수돗물의 탄소와 인 농도에 따른 세균의 생장과 C/P 소모율

Bacterial growth and carbon-to-phosphorus consumption in drinking water with different carbon and phosphorus levels
  • 최성찬
  • 박세근
  • 김영관

초록

Bacterial growth and corresponding consumption of carbon and phosphorus were examined in which tap water samples containing a very low concentration of free chlorine were supplemented with organic carbon and/or phosphorus. The experiments were performed in a fed-batch mode under a controlled temperature of 20℃. In the phosphorus alone-added water, there was no significant increase in bacterial numbers measured as heterotrophic plate count (HPC) in the bulk water. However, bacterial growth was stimulated by the addition of carbon (e.g., bulk HPC levels increased to 103 CFU/mL) and further stimulated by the combined addition of carbon and phosphorus (e.g., bulk HPC to 105 CFU/mL). The same effects were observed in biofilm HPC and biomass formed on polyethylene (PE) slide surfaces. In the water where organic carbon and phosphorus were added together, the highest biofilm HPC and biomass (measured as extracellular polymeric substance components) densities were observed which were 7.6×105 CFU/cm2 and 5.3 μg/cm2, respectively. In addition to the bacterial growth, additions of organic carbon and/or phosphorus resulted in different bacterial carbon-to-phosphorus (C/P) consumption ratios. Compared to a typical bacterial C/P consumption ratio of 100:1, a higher C/P ratio (590:1) occurred in the carbon alone-added water, while a lower ratio (40:1) in phosphorus alone-added water. Comparative value (80:1) of C/P ratio was also observed in the water where organic carbon and phosphorus were added together. At the given experimental conditions, bacterial growth was deemed to be more sensitive to microbially available organic carbon than phosphorus. The effect of phosphorus addition, which resulted in a lower C/P consumption ratio, seemed to be tightly associated with the presence of microbially available organic carbon. These results suggested that the control of extrinsic carbon influx seemed to be more important to minimize bacterial regrowth in drinking water system, since even low content of phosphorus naturally occurring in drinking water was enough to allow a bacterial growth

키워드

Drinking waterOrganic carbonPhosphorusBacterial growthBiofilmC/P consumption ratio수돗물유기탄소세균 생장생물막C/P 소모비율
제목
수돗물의 탄소와 인 농도에 따른 세균의 생장과 C/P 소모율
제목 (타언어)
Bacterial growth and carbon-to-phosphorus consumption in drinking water with different carbon and phosphorus levels
저자
최성찬박세근김영관
발행일
2013-12
유형
Y
저널명
상하수도학회지
27
6
페이지
689 ~ 701