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Flux enhancement during ultrafiltration of produced water using turbulence promoter

机译:使用湍流促进剂超滤采出水的通量

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Concentration polarization and membrane fouling remain one of the major hurdles for the implementation of ultrafiltration of produced water. Although many applications for ultrafiltration were already suggested, only few were implemented on an industrial scale. Among those techniques, turbulence promoter can be more simple and effective in overcoming membrane fouling and enhancing membrane flux. As for the result that turbulence promoter increase fluid velocity, wall shear rates and produce secondary flows or instabilities, the influence of turbulence promoter was investigated on permeate flux during produced water ultrafiltration and the potential application of this arrangement for an industrial development. Experimental investigations were performed on 100 KDa molecular weight cut-off PVDF single-channel tubular membrane module using four kinds of turbulence promoters. It is observed that the significant flux enhancement in the range of 83%-164% was achieved while the hydraulic dissipated power per unit volume of permeate decreased from 31%-42%, which indicated that the using of turbulence promoter is more efficient than operation without the turbulence promoter. The effects of transmembrane pressure and cross-flow velocity with and without turbulence promoter were studied as well. Among the four kinds of turbulence promoters, winding inserts with 20.0 mm pitch and 1.0 mm wire diameter showed better performances than the others did.
机译:浓差极化和膜污染仍然是实现产水超滤的主要障碍之一。尽管已经提出了超滤的许多应用,但是在工业规模上只有很少的应用。在这些技术中,湍流促进剂在克服膜污染和提高膜通量方面可以更简单有效。至于湍流促进剂增加流体速度,壁剪切速率并产生二次流动或不稳定性的结果,研究了湍流促进剂对产水超滤过程中渗透通量的影响以及该装置在工业发展中的潜在应用。使用四种湍流促进剂对100 KDa分子量截断的PVDF单通道管状膜组件进行了实验研究。可以看到,通量的显着提高达到了83%-164%的范围,而每单位体积渗透液的水力耗散功率却从31%-42%降低,这表明湍流促进器的使用比运行更有效。没有湍流促进剂。还研究了在有和没有湍流促进剂的情况下跨膜压力和错流速度的影响。在这四种湍流促进剂中,节距为20.0 mm,线径为1.0 mm的绕组插入件表现出比其他更好的性能。

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