Article ID Journal Published Year Pages File Type
686213 Bioresource Technology 2007 9 Pages PDF
Abstract

In engineered systems, biological nitrogen removal through partial nitrification to nitrite is of great interest. Accordingly, effect of operating parameters such as pH, DO and temperature on the accumulation of ammonia-oxidizers was investigated. pH of 8, DO of 0.3–0.5 mg/l and temperature of 35 °C yielded a ratio of 0.9–1.5 of NO2N:NH4N in the effluent suitable as a feed for Anammox reactor.Microbial population shift during start-up was assessed using quinone profile, SEM and FISH. UQ-8 in the biomass, which is the predominant quinone in ammonia-oxidizers, increased from 24.8% on Day 1 to 61.2% on Day 136. Fluorescence in situ hybridization analysis in the reactor showed that ammonia-oxidizing bacteria gradually outcompeted other bacteria and was the dominant population. The morphology and inner structure of the granular sludge was observed using SEM and the photographs indicated that the aerobic granular sludge showed a shift towards spherical and small rod-shaped clusters.

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Physical Sciences and Engineering Chemical Engineering Process Chemistry and Technology
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