주기적인 약품역세를 적용한 침지형 MBR 시스템의 운전성능에 관한 연구

Operational Performance of Submerged Membrane Bioreactor Combined with Periodic Chemical Backwash

  • 김관엽 (성균관대학교 건설환경시스템공학과) ;
  • 이의종 (성균관대학교 건설환경시스템공학과) ;
  • 송준섭 (성균관대학교 건설환경시스템공학과) ;
  • 김지훈 (성균관대학교 건설환경시스템공학과) ;
  • 김형수 (성균관대학교 건설환경시스템공학과)
  • 투고 : 2007.12.31
  • 심사 : 2008.01.25
  • 발행 : 2008.02.15

초록

Purposes of this study were to evaluate operational performance of submerged membrane bioreactor (MBR) combined with periodic chemical backwash. Five lab-scale submerged MBRs were performed in accordance with NaOH dose, backwash solution volume. While filtration resistance of MBR system without backwash (Control) was increased persistently from startup, those of four MBR systems (RUN 1-4) with chemical backwash were maintained at $(1.4{\pm}0.16){\times}10^{12}$, $(8.6{\pm}0.90){\times}10^{11}$, $(1.9{\pm}0.10){\times}10^{12}$, $(1.4{\pm}0.10){\times}10^{12}l/m$, respectively. Under chemical backwash condition of 0.0230 M, 375 mL, permeability of membrane was highest at flux of $30L/m^2/hr$. According to results from experiment that changing condition of dose and volume, it was estimated that effect of chemical dose acts more greatly than backwash solution volume. Because COD removal rates of all MBR systems with chemical backwash were more than 96%, it was proved that NaOH added to backwash solution did not affect microorganism.

키워드

참고문헌

  1. 박철휘, 윤재곤 (2004) 침지형 분리막을 이용한 오수고도처리 공정의 막오염 원인물질 및 제어에 관한 연구, 상하수도학회지, 18(5), pp.619-627
  2. 오현석, 홍석환, 장인성, 이우녕, 이정학 (2006) MBR공정에서 호기-무산소 조건에 따른 생물막 구조의 변화, 대한상하수도학회-한국물환경학회 공동추계학술발표회 논문집, pp.54-58
  3. Chaize, S., and Huyard, A., (1991) Membrane Bioreactor on Domestic Wastewater Treatment: Sludge Production and Modeling Approach, Water Sci. Technol., 23, pp.1591-1600 https://doi.org/10.2166/wst.1991.0613
  4. Chang, Y., Kramer, A.J. and Lubben, D.R. (2002) Effective Membrane Fouling Control: A New Membrane Cleaning Concept, Proceedings of Water Quality Technology Conference, Seattle, WA
  5. Cheyan, M. and Mehala, M.A. (1986) Membrane Bioreactors. p.676, Chemtech
  6. Ishida, H., Yamada, Y., Tsuboi, M. and Matsumura, S. (1993) Submerged Membrane Activated Sludge Process (KSMASP) - Its Application into Activated Sludge Process with High Concentration of MLSS, Proceedings of the 2nd International Conference on Advances in Water and Effluent Treatment, pp.321-330
  7. Judd, S. (2006) The MBR book: Principles and Applications of Membrane Bioreactors in Water and Wastewater Treatment, Elsevier
  8. Krauth, K. H. and Staab, K.F. (1994) Pressurized Biomembrane Reactor for Wastewater Treatment, Hydrotop, 94, pp.555-562
  9. Laera, G., Pollice, A., Saturno, D., Giordano, C. and Lopez, A. (2005) Zero net growth in a membrane bioreactor with complete sludge retention, Wat. Res., 39, pp.5241-5249 https://doi.org/10.1016/j.watres.2005.10.010
  10. Liu, R., Huang, X., Xi, J., and Qian, Y. (2005) Microbial behaviour in a membrane bioreactor with complete sludge retention, Process Biochemistry, 40, pp.3165-3170 https://doi.org/10.1016/j.procbio.2005.01.021
  11. Rosenberger, S., Kruger, U., Witzig, R., Manz, W., Szewzyk, U. and Kraume, M. ( 2002) Performance of a bioreactor with submerged membranes for aerobic treatment of municipal waste water, Wat. Res., 36, pp.413-420 https://doi.org/10.1016/S0043-1354(01)00223-8
  12. Smith, P.J., Vigneswaran, S. and Huu, H.N. (2006) A new approach to backwash initiation in membrane systems, J. Membr. Sci., 278, pp.381-389 https://doi.org/10.1016/j.memsci.2005.11.024
  13. Visvanathan, C., Ben, A.R. and Parameshwaran, K. (2000) Membrane Separation Bioreactors for Wastewater Treatment, Environ. Sci. and Techol., 30(1), pp.1-48 https://doi.org/10.1080/10643380091184165
  14. Yang, W., Cicek, N. and Ilg, J. (2006) State-of-the-art of membrane bioreactors: worldwide research and commercial applications in North America, J. Membr. Sci., 270(1-2), pp.201-211 https://doi.org/10.1016/j.memsci.2005.07.010
  15. Yasui, H. and Shibata, M. (1994) An innovative approach to reduce excess sludge production in the activated sludge process., Wat. Sci. Techol., 30(9), pp.11-20
  16. Yoon, S.H., Kim, H.S., and Hwang, S.J., (2001) Zero Sludge Discharge Using MBR-Ultrasound System, Journal of Korean Society of Environmental Engineers, 23(9), pp.1423-1429