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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Preparation and characterization of PVDF-montmorillonite mixed matrix hollow fiber membrane for gas-liquid contacting process
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Preparation and characterization of PVDF-montmorillonite mixed matrix hollow fiber membrane for gas-liquid contacting process

机译:气液接触过程中PVDF-蒙脱土混合基质中空纤维膜的制备与表征

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Porous PVDF-hydrophobic montmorillonite (MMT) mixed matrix membranes (MMMs) were fabricated via wet spinning method and used in membrane gas absorption process. The effects of hydrophobic MMT nano-clay loadings (1, 3 and 5 wt% of polymer) on the structure and performance were investigated. The fabricated membranes showed both finger-like and sponge-like structure with an increase in the length of finger-like pores in their cross-section, which resulted in higher permeability and lower mass transfer resistance compared to plain PVDF membrane. Also, significant improvements for surface hydrophobicity, critical entry pressure of water and porosity with the addition of filler were observed. The CO2 absorption test was conducted through the gas-liquid membrane contactor and demonstrated a significant improvement in the CO2 flux with MMT loading and the membrane with 5 wt% MMT presented highest performance. For example, at the liquid water velocity of 0.5 m s(-1), CO2 flux of the MMM with 5 wt% MMT of 9.73 x 10(-4) mol m(-2) s(-1) was approximately 56% higher than the PVDF membrane without nano-filler. In conclusion, MMMs with improved absorption properties can be a promising candidate for CO2 absorption and separation processes through membrane contactors. (C) 2014 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:采用湿法纺丝法制备了多孔PVDF-疏水蒙脱土(MMT)混合基质膜(MMMs),并用于膜气体吸收过程。研究了疏水性MMT纳米粘土负载量(聚合物的1、3和5 wt%)对结构和性能的影响。制成的膜显示出手指状和海绵状结构,并且横截面中的手指状孔的长度增加,与普通PVDF膜相比,这导致了更高的渗透性和更低的传质阻力。另外,观察到通过添加填料,表面疏水性,水的临界进入压力和孔隙率有了显着改善。通过气液膜接触器进行了CO2吸收测试,结果表明,采用MMT加载后,CO2通量有了显着提高,具有5 wt%MMT的膜表现出最高的性能。例如,在0.5 ms(-1)的液态水速度下,MMT的5 wt%为9.73 x 10(-4)mol m(-2)s(-1)的MMM的CO2通量大约高出56%比没有纳米填料的PVDF膜要好。总之,具有改善的吸收特性的MMM可以成为通过膜接触器吸收和分离CO2的有前途的候选物。 (C)2014化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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