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Exerting ultrasound to control the membrane fouling in filtration of anaerobic activated sludge - mechanism and membrane damage

机译:在厌氧活性污泥的过滤中施加超声波来控制膜的污染-机理和膜的损坏。

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摘要

In this study, ultrasound was applied to control membrane fouling development online in an anaerobic membrane bioreactor (AMBR). Experimental results showed that membrane fouling could be controlled effectively by ultrasound although membrane damage may occur under some operational conditions. Based upon the observation on the damaged membrane surface via SEM, two mechanisms causing membrane damage by exerting ultrasound are inferred as micro particle collide on the membrane surface and chemical interaction between membrane materials and hydroxyl radicals produced by acoustic cavitations. Not only membrane damage but also membrane fouling control and membrane fouling cleaning were resulted from these mechanisms. Properly selecting ultrasonic intensity and working time, and keeping a certain thickness of cake layer on membrane surface could be effective ways to protect membrane against damage.
机译:在这项研究中,将超声波应用于厌氧膜生物反应器(AMBR)中在线控制膜污染的发展。实验结果表明,尽管在某些操作条件下可能会发生膜损坏,但是超声可以有效地控制膜污染。基于通过SEM对受损的膜表面的观察,推断出通过施加超声波导致膜损坏的两种机理,这是由于微粒在膜表面上碰撞以及膜材料与声空化所产生的羟基之间的化学相互作用。这些机制不仅导致膜损坏,而且导致膜污染控制和膜污染清洁。适当选择超声波强度和工作时间,并在膜表面保持一定厚度的滤饼层是保护膜不受损伤的有效方法。

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