Effect of temperature and free ammonia on nitrification and nitrite accumulation in landfill leachate and analysis of its nitrifying bacterial community by FISH
Contribuinte(s) |
S.C. Ricke |
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Data(s) |
01/01/2006
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Resumo |
The cause of seasonal failure of a nitrifying municipal landfill leachate treatment plant utilizing a fixed biofilm was investigated by wastewater analyses and batch respirometric tests at every treatment stage. Nitrification of the leachate treatment plant was severely affected by the seasonal temperature variation. High free ammonia (NH3-N) inhibited not only nitrite oxidizing bacteria (NOB) but also ammonia oxidizing bacteria (AOB). In addition, high pH also increased free ammonia concentration to inhibit nitrifying activity especially when the NH4-N level was high. The effects of temperature and free ammonia of landfill leachate on nitrification and nitrite accumulation were investigated with a semi-pilot scale biofilm airlift reactor. Nitrification rate of landfill leachate increased with temperature when free ammonia in the reactor was below the inhibition level for nitrifiers. Leachate was completely nitrified up to a load of 1.5 kg NH4-N m(-3) d(-1) at 28 degrees C. The activity of NOB was inhibited by NH3-N resulting in accumulation of nitrite. NOB activity decreased more than 50% at 0.7 mg NH3-N L-1. Fluorescence in situ hybridization (FISH) was carried out to analyze the population of AOB and NOB in the nitrite accumulating nitrifying biofilm. NOB were located close to AOB by forming small clusters. A significant fraction of AOB identified by probe Nso1225 specifically also hybridized with the Nitrosonlonas specific probe Nsm156. The main NOB were Nitrobacter and Nitrospira which were present in almost equal amounts in the biofilm as identified by simultaneous hybridization with Nitrobacter specific probe Nit3 and Nitrospira specific probe Ntspa662. (c) 2005 Elsevier Ltd. All rights reserved. |
Identificador | |
Idioma(s) |
eng |
Publicador |
Elsevier Science |
Palavras-Chave | #Bacterial community analysis #Biofilm #Fluorescence in situ hybridization #Free ammonia inhibition #Landfill leachate #Nitrification #Nitrite accumulation #Biological Nitrogen Removal #Mixed Continuous Cultures #Small Suspended Particles #In-situ Characterization #Volatile Fatty-acids #Activated-sludge #Nitrosomonas-europaea #Waste-water #Salt Concentrations #Oxidizing Bacteria #C1 #299999 Engineering and Technology not elsewhere classified #779999 Other |
Tipo |
Journal Article |