜膨胀程度随进料温度的升高而略有下降。在25摄氏度时,发现最大溶胀度为46.3%,在65摄氏度时降至39.5%。尽管随着液体进料混合物温度的升高,全蒸发通量增加,但分离系数却降低了。根据扩散和渗透值的温度依赖性,估算了水的阿累尼乌斯表观活化参数。发现水和酸的扩散和分配系数随温度而增加,但在恒定进料浓度下,水的扩散系数明显高于乙酸。本研究中使用的膜可以耐受高浓度的腐蚀性乙酸,因此可用于其他有机物的脱水。

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