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Effects of Salt on Microbial Populations and Treatment Performance in Purifying Saline Sewage Using the MUCT Process

机译:盐对MUCT工艺净化盐水污水中微生物种群和处理性能的影响

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摘要

Understanding salt effects on activated sludge systems and treatment performance is essential in order to design and operate a full scale treatment plant processing saline sewage. For this purpose, a bench scale modified University of Cape Town (MUCT) process for treating saline sewage was used to provide information with regard to microbial population shift and treatment performance. Various salt levels (5, 8, 10 and 15 g/L) were studied. Experimental results indicated that the salt concentration in sewage significantly affected phosphorous removal, while salt inhibition of ammonium degradation was slight, even in a 15 g/L salt solution. Outstanding nitrite accumulation in aerobic tanks occurred in the MUCT treating 8 g/L saline sewage, which resulted in denitrifying nitrite by phosphorous accumulating organisms (PAOs) in the anoxic tank. Population size of physiological groups (aerobic-heterotrophic, nitrifying and denitrifying microbial group) was also investigated at different salt levels. The investigation of changes in the dynamics of the activated sludge microbial structure gave an insight into the nature and the magnitude of salt effects on the microbial community.
机译:了解盐对活性污泥系统和处理性能的影响,对于设计和运行处理盐水污水的大规模处理厂至关重要。为此,使用了台式规模改进的开普敦大学(MUCT)工艺来处理含盐污水,以提供有关微生物种群迁移和处理性能的信息。研究了各种盐含量(5、8、10和15 g / L)。实验结果表明,即使在15 g / L的盐溶液中,污水中的盐浓度也会显着影响磷的去除,而对铵降解的盐抑制作用却很小。 MUCT处理8 g / L盐水时,好氧池中出现了亚硝酸盐积聚,这导致缺氧池中的磷累积生物(PAO)对亚硝酸盐进行反硝化。还研究了在不同盐浓度下生理群体(好氧-异养,硝化和反硝化微生物群)的种群规模。活性污泥微生物结构动力学变化的研究使人们对盐分对微生物群落的性质和程度有了深刻的认识。

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