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Membrane fouling and selectivity mechanisms in effluent ultrafiltration coupled with flocculation

机译:废水超滤与絮凝相结合的膜污染及选择性机理

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Membrane filtration is adequate for producing disinfected clear water suitable for various kinds of applications. However, fouling of membranes is the main limitation. The scope of the present study is to examine the effect of iron coagulation of primary wastewater effluent on membrane filtration, in parallel to fouling characterization of the iron itself. The fouling of ultrafiltration membranes by colloidal iron hydroxideoxide has been studied by measuring the pore streaming potential of PIES UF membrane. pH 5.5 (charge neutralization zone) provided better removal and lower fouling intensity than pH 7.8 (sweep coagulation zone), but the internal clogging at acidic pH was higher. Fouling of the membrane as measured by flux reduction was usually accompanied by a positive change in zeta potential and iso-electric point (IEP) of the membrane. An initially large change in zeta potential (without charge reversal) was seen even after relatively small amounts of iron solution were filtered through the membrane. A control experiment showed this is not due to iron adsorption equilibrium, but should probably be attributed to fouling. Change in zeta potential, can be used as an indicator for commencement of fouling even for small flux reductions. UF membrane critical flux after iron filtration can be evaluated more accurately by zeta potential than pressure drop or change in iron concentration.
机译:膜过滤足以产生适合各种应用的消毒清水。然而,膜的结垢是主要的限制。本研究的范围是检验铁主要凝结废水的铁凝结对膜过滤的影响,同时对铁本身的结垢特性进行研究。通过测量PIES UF膜的孔流动潜力,研究了胶态氢氧化铁对超滤膜的污染。 pH 5.5(电荷中和区)比pH 7.8(清扫凝结区)提供了更好的去除效果和更低的结垢强度,但在酸性pH下内部堵塞更高。通过通量减少来测量膜的结垢通常伴随着膜的ζ电势和等电点(IEP)的正变化。即使相对少量的铁溶液通过膜过滤后,zeta电位也发生了最初的大变化(没有电荷反转)。对照实验表明,这不是由于铁吸附平衡引起的,而是可能应归因于结垢。 zeta电位的变化可以用作开始结垢的指标,即使通量减少很小。通过zeta电位比压降或铁浓度变化可以更准确地评估铁过滤后的UF膜临界通量。

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