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Membrane Antifouling Methods and Alternatives: Ultrasound Approach

机译:膜防污方法和替代方法:超声方法

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Membranes are widely used in separation processes. Various industries use membranes as part of their production processes. However, one of the main problems in membrane separation processes is fouling. The fouling mechanism is briefly reviewed in this paper. Fouling can be controlled before it happens. Alternatively, membranes can be cleaned after fouling occurs. Several control methods such as feed pre-treatment, material selection and membrane surface modification can be applied. Cleaning methods can be categorized into several techniques: chemical, mechanical, hydrodynamic, electrical and ultrasonic cleaning methods. This paper focuses on the ultrasonic cleaning method, which is an additional force that aids filtration. The mechanism of the ultrasonic wave that reduces fouling by cavitation and acoustic streaming is reviewed. The advantages and disadvantages of ultrasound irradiation as a cleaning method are also discussed in this paper. The apparatus design and factors that influence the effectiveness of ultrasound treatments, including frequency, power intensity, feed properties, membrane properties, cross-flow velocity, temperature and pressure, are analysed. Recently, ultrasound irradiation combined with other techniques has gained increasing attention. It has been discovered that a combination of other cleaning methods with ultrasound irradiation led to the removal of the fouling layers from the membrane surface.
机译:膜广泛用于分离过程中。各个行业将膜用作其生产过程的一部分。然而,膜分离过程中的主要问题之一是结垢。本文简要回顾了结垢机理。结垢可以在发生之前得到控制。或者,可以在结垢发生后清洗膜。可以采用几种控制方法,例如进料预处理,材料选择和膜表面改性。清洁方法可分为几种技术:化学,机械,流体动力,电和超声清洁方法。本文重点介绍超声清洗方法,这是有助于过滤的附加作用力。综述了超声波减少空化和声流污染的机理。本文还讨论了超声波辐照作为一种清洁方法的优缺点。分析了设备设计和影响超声治疗效果的因素,包括频率,功率强度,进料特性,膜特性,错流速度,温度和压力。近来,与其他技术相结合的超声辐射已经引起越来越多的关注。已经发现,其他清洁方法与超声辐射的组合导致从膜表面去除污垢层。

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