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Gas solubility and diffusion in room temperature ionic liquids with an emphasis on gas separations.

机译:气体在室温离子液体中的溶解度和扩散,着重于气体分离。

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Room temperature ionic liquids can be useful for several different applications because they are thermally stable, have an extremely small vapor pressure, and are liquid over a large temperature range. There has been a substantial increase in research that involves RTILs over the last 10 years. The bulk of the research involves using RTILs as an environmentally friendly reaction medium. There has also been an increasing amount of research in using RTILs for gas separations. Whether using RTILs as either a reaction medium or in gas separations, it is important to measure the physical properties of the ionic liquids (i.e. gas solubility, gas diffusion, viscosity, density, etc.) and to know what properties or chemical structures of the RTILs affect gas solubility and diffusion.; This thesis discusses a new method for measuring gas diffusion coefficients in RTILs using a semi-infinite volume approach. This thesis also discusses how regular solution theory can be used to model gas solubility and gas selectivity for gas pairs involving CO2. This model is used to find the best imidazolium-based RTIL for absorbing the largest amount of a gas per volume of RTIL for bulk fluid absorption. The model is also applied to membranes to show the feasibility of making RTIL based membranes for CO2/N 2 and CO2/CH4 separations.
机译:室温离子液体可用于多种不同的应用,因为它们具有热稳定性,极小的蒸气压并且在较大的温度范围内呈液体。在过去的10年中,涉及RTIL的研究有了实质性的增长。大部分研究涉及使用RTIL作为环境友好的反应介质。使用RTIL进行气体分离的研究也越来越多。无论将RTIL用作反应介质还是用于气体分离,测量离子液体的物理性质(即气体溶解度,气体扩散,粘度,密度等),并了解离子液体的性质或化学结构都很重要。 RTIL影响气体溶解度和扩散。本文讨论了一种使用半无限体积法测量RTIL中气体扩散系数的新方法。本文还讨论了如何使用规则解理论对涉及CO2的气体对的气体溶解度和气体选择性进行建模。该模型用于找到最佳的基于咪唑的RTIL,以每体积RTIL吸收最大量的气体来吸收大量流体。该模型还应用于膜,以显示制造基于RTIL的膜用于CO2 / N 2和CO2 / CH4分离的可行性。

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