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Hollow fibre membrane contactor as a gas-liquid model contactor

机译:中空纤维膜接触器作为气液模型接触器

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摘要

Microporous hollow fiber gas–liquid membrane contactors have a fixed and well-defined gas–liquid interfacial area. The liquid flow through the hollow fiber is laminar, thus the liquid side hydrodynamics are well known. This allows the accurate calculation of the fiber side physical mass transfer coefficient from first principles. Moreover, in the case of gas–liquid membrane contactor, the gas–liquid exposure time can be varied easily and independently without disturbing the gas–liquid interfacial area. These features of the hollow fiber membrane contactor make it very suitable as a gas–liquid model contactor and offer numerous advantages over the conventional model contactors. The applicability and the limitations of this novel model contactor for the determination of physico-chemical properties of non-reactive and reactive gas–liquid systems are investigated in the present work. Absorption of CO2 into water and into aqueous NaOH solutions are chosen as model systems to determine the physico-chemical properties for non-reactive and reactive conditions, respectively. The experimental findings for these systems show that a hollow fiber membrane contactor can be used successfully as a model contactor for the determination of various gas–liquid physico-chemical properties. Moreover, since the membrane contactor facilitates indirect contact between the two phases, the application of hollow fiber model contactor can possibly be extended to liquid–liquid systems and/or heterogeneous catalyzed gas–liquid systems.
机译:中空微孔中空气液膜接触器具有固定且明确的气液界面面积。通过中空纤维的液体是层流的,因此液体侧流体动力学是众所周知的。这允许根据第一原理精确地计算纤维侧物理传质系数。此外,在气液膜接触器的情况下,气液暴露时间可以轻松,独立地变化,而不会干扰气液界面面积。中空纤维膜接触器的这些特性使其非常适合用作气液模型接触器,并且比常规模型接触器具有众多优势。在本工作中,研究了这种新型模型接触器在确定非反应性和反应性气液系统的物理化学性质方面的适用性和局限性。选择将CO2吸收到水和NaOH水溶液中作为模型系统,分别确定非反应性和反应性条件的物理化学性质。这些系统的实验结果表明,中空纤维膜接触器可以成功地用作确定各种气液物理化学性质的模型接触器。此外,由于膜接触器可促进两相之间的间接接触,因此中空纤维模型接触器的应用可能会扩展到液-液系统和/或非均相催化气-液系统。

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