Browse > Article

Effect of Temperature on Removals of Organic Matter, Nitrogen and Phosphorus in MLE and M-Dephanox Processes  

Ryu, Hong-Duck (Department of Environmental Engineering, Chungbuk National University)
Lee, Sang-Ill (Department of Environmental Engineering, Chungbuk National University)
Publication Information
Abstract
The present study evaluated effect of temperature on removals of organic matter (C), nitrogen (N) and phosphorus (P) in Modified-Dephanox (M-Dephanox) process, which is hybrid system, comparing with those of Modified-Ludzack Ettinger (MLE) under the suspended-growth bacteria, as control. M-Dephanox process was more stable than MLE process in the removal of C, N, P, especially in nitrification, as the temperature was decreased from $25^{\circ}C$ to $16^{\circ}C$. As the temperature was decreased from $25^{\circ}C$ to $16^{\circ}C$, the removal efficiency of $NH_4{^+}-N$ of M-Dephanox process was decreased by 3.8%, but that of MLE process decreased by 25.7%. T-N removal efficiency of M-Dephanox was higher than MLE process by 27.1% and 26.9% at $25^{\circ}C$ and $16^{\circ}C$ of temperature, respectively.
Keywords
hybrid; Modified-Dephanox (M-Dephanox); Modified-Ludzack Ettinger (MLE); Nitrification; Suspended-growth; Temperature;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 Liu, J., Li, W., Wang, X., Liu, H. and Wang, B., Removal of Nitrogen from Coal Gasification by Nitrosofication and Denitrosofication, Wat. Sci. Tech, 38(1), pp. 39-46 (1998)   DOI   ScienceOn
2 Randall, C. and Sen, D., Full-Scale Evalution of an Integrated Fixed-Film Activated Sludge(IFAS) Process for Enhanced Nitrogen Removal, Wat. Sci. Tech, 33(12), pp. 155-162 (1996)
3 Tarek, A. E., Vladimir, S., Grietje, Z. and Gatez, L., Low Temperature Pre-Treatment of Domestic Sewage in an Anaerobic Hybrid or an Anaerobic Filter Reactor, Bioresource Technology, 82, pp. 233-239 (2002)   DOI   ScienceOn
4 류흥덕, 민경국, 이상일, 온도 및 수리학적 체류시간이 Modified DEPHANOX 공정에 미치는 영향, 대한환경공학회지, 26(3), pp. 313-320 (2004b)
5 Deguchi, H. and Kashiwaya, M., Study on Nitrified Liquor Recycling Process Operations Using Polyurethane Foam Sponge Cubes as a Biomass Support Medium, Waf. Sci.Tech, 30(6), pp. 143-149 (1994)
6 Kuba, T., Van Loosdrecht, M. C. M. and Heijnen, J. J., Phosphorus and Nitrogen Removal with Minimal COD Requirement by Integration of Denitrifying Dephosphatation and Nitrification in a Two-Sludge System, Waf. Res., 30(7), pp. 1702-1710 (1996)
7 Polprasert, C. and Sookhanich, S., Upgrading of Facultative Ponds to Treat a Toxic Organic Wastewater, Wat. Sci. Tech, 31(2), pp. 201-210 (1995)
8 Kim, Y., Mikawa, T., Tanaka, K. and Emori, H., Development of Novel Anaerobic/Aerobic Filter Process for Nitrogen Removal Using Immobilized Nitrifier Pellets, Waf. Sci. Tech, 36(12), pp. 151-158 (1997)
9 Liu, J., Wang, B., Li, W., Jin, C., Cao, X. and Wang, L., Removal of Nitrogen from Coal Gasfication and Coke Plant Wastewaters in A/O Submerged Biofilm-Activated Sludge(SBF-AS) Hybrid System, Wat. Sci. Tech, 34(10), pp. 17-24 (1996)
10 Kazuaki, Y., Yuichi, O. and Akira, 0., Simultaneous Removal of Carbonaceous and Nitrogenous Pollutants by a Plunging Liquid Jet Bioreactor with Crossflow Filtration Operated Under Intermittent Aeration, Bioresource Technology, 53, pp. 57-62 (1995)   DOI   ScienceOn
11 Zhao, Q. and Wang, B., Evaluation on a Pilot-Scale Attached-Growth Pond System Treating Domestic Wastewater, Wat. Res., 30(1), pp. 242-245 (1996)   DOI   ScienceOn
12 환경부, 2003 년 말 기준 가동중인 하수종말처리시설 현황 (2003)
13 Wanner, J., Cech, J. S. and Kos, M., New Process Design for Biological Nutrient Removal, Wat. Sci. Tech., 25(4 - 5), pp. 445-448 (1992)
14 류홍덕, 민경국, 이상일, 유입부하가 DEPHANOX 및 Modified- DEPHANOX 공정에 미치는 영향, 한국물환경학회지, 20(1), pp. 24-31 (2004a)
15 Park, S. J., Oh, J. W. and Yoon, T. I., The Role of Powdered Zeolite and Activated Carbon Carriers on Nitrification in Activated Sludge with Inhibitory Materials, Process Biochemistry, 39, pp. 211-219 (2003)   DOI   ScienceOn
16 Rakkoed, A., Danteravanich, S. and Puetpaiboon, U., Nitrogen Removal in Attached Growth Waste Stabilization Ponds of Wastewater from a Rubber Factory, Wat. Sci. Tech, 40(1), pp. 45-52 (1999)