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Determination of water loading of supported ionic liquids by microwave analysis - A contribution for operando monitoring of gas drying by adsorption

机译:微波分析测定负载离子液体载荷的测定 - 一种吸附气体干燥的贡献

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摘要

Ionic liquids (ILs) immobilized on solid porous supports are alternative materials for gas drying by fixed-bed adsorption: The IL l-ethyl-3-methylimidazolium methanesulfonate has a high capacity for sorption of water vapor, and losses of the IL via evaporation are negligible because of the extremely low vapor pressure. Hence, ILs can be durably immobilized by coating of porous supports. Ionic liquids have a high electrical conductivity compared to supports such as silica. This can be utilized to monitor the water loading of supported IL by microwaves. A fixed-bed adsorber was placed in a cylindrical microwave resonator, and the water loading and the corresponding electrical signals were measured by a humidity sensor and a network analyzer, respectively. The partial pressure of steam (carrier gas N_2) and the temperature were varied in a range relevant for gas drying (5-20 mbar; 40-90 °C). The results reveal that the microwave parameters, such as the resonance frequency shift, are suitable to determine accurately and operando the water loading of supported ionic liquids. Further analysis of the microwave parameters leads to the complex susceptibility, which in turn shows a linear dependence of the polarization effects on the electrical losses.
机译:固定在固体多孔载体上的离子液体(ILS)是通过固定床吸附的气体干燥的替代材料:IL L-乙基-3-甲基咪唑鎓甲磺酸盐具有高容量的水蒸气吸附,并且通过蒸发的IL损失是由于蒸气压极极低的可忽略不计。因此,ILS可以通过涂覆多孔载体涂覆而持久地固定。与诸如二氧化硅的载体相比,离子液体具有高导电性。这可用于通过微波监测支持的IL的水负荷。将固定床吸附器置于圆柱形微波谐振器中,并且分别通过湿度传感器和网络分析仪测量水负荷和相应的电信号。蒸汽(载气N_2)的分压和温度在与气体干燥的相关范围内(5-20​​毫巴; 40-90°C)。结果表明,微波参数,例如共振频率偏移,适用于准确地确定支持的离子液体的水负荷。对微波参数的进一步分析导致复杂的易感性,这反过来表示极化效应对电损耗的线性依赖性。

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  • 来源
    《Sensors and Actuators》 |2021年第5期|129646.1-129646.8|共8页
  • 作者单位

    Department of Chemical Engineering Center of Energy Technology (ZET) University of Bayreuth 95440 Bayreuth Germany Department of Functional Materials Center of Energy Technology (ZET) University of Bayreuth 95440 Bayreuth Germany;

    Department of Chemical Engineering Center of Energy Technology (ZET) University of Bayreuth 95440 Bayreuth Germany;

    Department of Functional Materials Center of Energy Technology (ZET) University of Bayreuth 95440 Bayreuth Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microwave resonator; Supported ionic liquid phase; Electrical susceptibility;

    机译:微波谐振器;支持的离子液相;电气易感性;

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