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Ultrasonic irradiation control of silica fouling during membrane distillation process

机译:膜蒸馏过程中二氧化硅污染的超声辐射控制

摘要

Ultrasonic irradiation was introduced into membrane distillation process and the influence of ultrasonic irradiation on silica fouling control was investigated. A gradual decline of permeate flux during the concentration process of silica solution was observed due to the formation and deposition of colloidal polysilicic acid on the membrane surface. The PTFE hollow fiber membrane could maintain its mechanical properties and initial pore size distribution in the presence of ultrasonic irradiation. Ultrasonic wave brought significant mechanical and thermal effects, and generated powerful shock wave and microstreaming with high speed. The microstreaming, shock wave and acoustic vortex streaming stimulated the liquid-membrane interface continuously, therefore the membrane surface could be effectively kept clean and the permeate flux was hardly affected by the increasing of concentration factor. Due to the charge neutralization and compression of double charged layer induced by calcium ions, the silica colloid stability was eliminated and the colloids aggregated. A large amount of silica scaling was deposited on the membrane surface even at the beginning of concentration process. With ultrasonic irradiation, the permeate flux maintained stable and was enhanced by about 43%; the ultrasonic irradiation could effectively control silica fouling during membrane distillation. (C) 2016 Elsevier B.V. All rights reserved.
机译:将超声辐射引入到膜蒸馏过程中,研究了超声辐射对二氧化硅结垢控制的影响。由于胶体聚硅酸在膜表面的形成和沉积,在二氧化硅溶液浓缩过程中观察到渗透通量逐渐下降。在超声辐射的存在下,PTFE中空纤维膜可以保持其机械性能和初始孔径分布。超声波带来了显着的机械和热效应,并产生了强大的冲击波和高速微流。微流,冲击波和声涡流不断地刺激液-膜界面,因此可以有效地保持膜表面清洁,并且浓缩因子的增加几乎不会影响渗透通量。由于钙离子引起的电荷中和和双电荷层的压缩,二氧化硅胶体的稳定性被消除,胶体聚集。即使在浓缩过程开始时,大量的氧化硅垢仍沉积在膜表面。用超声波辐照,渗透通量保持稳定并提高了约43%。超声辐射可以有效地控制膜蒸馏过程中二氧化硅的结垢。 (C)2016 Elsevier B.V.保留所有权利。

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