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Separation of hydrocarbon gas mixtures using phenolic resin-based carbon membranes

机译:使用酚醛树脂基碳膜分离烃类气体混合物

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摘要

Carbon membranes are prepared by the carbonisation of a thin film of phenolic resin deposited on the inner face of an alumina tube. Air oxidative treatments at temperatures in the range of 75-350 deg C, prior to carbonisation (pre-oxidation) or after carbonisation (post-oxidation) were tested in order to improve the separation characteristics of carbon membranes when used with hydrocarbon mixtures such as olefin/paraffin and n-butane/iso-butane. The range of selectivities obtained for the systems studied are: ethylene/ethane, 2-11; propylene/propane, 10-50; n-butane/iso-butane, 10-40. A trade-off between selectivity and permeability or permeance was observed for all systems. The composition of the hydrocarbon mixture affects the selectivity of separation and permeance. However, feed pressure has hardly any influence on separation. The modification of permeance with temperature reveals that separation takes place according to an activated mechanism. The separation of hydrocarbon molecules by the membrane seems to occur by means of a combination of molecular sieving and adsorption mechanisms. The storage of carbon membranes under a hydrocarbon environment (i.e.propylene or n-butane) does not cause any significant change in membrane performance.
机译:通过将沉积在氧化铝管内表面的酚醛树脂薄膜碳化来制备碳膜。在碳化之前(预氧化)或碳化之后(后氧化),在75-350℃的温度范围内进行了空气氧化处理测试,目的是改善与碳氢化合物混合物(如碳氢化合物)一起使用时碳膜的分离特性。烯烃/石蜡和正丁烷/异丁烷。对于所研究的系统获得的选择性范围是:乙烯/乙烷,2-11;丙烯/丙烷10-50;正丁烷/异丁烷,10-40。对于所有系统,都观察到了选择性与渗透率或渗透率之间的权衡。烃混合物的组成影响分离和渗透的选择性。但是,进料压力对分离几乎没有任何影响。渗透率随温度的变化表明分离是根据激活的机理进行的。膜上烃分子的分离似乎是通过分子筛和吸附机制的结合而发生的。碳膜在碳氢化合物环境(即丙烯或正丁烷)下的储存不会引起膜性能的任何显着变化。

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