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Hydrocarbons separation with polymer membranes. I. Butadiene–isobutene separation with nitrile rubber membranes

机译:用聚合物膜分离碳氢化合物。I. 丁二烯-异丁烯用丁腈橡胶膜分离

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AbstractThe permeation characteristics and the selectivity of four nitrile rubber films with respect to 1,3‐butadiene and isobutene were studied as a function of experimental conditions and the nature of membrane material. A specific research apparatus was developed, allowing the determination of both permeation rate and selectivity, at a temperature varying between 0° and 30°C and under a pressure of from 1 to 3 bars. The inverse proportion of permeation rate to membrane thickness was verified for a thickness of from 12 to 500 microns. An increase in temperature promotes liquid permeation and is detrimental to gas permeation, the latter being facilitated by an increase in pressure. The introduction of an inert gas pressure on the liquid did not bring about an increase in the liquid permeation rate. The permeation rate decreases as a result of an increase in the proportion of acrylonitrile in the rubber, which also affects selectivity; the latter reaches a maximum value when said proportion is about 23. The effect of the composition of the feed mixture was also studied and curves were determined relating, simultaneously, selectivity and permeation rate to the 1,3‐butadiene content. Selectivity is maximal with mixtures having a very high 1,3‐butadiene content. The solubilities of 1,3‐butadiene and of isobutene in the four types of nitrile rubber were measured at 0°C and at 20°C (68°F). Selectivity can be interpreted in terms of the solubilities of the two
机译:摘要研究了4种丁腈橡胶膜对1,3-丁二烯和异丁烯的渗透特性和选择性随实验条件和膜材料性质的变化。开发了一种特定的研究设备,可以在 0° 至 30°C 的温度和 1 至 3 bar 的压力下测定渗透速率和选择性。验证了12至500微米厚度的渗透速率与膜厚度的反比。温度升高会促进液体渗透,不利于气体渗透,后者通过压力的增加得到促进。在液体上引入惰性气体压力不会增加液体渗透速率。由于橡胶中丙烯腈比例的增加,渗透速率降低,这也影响了选择性;当所述比例约为23%时,后者达到最大值。还研究了进料混合物成分的影响,并确定了与1,3-丁二烯含量相关的选择性和渗透速率曲线。对于具有非常高的1,3-丁二烯含量的混合物,选择性最大。在0°C和20°C(68°F)下测量了1,3-丁二烯和异丁烯在四种丁腈橡胶中的溶解度。选择性可以根据两者的溶解度来解释

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