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首页> 外文期刊>Separation and Purification Technology >Buckminsterfullerene (C_(60)) nanoparticle fouling of microfiltration membranes operated in a cross-flow configuration
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Buckminsterfullerene (C_(60)) nanoparticle fouling of microfiltration membranes operated in a cross-flow configuration

机译:在错流配置下运行的微滤膜的Buckminsterfullerene(C_(60))纳米颗粒结垢

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摘要

Manufactured nanomaterials, like buckminsterfullerene (C_(60)), present unique challenges with regards to their impacts on the performance of microfiltration (MF) membranes. Of particular concern is the ability of existing physical and chemical cleaning processes to remove nanoparticle deposits on the surface and from the interior of MF membranes. The objective of this research was therefore to characterize C_(60) nanoparticle fouling of hollow fiber MF membranes and assess the ability of hydraulic backwashing and different cleaning solutions to remove nanoparticle deposits from fouled MF membranes. Two nano-particles, a manufactured C_(60) and a carboxylated nanosphere, were studied and found to similarly affect membrane performance. Nanoparticle fouling resulted in a more substantial impact on membrane performance relative to that resulting from a colloidal foulant. This was attributed to the ability of the nano-particles to form comparatively more dense surface deposits and to pass through the MF membrane resulting in standard pore blocking and cake layer formation on the filtrate side of the membrane. Using nanoparticle free backwash water was found to remove these cake structures on the filtrate side of the membrane and to displace the internal nanoparticle deposits. The C_(60) cake structures were poorly removed using conventional cleaning solutions, with the exception of hydrogen peroxide; however, removal with the hydrogen peroxide was incomplete and resulted more rapid fouling after normal operation was resumed.
机译:制造的纳米材料,如巴克敏斯特富勒烯(C_(60)),就其对微滤(MF)膜性能的影响而言,提出了独特的挑战。特别需要关注的是,现有的物理和化学清洁工艺能否去除MF膜表面和内部的纳米颗粒沉积物。因此,本研究的目的是表征中空纤维MF膜的C_(60)纳米颗粒结垢,并评估水力反冲洗和不同清洗溶液从结垢的MF膜中去除纳米颗粒沉积物的能力。研究了两个纳米粒子,一个制成的C_(60)和一个羧基化的纳米球,发现它们同样会影响膜的性能。相对于胶体污垢物,纳米颗粒污物对膜性能的影响更大。这归因于纳米颗粒形成相对更致密的表面沉积物并通过MF膜的能力,从而导致标准的孔阻塞和在膜的滤液侧上形成滤饼层。发现使用无纳米颗粒的反洗水去除了膜滤液侧的这些滤饼结构并置换了内部纳米颗粒的沉积物。除过氧化氢外,使用常规清洁溶液很难去除C_(60)滤饼结构;但是,过氧化氢的去除不完全,并且在恢复正常操作后导致更快的结垢。

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