首页> 外文期刊>Journal of Materials Science >EVOH in situ fibrillation and its effect of strengthening, toughening and hydrophilic modification on PVDF hollow fiber microfiltration membrane via TIPS process
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EVOH in situ fibrillation and its effect of strengthening, toughening and hydrophilic modification on PVDF hollow fiber microfiltration membrane via TIPS process

机译:EVOH原位纤维化及其对PVDF中空纤维微滤膜的强化,增韧和亲水改性的影响

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摘要

In order to enhance the strength and overcome the poor antifouling capacity of poly(vinylidene fluoride) (PVDF) membrane used in water treatment, herein, poly(ethylene-co-vinyl alcohol) (EVOH) was selected and the PVDF/EVOH blend hollow fiber microfiltration membrane was prepared via the thermally induced phase separation (TIPS) technique. The morphology for the pristine and blend membrane was compared, and the distribution of EVOH on outer surface and within matrix was explored. The fibrous-shaped EVOH enhanced the breaking strength of the membrane markedly (up to 13.63MPa) due to the in situ fibrillation; especially, when the blend membrane was immersed into water, the internal plasticization of water molecular enhanced the toughness of the membrane and the elongation at break increased up to 86.39% compared with 27.63% for the corresponding dry membrane and 36.62% for the pristine membrane, respectively. The addition of EVOH introduced hydroxyl group into the bulk and thus endowed the membrane with a better hydrophilicity (the contact angle is as low as 43 degrees) and higher pure water flux (up to 449.11Lm(-2)h(-1)) compared with pristine PVDF membrane. Moreover, the blend membrane showed a better rejection of carbonic particle (nearly 100%) and higher flux recovery rate (up to 87.30%). The present investigation offers an effective and simple pattern to regulate microstructure and enhance mechanical strength, flux and hydrophilicity of the polymeric microfiltration membrane via the TIPS process for water treatment.
机译:为了增强强度并克服水处理中使用的聚(偏二氟乙烯)(PVDF)膜的不良防污容量,本文选择了聚(乙烯 - 共乙烯醇)(EVOH),PVDF / EVOH混合物中空通过热诱导的相分离(提示)技术制备纤维微滤膜。比较了原始和混合膜的形态,探讨了外表面和基质内的EVOH的分布。纤维状EVOH由于原位纤维化而增强了膜的断裂强度(高达13.63MPa);特别是,当将混合物膜浸入水中时,水分子的内部塑化增强了膜的韧性,并且断裂伸长率高于86.39%,而相应的干膜为27.63%,而原始膜为36.62%,分别。将EVOH引入羟基的羟基并因此赋予膜具有更好的亲水性(接触角低至43度),更高的纯水通量(高达449.11lm(-2)H(-1))与原始PVDF膜相比。此外,混合膜显示出更好地抑制碳酸颗粒(近100%)和更高的助焊剂恢复速率(高达87.30%)。本研究提供了一种有效简单的模式,可以通过提示水处理来调节微观结构,增强聚合物微滤膜的机械强度,通量和亲水性。

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  • 来源
    《Journal of Materials Science》 |2019年第7期|共17页
  • 作者单位

    Tianjin Polytech Univ Sch Mat Sci &

    Engn Natl Ctr Int Joint Res Separat Membranes State Key Lab Separat Membranes &

    Membrane Proc Tianjin 300387 Peoples R China;

    Tianjin Polytech Univ Sch Mat Sci &

    Engn Natl Ctr Int Joint Res Separat Membranes State Key Lab Separat Membranes &

    Membrane Proc Tianjin 300387 Peoples R China;

    Tianjin Polytech Univ Sch Mat Sci &

    Engn Natl Ctr Int Joint Res Separat Membranes State Key Lab Separat Membranes &

    Membrane Proc Tianjin 300387 Peoples R China;

    Tianjin Polytech Univ Sch Mat Sci &

    Engn Natl Ctr Int Joint Res Separat Membranes State Key Lab Separat Membranes &

    Membrane Proc Tianjin 300387 Peoples R China;

    Tianjin Polytech Univ Sch Comp Sci &

    Software Engn Tianjin 300387 Peoples R China;

    Tianjin Polytech Univ Sch Mat Sci &

    Engn Natl Ctr Int Joint Res Separat Membranes State Key Lab Separat Membranes &

    Membrane Proc Tianjin 300387 Peoples R China;

    Tianjin Polytech Univ Sch Mat Sci &

    Engn Natl Ctr Int Joint Res Separat Membranes State Key Lab Separat Membranes &

    Membrane Proc Tianjin 300387 Peoples R China;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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