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Hydrophilic modification of poly(ether)sulfone membrane by atmospheric pressure argon jet plasma: pH dependence of ultrafiltration performance and cleaning efficiency

机译:大气压氩射流血浆聚(醚)砜膜的亲水改性:超滤性能的pH依赖性和清洁效率

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摘要

The studies focused on plasma surface modification of poly(ether)sulfone (PES) ultrafiltration (UF) membrane show its potent effect on antifouling propensity but there are few data on the pH dependence of superior surface character achieved. This study examined UF performance and cleaning efficiency of atmospheric pressure argon jet plasma (AP-AJP) modified PES membrane in whey concentration at various operation pH compared to the plain membrane (UP020). The highest initial permeate flux for the UP020 at pH of 6.4 increased the cake layer formation and the irreversible fouling resistance. The plasma action led to greater intrinsic membrane resistance causing low water permeability compared with the UP020. This effect reduced cake layer resistance despite the fact that the irreversible fouling was more severe at all operation pH. The increase in pH caused to decrease in contribution of fouling to total resistance. For the UP020, the shift in operation pH from acidic point to neutral reduced the recovery in hydraulic permeability after chemical cleaning. The plasma action induced greater cleaning efficiency, which is the most obvious at pH of 6.4. The overall results showed that the AP-AJP may have the potential to maintain profit-making UF process in whey concentration at broad range of pH.Practical Applications In the industrial point of view, cost friendly, and sustainable operation in valorization of whey can be achieved by fouling resistant membranes. Atmospheric pressure argon jet plasma provides extremely hydrophilic character to poly(ether)sulfone membrane. The plasma action decreases fouling resistance and especially cake layer formation. This effect broadens the operating pH of whey without any pre-adjustment and results in easy to clean membrane surfaces.
机译:专注于聚(乙醚)砜(PE)超滤(UF)膜的血浆表面改性的研究表明其对防污倾向的有效效果,但是难以实现优异表面特征的pH依赖性的数据。该研究检测了与普通膜(UP020)相比,在各种操作pH下以乳清浓度的大气压氩气射流(AP-AJP)改性PES膜的UF性能和清洁效率。 PH值为6.4的UP020的最高初始渗透通量增加了滤饼层形成和不可逆的污垢抗性。与UP020相比,等离子体作用导致导致耐水性低的内在膜抗性。尽管在所有操作pH下,不可逆污垢更严重,但这种效果减少了滤饼层电阻。 pH值的增加导致污垢贡献降低到完全抗性。对于UP020,在化学清洁后,从酸性点到中性的操作pH转变降低了化学清洗后液压渗透性的回收。等离子体作用诱导更大的清洁效率,这是最明显的pH值为6.4。总体结果表明,AP-AJP可能有可能以乳清浓度维持利润的UF过程,在工业角度的广泛的pH.Practical应用中,友好友好和可持续的乳清的可持续运行通过污垢抗性膜来实现。大气压氩气相流等离子体为聚(乙醚)砜膜提供极其亲水性的特性。等离子体作用降低了污垢抗性,尤其是滤饼层形成。这种效果在没有任何预调节的情况下扩大乳清的操作pH,并导致易于清洁膜表面。

著录项

  • 来源
    《Journal of food process engineering》 |2021年第5期|e13677.1-e13677.11|共11页
  • 作者

    Damar Irem; Gulec Haci Ali;

  • 作者单位

    Trakya Univ Engn Fac Dept Food Engn Edirne Turkey;

    Trakya Univ Engn Fac Dept Food Engn Edirne Turkey;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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