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Enhanced membrane bioreactor process without chemical cleaning

机译:无需化学清洁即可增强膜生物反应器工艺

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In membrane bioreactors (MBR) for wastewater treatment, the separation of activated sludge and treated water takes place by membrane filtration. Due to the small footprint and superior effluent quality, the number of membrane bioreactors used in wastewater treatment is rapidly increasing. A major challenge in this process is the fouling of the membranes which results in permeability decrease and the demand of chemical cleaning procedures. With the objective of a chemical-free process, the removal of the fouling layer by continuous physical abrasion was investigated. Therefore, particles (granules) were added to the activated sludge in order to realise a continuous abrasion of the fouling layer. During operation for more than 8 months, the membranes showed no decrease in permeability. Fluxes up to 40 L/(m~2 h) were achieved. An online turbidity measurement was installed for the effluent control and showed no change during this test period. For comparison, a reference (standard MBR process without granules) was operated which demonstrated permeability loss at lower fluxes and required chemical cleaning. Altogether with this process an operation at higher fluxes and no use of cleaning chemicals will increase the cost efficiency of the MBR-process.
机译:在用于废水处理的膜生物反应器(MBR)中,活性污泥和处理后的水通过膜过滤进行分离。由于占地面积小和出水水质优异,用于废水处理的膜生物反应器的数量正在迅速增加。在该过程中的主要挑战是膜的结垢,这导致渗透性降低和需要化学清洁程序。为了实现无化学工艺,研究了通过连续物理磨蚀去除污垢层的方法。因此,将颗粒(颗粒)添加到活性污泥中,以实现污垢层的连续磨损。在运行超过8个月的过程中,膜的渗透率没有降低。通量达到40 L /(m〜2 h)。安装了在线浊度测量用于废水控制,并且在此测试期间未显示任何变化。为了进行比较,操作了一个参考(没有颗粒的标准MBR工艺),该工艺在较低的通量下显示出渗透率损失,需要化学清洗。总而言之,在该工艺中以更高的通量进行操作并且不使用清洁化学品将提高MBR工艺的成本效率。

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