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首页> 外文期刊>ACS applied materials & interfaces >Catalytic Membrane Microreactors with an Ultrathin Freestanding Membrane for Nitrobenzene Hydrogenation
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Catalytic Membrane Microreactors with an Ultrathin Freestanding Membrane for Nitrobenzene Hydrogenation

机译:具有超薄独立膜的催化膜微反应器,用于硝基苯氢化

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A catalytic membrane microreactor is a potential tool for the application in multiphase catalytic reactions. Currently, the installation of a permeable ultrathin membrane to separate the reactants with different phases and the grafting of a catalyst layer on the membrane in a microreactor remain challenging. In this work, a catalytic ultrathin membrane microreactor with an ultrathin freestanding supporting membrane was developed for nitrobenzene hydrogenation, which was formed by the interfacial polycondensation reaction with parallel laminar flow in a microchannel, followed by catalyst layer immobilization on one side of the ultrathin membrane surface using the layer-by-layer self-assembly technique and in situ reduction. The ultrathin freestanding membrane ensured a stable gas/liquid contact interface and good hydrogen permeability. The developed membrane microreactor could exhibit high catalytic performance under mild conditions, demonstrating its superior mass transport. In addition, the effects of the thickness of the ultrathin freestanding membrane, flow rates, and inlet nitrobenzene concentration were investigated to obtain the optimum operating conditions. The experimental results demonstrate that this newly developed membrane microreactor is a promising candidate for multiphase catalytic reactions.
机译:催化膜微反应器是用于在多相催化反应中施用的潜在工具。目前,安装可渗透的超薄膜以将具有不同阶段的反应物分离,并且微反应器中膜上的催化剂层的接枝保持挑战。在这项工作中,开发了一种具有超薄独立式支撑膜的催化超薄膜微反应器,用于硝基苯氢化,其通过与微通道中的平行层流的界面缩聚反应形成,然后在超薄膜表面的一侧上进行催化剂层固定化使用层逐层自组装技术和原位减少。超薄独立膜确保了稳定的气/液接触界面和良好的氢渗透性。开发的膜微反应器可以在温和条件下表现出高催化性能,证明其优异的质量转运。此外,研究了超薄自由型膜,流速和入口硝基苯浓度的厚度的影响,得到了最佳的操作条件。实验结果表明,这种新开发的膜微反应器是多相催化反应的有希望的候选者。

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