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首页> 外文期刊>Separation and Purification Technology >Gradual PVP leaching from PVDF/PVP blend membranes and its effects on membrane fouling in membrane bioreactors
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Gradual PVP leaching from PVDF/PVP blend membranes and its effects on membrane fouling in membrane bioreactors

机译:PVDF / PVP混合物膜的逐步PVP浸出及其对膜生物反应器膜污染的影响

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摘要

Improving the hydrodynamics on the membrane surface in a magnetically induced membrane vibration system (MMV) has been proven efficient for membrane fouling control in membrane bioreactors. This advantage can be further extended by using an optimized membrane. This was realized in this study by preparing porous polyvinylidene fluoride membranes via polyvinylpyrrolidone (PVP) blending and later by leaching out the PVP from the membrane matrix via post-treatment using NaOCl. Results show that increasing the PVP content in the casting solution increases membrane fouling resistance. Slowly leaching of PVP after several periodic NaOCl cleanings increased membrane permeance. No advantage of NaOCl post-treatment was observed. The long-term filtration confirmed the superiority of the highly porous membrane that complemented the advantages offered by the MMV system. This suggests that despite the small quantity of the remaining PVP, its leaching offered a substantial gain to improve membrane filterability.
机译:在膜生物反应器中,已经有效地改善了磁诱导膜振动系统(MMV)中的膜表面上的流体动力学。通过使用优化的膜可以进一步延长该优点。在本研究中通过聚乙烯吡咯烷酮(PVP)混合制备多孔聚偏二氟乙烯膜来实现这一研究中实现了通过使用NAOCL的后处理通过从膜基质中浸出PVP。结果表明,铸件中的PVP含量增加增加膜污垢抗性。几种周期性NaoCl清洁后,PVP的慢慢浸出增加了膜渗透。没有观察到NaoCl后处理的优点。长期过滤证实了高度多孔膜的优越性,其补充了MMV系统提供的优点。这表明尽管剩余的PVP量少量,但其浸出提供了提高膜过滤性的大量增益。

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