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Behavior of micro-particles in monolith ceramic membrane filtration with pre-coagulation

机译:微粒在带预凝结的整体式陶瓷膜过滤中的行为

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This paper is intended to clarify the characteristics unique to monolith ceramic membranes with pre-coagulation by referring to the behavior of micro-particles. Flow analysis and experiments have proved that monolith ceramic membranes show a unique flow pattern in the channels within the element, causing extremely rapid flocculation in the channel during dead-end filtration. It was assumed that charge-neutralized micro-particles concentrated near the membrane surface grow in size due to flocculation, and as a result, coarse micro-particles were taken up by the shearing force to flow out. As the dead end points of flow in all the channels are located near the end of the channels with higher filterability, most of the flocculated coarse particles are formed to a columnar cake intensively at the dead end point. Therefore cake layer forming on the membrane other than around the dead end point is alleviated. This behavior of particle flocculation and cake formation at the dead end point within the channels are unique characteristics of monolith ceramic membranes. This is why all monolith ceramic membrane water purification systems operating in Japan do not have pretreatment equipment for flocculation and sedimentation.
机译:本文旨在通过提及微粒的行为来阐明预凝结整体式陶瓷膜的独特特性。流动分析和实验证明,整体式陶瓷膜在滤芯内的通道中显示出独特的流动模式,从而在死端过滤过程中在通道中引起极快的絮凝。假定由于絮凝作用而集中在膜表面附近的电荷中和的微粒的尺寸增大,结果,粗的微粒被剪切力吸收而流出。由于所有通道中流动的死点位于具有较高过滤性的通道的末端附近,因此大部分絮凝的粗颗粒在死点处集中地形成柱状滤饼。因此,减轻了除死点附近以外在膜上形成的滤饼层。通道内死点处颗粒絮凝和结块的这种行为是整体陶瓷膜的独特特征。这就是为什么在日本运行的所有整体式陶瓷膜水净化系统都没有用于絮凝和沉淀的预处理设备的原因。

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