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High molecular sieve loading mixed matrix membranes for gas separations.

机译:高分子筛负载混合基质膜,用于气体分离。

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摘要

Traditional gas separation technologies are thermally-driven and can have adverse environmental and economic impacts. Gas separation membrane processes are not thermally-driven and have low capital and operational costs which make them attractive alternatives to traditional technologies. Polymers are easily processed into large, defect-free membrane modules which have made polymeric membranes the industrial standard; however, polymers show separation efficiency-productivity trade-offs and are often not thermally or chemically robust. Molecular sieves, such as zeolites, have gas separation properties that exceed polymeric materials and are more thermally and chemically robust. Unfortunately, formation of large, defect-free molecular sieve membranes is not economically feasible. Mixed matrix membranes (MMMs) combine the ease of processing polymeric materials with the superior transport properties of molecular sieves by dispersing molecular sieve particles in polymer matrices to enhance the performance of the polymers.;MMMs with high molecular sieve loadings were made using polyvinyl acetate (PVAc) and various molecular sieves. Successful formation of these MMMs required substantial modifications to low loading MMM formation techniques. The gas separation properties of these MMMs show significant improvements over PVAc properties, especially for high pressure mixed carbon dioxide-methane feeds that are of great industrial relevance.
机译:传统的气体分离技术是热驱动的,会对环境和经济产生不利影响。气体分离膜工艺不是热驱动的,并且具有较低的投资和运营成本,这使其成为传统技术的有吸引力的替代方案。聚合物易于加工成大型,无缺陷的膜组件,这使聚合物膜成为工业标准;但是,聚合物显示出分离效率与生产率之间的权衡,并且通常不具有热稳定性或化学稳定性。分子筛(例如沸石)具有的气体分离特性超过了聚合物材料,并且具有更强的热稳定性和化学稳定性。不幸的是,形成大的,无缺陷的分子筛膜在经济上是不可行的。混合基质膜(MMM)通过将分子筛颗粒分散在聚合物基质中来增强聚合物的性能,从而将聚合物材料的易加工性与分子筛的优异运输性能相结合。;具有高分子量筛分负载的MMM使用聚乙酸乙烯酯( PVAc)和各种分子筛。这些MMM的成功形成需要对低负载MMM形成技术进行重大修改。这些MMM的气体分离性能显示出比PVAc性能显着改善,尤其是对于工业上具有重要意义的高压混合二氧化碳-甲烷进料。

著录项

  • 作者

    Adams, Ryan Thomas.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Chemical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 193 p.
  • 总页数 193
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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