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Microftitration of Oily Waste Water: A Study of Flux Decline and Feed Types

机译:油性废水的微妙算法:助焊剂下降和饲料类型的研究

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In recent years, membrane separation techniques gain an increasing interest to be applied in many industrial separation processes, such as the separation of produced water in petroleum industry and the treatment of used oil and used cooking oil. Used oil and used cooking oil consist of suspended solids in addition to emulsion. Both ultrafiltration and microfiltration have been used to separate oil from water. The challenges of oil-in-water emulsion separation include the possibility of big oil drops deforming through the slot or pore of membrane thus reduce the oil rejection. In addition, concentration polarisation and fouling phenomena are considered as negative attributes for membrane performances. This research applied flat sheet microfiltration membranes to treat used oil and used cooking oil. The performances of membranes in terms of flux reductions were evaluated and analysed using filtration model. Experimental results showed the decline of permeate flux with time indicating the formation of polarisation layer on the surface of the membrane. In addition, complete blocking and deep bed filtration explained the flux behavior of used oil and used cooking oil filtration, respectively.
机译:近年来,膜分离技术在许多工业分离过程中应用了越来越兴趣的利益,例如在石油工业中分离生产的水和使用过的油和用过的食用油。除乳液外,用过的油和使用的食用油由悬浮固体组成。超滤和微滤都已用于将油与水分离。水包油乳液分离的挑战包括通过膜的槽或孔变形的大油滴的可能性,从而减少排油。此外,浓度偏振和结垢现象被认为是膜性能的负属性。本研究施加了平板微滤膜,以处理二手油并用过的食用油。使用过滤模型评估和分析膜在助焊剂减少方面的性能。实验结果表明,渗透磁通量下降,时间表明膜表面上的偏振层的形成。此外,完全堵塞和深床过滤分别解释了二手油的助焊剂行为,并分别用于食用油过滤。

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