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Separation Properties of Wastewater Containing O/W Emulsion Using Ceramic Microfiltration/Ultrafiltration (MF/UF) Membranes

机译:陶瓷微滤/超滤(MF / UF)膜分离含O / W乳化液的废水的性能

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Washing systems using water soluble detergent are used in electrical and mechanical industries and the wastewater containing O/W emulsion are discharged from these systems. Membrane filtration has large potential for the efficient separation of O/W emulsion for reuses of treated water and detergent. The separation properties of O/W emulsions by cross-flow microfiltration and ultrafiltration were studied with ceramic MF and UF membranes. The effects of pore size; applied pressure; cross-flow velocity; and detergent concentration on rejection of O/W emulsion and flux were systematically studied. At the condition achieving complete separation of O/W emulsion the pressure-independent flux was observed and this flux behavior was explained by gel-polarization model. The O/W emulsion tended to permeate through the membrane at the conditions of larger pore size; higher emulsion concentration; and higher pressure. The O/W emulsion could permeate the membrane pore structure by destruction or deformation. These results imply the stability of O/W emulsion in the gel-layer formed on membrane surface play an important role in the separation properties. The O/W emulsion was concentrated by batch cross-flow concentration filtration and the flux decline during the concentration filtration was explained by the gel- polarization model.
机译:在电气和机械工业中使用使用水溶性洗涤剂的洗涤系统,并从这些系统中排放出含O / W乳液的废水。膜过滤具有巨大潜力,可以有效地分离O / W乳液,以再利用经处理的水和洗涤剂。用陶瓷MF和UF膜研究了错流微滤和超滤对O / W乳液的分离性能。孔径的影响;施加压力错流速度系统研究了去污剂浓度对O / W乳化液拒斥率和助熔剂的影响。在完全分离O / W乳状液的条件下,观察到与压力无关的通量,并通过凝胶极化模型解释了该通量行为。在较大孔径的条件下,O / W乳液倾向于渗透通过膜。乳液浓度更高;和更高的压力。 O / W乳液可通过破坏或变形渗透到膜孔结构中。这些结果暗示O / W乳液在膜表面上形成的凝胶层中的稳定性在分离性能中起重要作用。通过分批错流浓缩过滤浓缩O / W乳液,并通过凝胶极化模型解释浓缩过滤期间的通量下降。

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