Indexed by:
Abstract:
Anoxic/oxic biofilm system was used to treat domestic sewage with m(C)/m(N) ratio of (3.45±0.77) and characteristics of simultaneous nitrification-denitrification at low temperature were investigated in the oxic moving bed biofilm reactor (MBBR). The results show that the system adjusts to the seasonal dropping of temperature (25.2 →14.6 ) by lengthening the hydraulic retention time (HRT)(19.2 h→30.3 h), and as a result, the effluent COD ((51.1±6.3) mg/L) and NH4+-N ((2.76±2.02) mg/L) concentrations achieve class A and class B limit, respectively. Nitrogen removal efficiency of SND is less affected by low temperature and 39.4%-47.3% of influent TN can be removed by SND at temperatures of (23.0±1.6) (R=250%), (19.5±0.9) (R=300%), and (17.1±0.6) (R=300%), (15.1±0.4) (R=300%), which realizes effluent TN concentrations of (18.44±2.60), (13.92±3.16), (14.93±2.19), (14.11±2.14) mg/L, respectively. Simultaneous denitrification becomes the key factor of SND, biofilm with average thickness of 323-1 143 μm can form anoxic micro-environment, and using the slow biodegradable carbon source in influent can achieve endogenous denitrification effectively at long HRT. Biofilm in MBBR can realize simultaneous nitrogen removal at 0.353 mg/(L·h) at DO mass concentration of (3.5±0.5) mg/L and m(C)/m(N) ratio of 2.5-3.3.
Keyword:
Reprint Author's Address:
Email:
Source :
Journal of Central South University (Science and Technology)
ISSN: 1672-7207
Year: 2014
Issue: 8
Volume: 45
Page: 2920-2927
Cited Count:
SCOPUS Cited Count:
ESI Highly Cited Papers on the List: 0 Unfold All
WanFang Cited Count:
Chinese Cited Count:
30 Days PV: 0