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Effect of salinity on the activity, settling and microbial community of activated sludge in sequencing batch reactors treating synthetic saline wastewater

机译:盐度对序贯反应器处理合成盐废水的活性污泥活性,沉降和微生物群落的影响

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摘要

The effects of salinity on the activity in nutrient removal, settling and microbial community of activated sludge in sequencing batch reactors (SBRs) treating synthetic saline wastewater were investigated. Two SBRs, one treating synthetic saline wastewater (the N-Reactor, with NaCl addition) and the other treating fresh synthetic wastewater (the C-Reactor, without NaCl addition), were operated for 68 days. Three salinities (in terms of concentrations of NaCl)-10, 20 and 40 g NaCl/l-were examined. The microbial activity described with the specific glucose utilization rate, specific nitritation and nitratation rates, and specific phosphorus release and uptake rates, was inhibited in the N-Reactor, in comparison with that in the C-Reactor, except that the specific nitritation and nitratation rates were improved at the salinity of 10 g NaCl/l. The sludge yield coefficient decreased at salinities of 10 and 20 g NaCl/l but it rose at the salinity of 40 g NaCl/l. The settling of activated sludge flocs, in terms of the sludge volume index (SVI), was improved by adding NaCl. Particularly in the first 5 minutes during the SVI measurement, activated sludge flocs in the N-Reactor settled much faster than those in the C-Reactor. However, the effluent from the N-Reactor contained higher suspended solids than the effluent from the C-Reactor. The microbial diversity decreased with increasing the salinity, and the microbial community structure was greatly influenced by the salinity. Bacteriodetes and Actinobacteria were the dominant phylums detected with molecular fingerprinting techniques.
机译:研究了盐度对处理合成盐废水的测序间歇反应器中活性污泥养分去除,沉降和微生物群落活性的影响。两个SBR运行68天,其中一个用于处理合成盐水(N-反应器,添加NaCl),另一个用于处理新鲜的合成废水(C-反应器,不添加NaCl)。检查了三种盐度(按NaCl的浓度计)-10、20和40 g NaCl / l。与特定的葡萄糖利用率,特定的硝化和硝化速率以及特定的磷释放和吸收速率相比,N反应器与C反应器相比具有抑制的微生物活性,除了特定的硝化和硝化作用在盐度为10 g NaCl / l的条件下提高了有机肥的利用率。在10和20 g NaCl / l的盐度下,污泥产率系数下降,但在40 g NaCl / l的盐度下上升。通过添加NaCl,可以改善活性污泥絮凝物的沉降(就污泥体积指数(SVI)而言)。特别是在SVI测量的前5分钟内,N反应器中的活性污泥絮凝比C反应器中的沉降快得多。但是,N反应器的流出物比C反应器的流出物含有更高的悬浮固体。随着盐度的增加,微生物多样性降低,而微生物群落结构受盐度的影响很大。细菌杆菌和放线菌是用分子指纹技术检测到的主要门。

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