Removal of Nitrogen and Phosphorus from Municipal Wastewater by a Pilot-scale BNR Process

파이롯트 규모의 BNR 공법에 의한 도시하수의 질소 및 인 제거

  • 김영철 (경성대학교 공과대학 건설.환경공학부)
  • Received : 2007.07.30
  • Accepted : 2007.10.11
  • Published : 2007.10.15

Abstract

This study was conducted to investigated the removal efficiency of BOD and nutrient for the treatment of low strength municipal wastewater by a biological nutrient removal system. In this experiment, the effect of operating parameter including HRT of 7.0hr, BOD/TN ratios of 2.62~4.08, internal recycle of 50~300%, and return sludge of 50~100%, were studied during winter season. Efficiencies of organic matter and T-P removal and denitrification were not significantly affected by the change of temperature in winter season. However, the specific nitrification rate and nitrification efficiency decreased at low temperature. Besides, denitrification efficiencies increased with increasing BOD/TN ratios. It was also found that the internal recycle and return sludge ratio below 50% is required for the effective denitrification of low strength municipal wastewater. With operating mode 4 of the optimum, the effluent BOD, T-N and T-P concentration were obtained to average 5.8, 14.6, and 0.84 mg/L, respectively. The temperature-activity coefficient (${\theta}$) of specific nitrification rate, specific denitrification rate and specific phosphorus uptake rate were obtained 1.044, 1.017, 1.028, respectively.

Keywords

References

  1. 공동수 (1996) 우리나라 인공호수의 부영양화제어방안. 호소의 부영양화 방지대책에 대한 한.일 세미나, 국립환경연구원. 한국수질보전학회지
  2. 안종화, 남광현, 민경석 (1998) 분뇨혼합 저농도 하수의 영양소제거, 한국물환경학회지, 14(36), pp. 281-288
  3. 환경부 (2005) 하수도법
  4. 환경부 (2006) 2006년도 상반기 하수처리시설 지도점검결과, 환경부 생활하수과
  5. 환경부 (2000) 수질오염공정시험법
  6. APHA, AWWA and WEF (1992) Standard methods for the examination of water and wastewater, 18th ed, American Public Health Association
  7. Ekama, G. A., Siebritz, I.P. and Marais, G. v. R., (1983) Consideration in the process Design of Nutrient Removal Activated Sludge Process, Wilter Science Technology. 15, pp. 283-318 https://doi.org/10.2166/wst.1983.0119
  8. Fuhs, G. W. and Chen. M., (1975) Microbiological Basis of Phosphate Removal in the Activated Sludge Process for the Treatment of Wastewater, Microbial Ecology, 2, pp. 119-138 https://doi.org/10.1007/BF02010434
  9. Metcalf & Eddy, Inc., (1991) Wastewater Engineering: Treatment, Disposal, Reuse, 3rd ed, McGraw-Hill
  10. R. I. Sedlak ed., (1991) Phosphorous and Nitrogen from Municipal Wastewater, 2nd Ed, p. 19, Lewis Publishers
  11. US EPA, (1993) Nitrogen Control, p.107, Technomic Publishing, Co