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Approaches to membrane fouling control in anaerobic membrane bioreactors

机译:厌氧膜生物反应器中膜污染的控制方法

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Various fouling control methods were investigated for polymeric and ceramic microfiltration membranes in the anaerobic membrane bioreactors where inorganic precipitates and/or fine colloids have been recently known as the most significant foulants: (i) Substantial improvement of flux was achieved by backfeeding of acidic wastewater through the membrane module. The backfeeding mode formed an acidic environment around the membrane pores and thus suppressed struvite formation. (ii) Struvite precipitation was also mitigated when an additional combined dialysis/zeolite unit was attached to the bioreactor. With this combined unit the flux improvement for the ceramic membrane, where struvite had a severer fouling effect, was achieved more significantly than that for the polymeric membrane. (iii) To control the deposition of organics and fine colloids onto the polymeric membrane, powdered activated carbon (PAC) was added into the bioreactor, which gave rise to the reduction of specific cake resistances of biosolids through the sorption and/or coagulation of dissolved and colloidal matter. (iv) The hydrophilic modification of polypropylene (PP) membranes by graft polymerization reduced membrane fouling. Its effectiveness was most substantial at 70% of the degree of grafting, indicating that there was an optimal degree of grafting. This is possibly due to the steric hindrance of grafted polymer chains and the increase in the hydrophilicity of the grafted PP membrane. [References: 9]
机译:研究了厌氧膜生物反应器中聚合物和陶瓷微滤膜的各种污垢控制方法,其中近来已知无机沉淀物和/或细胶体是最重要的污垢物:(i)通过将酸性废水回馈到酸性废水中,可显着提高通量膜组件。反向进料模式在膜孔周围形成酸性环境,因此抑制了鸟粪石的形成。 (ii)当在生物反应器上连接一个额外的渗析/沸石单元时,鸟粪石的沉淀也得到缓解。通过该组合单元,对鸟粪石具有更严重结垢作用的陶瓷膜的通量改善比对聚合物膜的通量改善显着。 (iii)为了控制有机物和细胶体在聚合物膜上的沉积,将粉末状活性炭(PAC)添加到生物反应器中,这通过溶解和/或凝结溶解物降低了生物固体的比饼抗性。和胶体物质。 (iv)通过接枝聚合对聚丙烯(PP)膜进行亲水改性,减少了膜的结垢。在接枝度的70%时,其效果最为显着,表明存在最佳接枝度。这可能是由于接枝的聚合物链的空间位阻以及接枝的PP膜的亲水性增加所致。 [参考:9]

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