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Membranes for olefin/paraffin separations.

机译:用于烯烃/石蜡分离的膜。

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摘要

The goal of this project was to develop a mixed matrix membrane with enhanced properties for propylene/propane separations. To start with the project, one of the high performance 6FDA based polyimides was identified as the polymer matrix for the rest of the project. The chosen polymer (6FDA-6FpDA) was successfully synthesized in the laboratory.;During the synthesis process the key objectives for high molecular weight and low polydispersity index polymer were identified. High molecular weight 6FDA-6FpDA was achieved via laboratory synthesis and was tested successfully.;After successful synthesis of the high performance polymer, pure polymer dense films were tested for transport properties. One problem identified with 6FDA-6FpDA polymer films for propylene/propane separations was plasticization. A major objective of this research was to develop a method for plasticization suppression. A carefully controlled annealing procedure with high temperature permeation experiments was used in this research to suppress plasticization in a mixed gas environment. To the best of our knowledge, this is for the first time plasticization suppression was achieved with pure polymeric membrane material for propylene/propane separations with pure and mixed gases. The observed mixed gas experimental selectivity was lower than the pure gas selectivity which was explained by the combination effect of dual mode and bulk flow effect.;The last objective of this project was to successfully incorporate molecular sieve materials to form a mixed matrix membrane hybrid material with enhanced transport properties First, an ideal molecular sieve for propylene/propane separation was identified and characterized. AlPO-14 was chosen for this research following its success with propylene/propane pressure swing adsorption. Mixed matrix membranes were successfully produced and tested for enhanced transport properties. Both pure and mixed gas results showed promising results with enhanced propylene permeability and propylene/propane selectivity. The experimental results were modeled with the Cussler and Maxwell models. A modified Cussler model was presented in this work. This is the first time an enhancement in the transport properties with mixed matrix membrane for propylene/propane separations has been observed. This fundamental dense film work holds a bright future for the scale up of propylene/propane separations.
机译:该项目的目的是开发一种具有增强的丙烯/丙烷分离性能的混合基质膜。从该项目开始,已将基于高性能6FDA的聚酰亚胺之一确定为该项目其余部分的聚合物基质。所选的聚合物(6FDA-6FpDA)已在实验室成功合成。在合成过程中,确定了高分子量和低多分散指数聚合物的关键目标。通过实验室合成获得了高分子量6FDA-6FpDA,并成功进行了测试。成功合成高性能聚合物后,测试了纯聚合物致密膜的传输性能。用6FDA-6FpDA聚合物薄膜进行丙烯/丙烷分离时发现的一个问题是增塑。这项研究的主要目的是开发一种抑制塑化的方法。在这项研究中,使用经过仔细控制的退火程序以及高温渗透实验来抑制混合气体环境中的塑化。据我们所知,这是首次使用纯聚合物膜材料通过纯净气体和混合气体分离丙烯/丙烷,从而实现了塑化抑制。观察到的混合气体实验选择性低于纯气体的选择性,这是由双重模式和整体流动效应的组合作用所解释的。该项目的最后一个目的是成功地将分子筛材料并入以形成混合基质膜杂化材料具有增强的传输性能首先,确定并表征了用于丙烯/丙烷分离的理想分子筛。 AlPO-14在成功利用丙烯/丙烷变压吸附技术之后被选择用于这项研究。混合基质膜已成功生产,并测试了增强的运输性能。纯气体和混合气体的结果均显示出令人鼓舞的结果,其丙烯渗透性和丙烯/丙烷选择性均得到提高。用Cussler和Maxwell模型对实验结果进行建模。在这项工作中提出了一种改进的卡斯勒模型。这是首次观察到混合基质膜用于丙烯/丙烷分离的传输性能得到增强。这种基本的致密膜工作对于扩大丙烯/丙烷分离的规模有着广阔的前景。

著录项

  • 作者

    Das, Mita.;

  • 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 2009
  • 页码 206 p.
  • 总页数 206
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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