Partial Nitrification from Domestic Wastewater by Aeration Control at Ambient Temperature
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彭永臻
[1
]
高守有
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Beijing General Municipal Engineering Design & Research Institute, Beijing , ChinaKey Laboratory of Beijing for Water Environment Recovery Engineering, Beijing University of Technology, Beijing , China
高守有
[2
]
王淑莹
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Key Laboratory of Beijing for Water Environment Recovery Engineering, Beijing University of Technology, Beijing , ChinaKey Laboratory of Beijing for Water Environment Recovery Engineering, Beijing University of Technology, Beijing , China
王淑莹
[1
]
白璐
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Key Laboratory of Beijing for Water Environment Recovery Engineering, Beijing University of Technology, Beijing , ChinaKey Laboratory of Beijing for Water Environment Recovery Engineering, Beijing University of Technology, Beijing , China
白璐
[1
]
机构:
[1] Key Laboratory of Beijing for Water Environment Recovery Engineering, Beijing University of Technology, Beijing , China
[2] Beijing General Municipal Engineering Design & Research Institute, Beijing , China
The objective of this paper was to examine the feasibility of partial nitrification from raw domestic wastewater at ambient temperature by aeration control only. Airflow rate was selected as the sole operational pa-rameter. A 14L sequencing batch reactor was operated at 23℃ for 8 months, with an input of domestic wastewater. There was a programmed decrease of the airflow rate to 28L·h-1, the corresponding average dissolved oxygen (DO) was 0.32mg·L-1, and the average nitrite accumulation rate increased to 92.4% in 3 weeks. Subsequently, further in-crease in the airflow rate to 48L·h-1 did not destroy the partial nitrification to nitrite, with average DO of 0.60mg·L-1 and nitrite accumulating rate of 95.6%. The results showed that limited airflow rate to cause oxygen deficiency in the reactor would eventually induce only nitrification to nitrite and not further to nitrate and that this system showed relatively stability at higher airflow rate independent of pH and temperature. About 50% of influent total nitrogen was eliminated coupling with partial nitrification, taking the advantage of low DO during the reaction.
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页码:115 / 121
页数:7
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[1]
“Nitrogen removal characteris- tics of nitrification and denitrification filters”. Cecen, F,Gonenc, I.E. Water Science and Technology . 1994