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首页> 外文期刊>Journal of Membrane Science >Mixed gas hydrogen sulfide permeability and separation using supported polyphosphazene membranes
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Mixed gas hydrogen sulfide permeability and separation using supported polyphosphazene membranes

机译:混合气体硫化氢的渗透性和使用支持的聚磷腈膜的分离

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摘要

Three phosphazene polymers were characterized for permeability using a suite of pure gases, including H2S where high permeabilities were measured with respect to the other gases in the study. Mixed gas selectivities were determined and compared to the ideal gas selectivities for the H2S/CH4, CO2/CH4, and Ar/CH4 gas pairs. The three phosphazenes represent a set of membrane materials differing by their polarities. Description of the polarity of each was performed using Hansen solubility parameters derived from group contributions for each chemical structure. A good correlation was observed between the polar Hansen parameter (delta(p)) and the gas permeabilities of both CO2 and H2S. Furthermore, permeant gas critical temperatures were also found to correlate with permeability, with the exception of He and H-2. A comparison of the mixed gas permeabilities with the corresponding pure gas data revealed good agreement in the data. Most surprisingly, permeabilities and separation factors were observed to increase with decreasing glass transition temperature (T-g) for the H2S/CH4 and CO2/CH4 gas pairs reaching a maximum of P-H2s = 1103 x 10(-10) cm(3) (1103 Barters) with and alpha(H2S/CH4) = 78.8 as derived from a mixed gas experiment. (c) 2005 Elsevier B.V. All rights reserved.
机译:使用一套纯气体(包括硫化氢)对三种磷腈聚合物的渗透性进行了表征,其中纯H2S相对于研究中的其他气体测量出高渗透率。确定混合气体的选择性,并将其与H2S / CH4,CO2 / CH4和Ar / CH4气体对的理想气体选择性进行比较。三种磷腈代表一组膜材料,它们的极性不同。使用从每个化学结构的基团贡献中得出的汉森溶解度参数对每种极性进行描述。在极性汉森参数(delta(p))与CO2和H2S的气体渗透率之间观察到良好的相关性。此外,还发现渗透气体的临界温度与渗透率相关,但He和H-2除外。将混合气体渗透率与相应的纯气体数据进行比较后,发现数据具有很好的一致性。最令人惊讶的是,对于H2S / CH4和CO2 / CH4气体对,其渗透率和分离因子随玻璃化转变温度(Tg)的降低而增加,达到最大P-H2s = 1103 x 10(-10)cm(3)( (1103易货)和α(H2S / CH4)= 78.8,从混合气体实验中得出。 (c)2005 Elsevier B.V.保留所有权利。

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