펄스 UV 램프를 이용한 미생물 소독 및 2-MIB 제거 특성

Characteristics of Disinfection and Removal of 2-MIB Using Pulse UV Lamp

  • 안영석 (한국수자원공사 전남지역본부) ;
  • 양동진 (그린엔텍(주)) ;
  • 채선하 (한국수자원공사 수자원연구원) ;
  • 임재림 (한국수자원공사 수자원연구원) ;
  • 이경혁 (한국수자원공사 수자원연구원)
  • 투고 : 2008.12.29
  • 심사 : 2009.02.12
  • 발행 : 2009.02.15

초록

The characteristics of disinfection and organic removal were investigated with pulse UV lamp in this study. The intensity and emission wavelength of pulse UV Lamp were compared with low pressure UV lamp. The emission spectrum range of pulse UV lamp was between 200 and 400 nm while the emission spectrum of low pressure UV lamp was only single wavelength of 254nm. 3 Log inactivation rate of B. subtilis spore by pulse UV and low pressure UV irradiation was determined as $44.71mJ/cm^2$ and $57.7mJ/cm^2$, respectively. This results implied that wide range of emission spectrum is more effective compared to single wavelength emission at 254nm. 500ng/L of initial 2-MIB concentration was investigated on the removal efficiency by UV only and $UV/H_2O_2$ process. The removal efficiency of UV only process achieved approximately 80% at $8,600mJ/cm^2$ dose. 2-MIB removal rate of $UV/H_2O_2$ (5 mg/L $H_2O_2$) process was 25 times increased compared to UV only process. DOC removal efficiency for the water treatment plant effluent was examined. The removal efficiency of DOC by UV and $UV/H_2O_2$ was no more than 20%. Removal efficiency of THMFP(Trihalomethane Formation Potential), one of the chlorination disinfection by-products, is determined on the UV irradiation and $UV/H_2O_2$ process. Maximum removal efficiency of THMFP was approximately 23%. This result indicates that more stable chemical structures of NOM(Natural Organic Matter) than low molecule compounds such as 2-MIB, hydrogen peroxide and other pollutants affect low removal efficiency for UV photolysis. Consequently, pulse UV lamp is more efficient compared to low pressure lamp in terms of disinfection due to it's broad wavelength emission of UV. Additional effect of pulse UV is to take place the reactions of both direct photolysis to remove micro organics and disinfection simultaneously. It is also expected that hydrogen peroxide enable to enhance the oxidation efficiency on the pulse UV irradiation due to formation of OH radical.

키워드

과제정보

연구 과제 주관 기관 : 환경부

참고문헌

  1. 양동진, 박순호,(2006) UV를 기반으로 한 수처리 기술 동향 (上), 첨단환경기술, 8, 108-115
  2. 이경혁, 채선하, 임재림, 최재헌, 안효원,(2004) '정수 처리를 위한 Bacillus subtilis Spore의 자외선 소독 특성 평가,' 대한 환경공학회지, 26(12), 1389-1394
  3. Cho, M., Chung, H. M. and Yoon, J. Y.,(2003) 'Quantative evaluation of the synergistic sequential inactivation of Bacillus subtilis spores with ozone followed by chlorine,' Appl. Environ. Microbiol., 37(10), 2134-2156 https://doi.org/10.1021/es026135h
  4. Karl G. Linden, Charles M. Sharpless, Susan Ansrew, Khalil Atasi, Vinod Korategere, Mihaela Stefan, and Mel Suffet.(2004) Innovative UV Technologies to Oxidize Organics and Organoleptic Chemicals, AWWARF
  5. Malley, J. P.(1996) Ultraviolet light disinfection technology in drinking water application an Overview, EPA 881-R-96-002
  6. U.S. EPA,(2004) Ultraviolet Disinfection Guidance Manual, EPA 815-D-03-007