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Comparison between two MBR pilot plants treating synthetic shipboard slops: the effect of salinity increase on biological performance, biomass activity and fouling tendency

机译:两种处理合成船上污垢的MBR中试装置的比较:盐度增加对生物性能,生物量活性和结垢趋势的影响

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摘要

The paper reports the main results of an experimental campaign carried out on two bench scale pilot plants for the treatment of synthetic shipboard slops. In particular, two membrane bioreactors (MBRs) with submerged configuration were analyzed. One MBR pilot plant (namely, Line A) was fed with synthetic shipboard slop and was subjected to a gradual increase of salinity. Conversely, the second MBR pilot plant (namely, Line B) was fed with the same synthetic shipboard slop but without salt addition, therefore operating as a âu80u9ccontrolâu80u9d unit. Organic carbon, hydrocarbons and ammonium removal, kinetic constants, extracellular polymeric substances (EPSs) production and membranes fouling rates have been assessed. The observed results highlighted a stress effect exerted by salinity on the biological performances, with lower removal efficiencies in the Line A compared to Line B. Significant releases of soluble EPS in Line A promoted an increase of the resistance related to particle deposition into membrane pores (pore fouling tendency), likely due to a worsening of the mixed liquor features. Such a condition enhanced the reduction of the âu80u9cpre-filterâu80u9d effect of the cake layer.
机译:该文件报告了在两个试验台规模的试验工厂进行的,用于处理人造船上污水的实验活动的主要结果。特别地,分析了具有浸没构造的两个膜生物反应器(MBR)。一台MBR中试工厂(即A号生产线)被注入合成船上污泥,并逐渐增加了盐度。相反,第二台MBR中试工厂(即B号生产线)使用了相同的合成船上污泥,但没有添加盐,因此作为“ U80 U9CCONTROL” U80 U9D装置运行。已经评估了有机碳,碳氢化合物和铵的去除,动力学常数,细胞外聚合物(EPS)的产生以及膜结垢率。观察到的结果强调了盐度对生物学性能的胁迫效应,与B系相比,A系的去除效率较低。A系中可溶性EPS的大量释放促进了与颗粒沉积到膜孔中相关的抗性的增加(可能是由于混合液特性恶化所致。这样的条件增强了滤饼层的效果。

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