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Effect of hydrophobic montmorillonite (MMT) on PVDF and PEI hollow fiber membranes in gas-liquid contacting process: a comparative study

机译:疏水性蒙脱石(MMT)对气液接触过程PVDF和PEI中空纤维膜的影响:对比研究

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摘要

Porous polyvinylidenefluoride (PVDF) and polyetherimide (PEI) hollow fiber mixed matrix membranes (MMMs) were spun under the same spinning conditions for CO2 absorption experiment via membrane contactor. The effects of montmorillonite (MMT) loading on thermodynamic and kinetic aspects of phase inversion as well as the membrane properties were investigated using various analytical characterization methods. MMT embedment into PVDF lowered the thermodynamic stability while making the solvent/nonsolvent exchange in the phase inversion faster, which resulted in the formation of thinner skin layer, thicker finger-like layer and thinner sponge-like layer. As a result, the N-2 gas permeance increased considerably. As for the PEI, the high hydrophobicity of the incorporated clay particles slowed down the rate of solvent/nonsolvent exchange and subsequently thicker skin layer as well as more compact sublayer structure with narrower finger-like pores was formed. Hence, a considerable reduction in the rate of gas permeation for the PEI MMMs was observed. In addition, both PVDF and PEI membranes experienced significant increase in the contact angle and LEPw by the presence of hydrophobic MMT in the system. Physical CO2 absorption with distilled water was performed using the hollow fiber gas-liquid membrane contactor. The absorption flux was enhanced by the MMT embedment for both PVDF and PEI but the flux enhancement of PEI was more pronounced than the PVDF. However, the long-term absorption stability test over 15 days revealed that the flux of the MMT incorporated PEI hollow fiber deteriorates considerably with time due to the intrinsically high hydrophilicity of PEI material.
机译:在通过膜接触器的同一纺丝条件下,多孔聚偏二氟化硅(PVDF)和聚醚酰亚胺(PEI)中空纤维混合基质膜(MMMS)在同一纺丝条件下纺丝。使用各种分析表征方法研究了蒙脱石(MMT)加载对相逆相和动力学方面的影响以及膜特性。 MMT嵌入PVDF降低了热力学稳定性,同时使溶剂/非溶剂交换更快,这导致形成较薄的表层,较厚的指状层和较薄的海绵状层。结果,N-2天然气渗透性显着增加。至于PEI,掺入的粘土颗粒的高疏水性减慢了溶剂/非溶剂交换的速率,随后形成了更厚的皮肤层以及形成更窄的指状孔的致密层叠结构。因此,观察到对PEI MMMS的气体渗透速率相当大的降低。此外,通过系统中存在疏水性MMT,PVDF和PEI膜两者都经历了接触角和LEPW的显着增加。使用中空纤维气液膜接触器进行物理CO2与蒸馏水吸收。对于PVDF和PEI的MMT嵌入而增强了吸收通量,但PEI的助焊剂增强比PVDF更加明显。然而,15天的长期吸收稳定性试验显示,由于PEI材料的本质上高亲水性,MMT掺入的PEI中空纤维的通量随着时间的推移而劣化。

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  • 来源
    《RSC Advances》 |2015年第126期|共11页
  • 作者单位

    Univ Teknol Malaysia Adv Membrane Technol Res Ctr AMTEC Skudai 81310 Johor Malaysia;

    Univ Teknol Malaysia Adv Membrane Technol Res Ctr AMTEC Skudai 81310 Johor Malaysia;

    Babol Noshirvani Univ Technol Fac Chem Engn Adv Membrane &

    Biotechnol Res Ctr Babol Sar Iran;

    Persian Gulf Univ Fac Engn Chem Engn Dept Bushehr Iran;

    Univ Teknol Malaysia Adv Membrane Technol Res Ctr AMTEC Skudai 81310 Johor Malaysia;

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

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