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Polysulfone hollow fiber membrane system for CO2/CH4 separation: Influence membrane module configuration on the separation performance

机译:用于CO2 / CH4分离的聚砜中空纤维膜系统:影响膜组件结构对分离性能的影响

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摘要

Separation of CO2/CH4 using polysulfone hollow fiber membrane system using cascade and series arrangements was studied. The membranes used were fabricated using 33%wt of polysulfone polymer. Gas permeation properties (pressure-normalized flux and selectivity) were evaluated using pure carbon dioxide and methane as test gases. Results showed that single-stage gas permeation system in cascade arrangement with two-stage of gas permeation system produced the highest CO2/CH4 selectivity especially tested at low feed pressure range. Effect of stage cut on feed pressure showed an increasing trend with increasing of CO2 and CH4 feed pressure in both configurations. This is due to the increase of the permeation driving force, which causes the passage of larger amounts of more permeable gas through the membrane. On the other hand, effect of stage cut on pressure-normalized flux exhibited a constant trend plots for both gases and configurations. This study showed that, cascade configuration exhibited a smaller stage cut values than series configuration. Hence, cascade configuration produced higher purity of CO2 in the permeate stream. The results of this work served as a mean in determining the most suitable module configuration to be used for gas separation processes.
机译:研究了采用级联和串联布置的聚砜中空纤维膜系统分离CO2 / CH4的方法。所用的膜是用33%重量的聚砜聚合物制成的。使用纯二氧化碳和甲烷作为测试气体,评估了气体渗透性能(压力归一化通量和选择性)。结果表明,级联布置的单级气体渗透系统与两级气体渗透系统串联产生了最高的CO2 / CH4选择性,特别是在低进料压力范围内进行了测试。在这两种配置中,阶段切割对进料压力的影响均显示出随着CO2和CH4进料压力的增加而增加的趋势。这是由于渗透驱动力的增加,这导致大量更多的可渗透性气体通过膜。另一方面,阶段切割对压力归一化通量的影响对于气体和构造都显示出恒定的趋势图。这项研究表明,级联配置显示出比串联配置更小的舞台切割值。因此,级联构型在渗透物流中产生了更高纯度的二氧化碳。这项工作的结果是确定最适合用于气体分离过程的模块配置的手段。

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  • 作者

    Yaacob N.; Ismail A. F.;

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  • 年度 2004
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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