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- W44182005 abstract "SUMMARY To obtain the data required as a basis for nitrogen control systems, a pilot plant was constructed and operated at the Wastewater Technology Centre, Burlington, Ontario. Carbon removal and nitrification efficiencies were obtained from three different process configurations - a single and two stage combined carbon removal-nitrification system and a separate carbon removal-nitrification system. This was followed by a suspended growth denitrification system in which an aerated stabilization chamber could be incorporated. Both nitrification and denitrification were found to be independent of substrate nitrogen concentration for ranges generally found in domestic waste. Both processes exhibited temperature dependency which can be described by an Arrhenius model. Nitrification was found to be the most sensitive. The temperature sensitivity of the nitrification process decreased with increasing sludge age while the temperature response of the denitrification process was essentially independent of sludge age. The combined and separate sludge carbon removal-nitrification systems exhibited similar nitrification rates but the combined system produced significantly less excess sludge. The incorporation of an aerobic stabilization chamber proved to be an effective method of removing excess methanol used as a carbon and energy source for denitrification. Similarly, improvements in effluent solids concentrations were observed. With both nitrification and denitrification processes nitrogen incorporated in the suspended solids decreased the overall nitrogen removal capability." @default.
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- W44182005 date "2013-01-01" @default.
- W44182005 modified "2023-09-23" @default.
- W44182005 title "NITROGEN CONTROL: A BASIS FOR DESIGN WITH ACTIVATED SLUDGE SYSTEMS" @default.
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- W44182005 doi "https://doi.org/10.1016/b978-1-4832-1344-6.50036-8" @default.
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