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Simultaneous Nitrogen and Phosphorus Removal from High-Strength Industrial Wastewater Using Aerobic Granular Sludge
Authors:N Kishida  S Tsuneda  J H Kim  R Sudo
Affiliation:1Researcher, Dept. of Water Supply Engineering, National Institute of Public Health, 2-3-6 Minami, Wako-shi, Saitama 351-0197 Japan. E-mail: kishida@niph.go.jp
2Professor, Dept. of Chemical Engineering, Waseda Univ., 3-4-1 Ohkubo, Shinjuku-ku, Tokyo 169-8555, Japan (corresponding author). E-mail: stsuneda@waseda.jp
3Associate Professor, Dept. of Civil and Environmental Engineering, Akita National College of Technology, 1-1 Iijima Bunkyo-cho, Akita 011-8511, Japan. E-mail: kim@ipc.akita-nct.ac.jp
4President, Center for Environmental Science in Saitama, 914 Kamitanadare, Kisai-machi, Saitama 347-0115, Japan. E-mail: g7383311@pref.saitama.lg.jp
Abstract:Aerobic granular sludge technology was applied to the simultaneous nitrogen and phosphorus removal from livestock wastewater that contains high concentrations of nitrogen and phosphorus (TN: 650?mg/L; TP: 125?mg/L). A lab-scale sequencing batch reactor was operated in an alternating anaerobic/oxic/anoxic denitrification mode. Granular sludge was first formed using synthetic wastewater. When livestock wastewater was diluted with tap water, the shape and settleability of aerobic granular sludge were maintained even though livestock wastewater contained suspended solids. Simultaneous nitrification, denitrification, and phosphate uptake were observed under an aerobic condition. However, when nondiluted livestock wastewater was used, the diameter of granular sludge and the denitrification efficiency under an oxic condition decreased. When the concentrations of nitrogen and phosphorus in wastewater increased, hydraulic retention time (HRT) increased resulting in a decrease in selection pressure for granular sludge. Therefore, the sustainment of granular sludge was difficult in livestock wastewater treatment. However, by applying a new excess sludge discharge method based on Stokes’ law, the shape of granular sludge was maintained in spite of the long HRT (7.5?days). To select large granular sludge particles, excess sludge was discharged from the upper part of settled sludge because small particles localized there after settling. Finally, excellent nitrogen and phosphorus removal was accomplished in practical livestock wastewater treatment. The effluent concentrations of NH4–N, NOx–N, and PO4–P were <0.1, 1.4, and 1.2?mg/L, respectively.
Keywords:Aerobic treatment  Denitrification  Nitrification  Waste management  Wastewater treatment  
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