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Comparative study of MBR and activated sludge in the treatment of paper mill wastewater

机译:MBR与活性污泥处理造纸废水的比较研究。

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The study was based on a full scale activated sludge plant (AS) compared to a parallel operated pilot membrane bioreactor (MBR) with flat sheets membranes. Both systems received their influent from an anaerobic bioreactor treating paper mill wastewater. MBR produced an effluent of much better quality than AS in terms of suspended solids, containing 1 mg/L or less in 80% of the monitoring time, while the AS effluent contained 12 mg/L. This could save the necessity of further treatment by filtration in the case of MBR. Other effluent quality parameters, such as organic matter (COD and BOD), phosphorus and ammonia nitrogen, did not indicate substantial differences between AS and MBR. Calcium carbonate scaling and formation of a bacterial layer on the membrane caused severe flux reduction. The membrane blockage because of scaling and biofouling proved to be very serious, therefore, it required proper and more complicated maintenance than the AS system. This study leads to the conclusion that in the case of paper mill wastewater, after anaerobic biotreatment, if there is no need for excellent effluent quality in terms of suspended solids, the replacement of the AS by the MBR would not be strongly justified, mainly because of maintenance cost.
机译:该研究基于全活性污泥厂(AS)与带有平板膜的平行操作中试膜生物反应器(MBR)的比较。两种系统均从处理造纸厂废水的厌氧生物反应器接收进水。就悬浮固体而言,MBR产生的废水质量要比AS更好,在80%的监测时间内,MBR的含量为1 mg / L或更少,而AS废水的含量为12 mg / L。在MBR的情况下,这可以节省通过过滤进行进一步处理的必要性。其他废水质量参数,例如有机物(COD和BOD),磷和氨氮,并未表明AS和MBR之间存在实质性差异。碳酸钙结垢和膜上细菌层的形成导致流量的严重降低。事实证明,由于结垢和生物污垢造成的膜堵塞非常严重,因此,与AS系统相比,它需要适当且更复杂的维护。这项研究得出的结论是,对于造纸厂废水,在厌氧生物处理之后,如果不需要就悬浮固体而言具有优异的出水质量,则用MBR代替AS的理由不充分,主要是因为维护成本。

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