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Fluid segment configuration for improving product yield and selectivity of catalytic surface reactions in microreactors

机译:流体段配置可提高微反应器中的产物收率和催化表面反应的选择性

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Ordered laminar flow and mixing driven mainly by molecular diffusion in microreactors enables operation using fluid segments. This paper discusses the effects of configuration of fluid segments including reactants at the reactor inlet for catalytic surface reactions in a microreactor. Irreversible and reversible parallel and series-parallel reaction systems were investigated. The rate-controlling step of these reaction systems is diffusion in the channel or diffusion in the catalyst layer. Under some diffusion-controlled conditions, appropriate fluid segment configuration gives higher selectivity of the desired product than reactors where the reactants are mixed at the reactor inlet. Configurations in which reactants with different reaction orders in parallel reactions or consumed only in the reaction producing the desired product are placed on the catalyst surface are suitable to improve the selectivity of the desired product. The configuration to maximize the yield of the desired product depends on the reaction system and rate-controlling step. To obtain a given selectivity of the desired product, the required fluid segment size depends on the configuration. The results reported here indicate an advantage of fluid segment, which is a typical fluid operation in microreactors, for enhancing the yield and selectivity of desired products.
机译:主要由微反应器中的分子扩散驱动的有序层流和混合使得可以使用流体段进行操作。本文讨论了反应器入口处流体段(包括反应物)的构型对微反应器中催化表面反应的影响。研究了不可逆和可逆的并联和串并联反应系统。这些反应系统的速率控制步骤是在通道中扩散或在催化剂层中扩散。在某些受扩散控制的条件下,适当的流体段构型比所需的产物在反应器入口处混合反应物的反应器具有更高的选择性。将平行反应中具有不同反应顺序的反应物或仅在产生所需产物的反应中消耗的反应物置于催化剂表面的构型适合于改善所需产物的选择性。使所需产物的产率最大化的构型取决于反应系统和速率控制步骤。为了获得所需产物的给定选择性,所需的流体段尺寸取决于构型。此处报道的结果表明了流体段的优势,这是微反应器中的典型流体操作,可以提高所需产物的收率和选择性。

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