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Membrane bioreactors for treatment of saline wastewater contaminated by hydrocarbons (diesel fuel): An experimental pilot plant case study

机译:膜生物反应器用于处理被碳氢化合物(柴油)污染的盐水废水:实验性中试工厂案例研究

摘要

The paper reports the main results of an experimental campaign performed on a membrane bioreactor pilot plant designed to treat synthetic shipboard slops. The experimental campaign was divided into two phases: salinity acclimation up to 20 g NaCl L-1 (Phase I) and hydrocarbon (diesel fuel) dosing (Phase II). The observed results show that the carbon removal was not severely affected by the wastewater features. Conversely, respirometric tests showed that nitrification was strongly affected by the salinity (33% of nitrification efficiency at 20 g NaCl L-1 - Phase I) as a result of the salinity in the autotrophic biomass. Moreover, the sludge viscosity increased during Phase II due to the wastewater composition, leading to an increase in the membrane resistance, and severe degradation of the sludge dewaterability was also observed. Indeed, the capillary suction time increased by a factor of 3 times compared with that of Phase I.
机译:该论文报道了在膜生物反应器中试装置上进行的实验活动的主要结果,该装置旨在处理人造船上的污水。实验活动分为两个阶段:盐度适应性最高达20 g NaCl L-1(第一阶段)和碳氢化合物(柴油燃料)计量(第二阶段)。观察结果表明,废水特征对除碳没有严重影响。相反,呼吸测定法测试表明,由于自养生物质中的盐度,盐度(20 g NaCl L-1-I相的硝化效率为33%)强烈影响硝化作用。此外,由于废水的组成,在阶段II期间污泥粘度增加,导致膜阻力增加,并且还观察到污泥脱水性的严重降低。实际上,与阶段I相比,毛细管抽吸时间增加了3倍。

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