Effect of different salt adaptation strategies on the microbial diversity, activity, and settling of nitrifying sludge in sequencing batch reactors

硝化作用 序批式反应器 流出物 温度梯度凝胶电泳 硝化细菌 活性污泥 废水 盐度 微生物种群生物学 沉淀 生物 盐(化学) 化学 微生物学 细菌 食品科学 16S核糖体RNA 环境工程 生态学 氮气 环境科学 物理化学 遗传学 有机化学
作者
João Paulo Bassin,Robbert Kleerebezem,Gerard Muyzer,Alexandre Soares Rosado,Mark C.M. van Loosdrecht,Márcia Dezotti
出处
期刊:Applied Microbiology and Biotechnology [Springer Science+Business Media]
卷期号:93 (3): 1281-1294 被引量:185
标识
DOI:10.1007/s00253-011-3428-7
摘要

The effect of salinity on the activity of nitrifying bacteria, floc characteristics, and microbial community structure accessed by fluorescent in situ hybridization and polymerase chain reaction-denaturing gradient gel electrophoresis techniques was investigated. Two sequencing batch reactors (SRB₁ and SBR₂) treating synthetic wastewater were subjected to increasing salt concentrations. In SBR₁, four salt concentrations (5, 10, 15, and 20 g NaCl/L) were tested, while in SBR₂, only two salt concentrations (10 and 20 g NaCl/L) were applied in a more shock-wise manner. The two different salt adaptation strategies caused different changes in microbial community structure, but did not change the nitrification performance, suggesting that regardless of the different nitrifying bacterial community present in the reactor, the nitrification process can be maintained stable within the salt range tested. Specific ammonium oxidation rates were more affected when salt increase was performed more rapidly and dropped 50% and 60% at 20 g NaCl/L for SBR₁ and SBR₂, respectively. A gradual increase in NaCl concentration had a positive effect on the settling properties (i.e., reduction of sludge volume index), although it caused a higher amount of suspended solids in the effluent. Higher organisms (e.g., protozoa, nematodes, and rotifers) as well as filamentous bacteria could not withstand the high salt concentrations.
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