DOI QR코드

DOI QR Code

수평흐름식 여과기술의 CSOs 적용을 위한 공정 최적화 연구

A Study on Process Optimization for CSOs Application of Horizontal Flow Filtration Technology

  • 김재학 (한서대학교 환경공학과) ;
  • 양정하 (한서대학교 환경공학과) ;
  • 이영신 (한서대학교 환경공학과)
  • Kim, Jae-Hak (Dept. of Environmental Engineering, Hanseo University) ;
  • Yang, Jeong-Ha (Dept. of Environmental Engineering, Hanseo University) ;
  • Lee, Young-Shin (Dept. of Environmental Engineering, Hanseo University)
  • 투고 : 2017.10.20
  • 심사 : 2018.02.02
  • 발행 : 2018.02.28

초록

강우사상이 발생함에 따라 시설용량을 초과하여 미처리된 상태로 방류수계에 직접 배출되는 합류식 관거 월류수(Combimed Sewer Overflows, CSOs) 및 분류식 관거 월류수(Separated Sewer Overflows, SSOs)의 관리는 집중호우가 잦아지는 근래에 들어 그 관리가 더욱 중요해지고 있다. 밀집도가 높은 도심지에 적용성이 유리한 여과기술은 지속적인 개발이 이루어지고 있음에도 불구하고 CSOs에 적용된 사례가 거의 전무한 실정이다. 따라서 본 연구에서는 로프형 섬유여재가 적용된 Pilot 규모의 수평흐름식 여과장치를 CSOs에 적용하기 위해 공정최적화를 목적으로 수행되었다. 연구방법은 인공시료를 적용한 사전연구와 하수를 적용한 현장연구로 구분하여 수행하였다. 인공시료를 적용한 사전연구에서 여재 자체의 손실수두는 약 1.1cm정도로 분석되었고, 선속도 10m/hr 증가에 따라 약 0.1cm 정도의 손실수두 증가를 유발하는 것으로 나타났다. 또한, SS 제거효율은 81.4% 정도로 안정적이었고, 여과지속시간은 6시간 이상 유지되었으며, 공기역세척만으로도 98% 정도의 손실수두 평균 회복율을 보였다. 하수를 적용한 현장평가에서는 여재의 조기폐색을 방지하기 위한 전처리공정으로 벨트 형 미세스크린(450mesh 이상)를 적용했을 때 2시간 내외의 여과지속시간을 확보할 수 있었고, 평균 83.9%의 SS 제거효율을 나타내었다. CSOs 및 SSOs에 여과공정 적용을 위해서는 효율적 측면보다 여과지속시간의 안정적 유지를 위한 수리적 측면을 보완하기 위해서 전처리공정과의 조합이 중요하다는 결론을 얻을 수 있었다. 건기와 비교하여 우기의 유입하수 수질은 다소 낮은 보였으며, 이는 분류식 관거 비율이 높은 배수구역의 특성 때문인 것으로 추정된다. 또한, 우기와 건기의 유입수질에 따른 제거효율 차이는 미미하였다.

The management of Combined Sewer Overflows(CSOs) and Separated Sewer Overflows(SSOs) discharge directly to the effluent system in an untreated state, which occurs when the facility capacity is exceeded due to heavy rain, has become an important issue in recent years as the heavy rain becomes a regular phenomenon. Despite the continuous development of filtration technology, targeting densely populated urban areas, CSOs are rarely applied. Therefore, this study was carried out to optimize the process to apply CSOs in a pilot-scale horizontal flow filtration system with a rope-type synthetic fiber. The research was carried out in two steps: a preliminary study using artificial samples and a field study using sewage. In the preliminary study using an artificial sample, head loss of the filter media itself was analyzed to be approximately 1.1cm, and the head loss was increased by approximately 0.1cm as the linear velocity was increased by 10m/hr. In addition, the SS removal efficiency was stable at 81.4%, the filtration duration was maintained for more than 6 hours, and the average recovery rate of 98% was obtained by air backwashing only. In the on-site evaluation using sewage, the filtration duration was approximately 2 hours and the average removal efficiency of 83.9% was obtained when belt screen (over 450 mesh) was applied as a pre-treatment process to prevent the premature clogging of filter media. To apply the filtration process to CSOs and SSOs, it was concluded that the combination with the pre-treatment process was important to reinforce the hydraulic dimension for the stable maintain of operation period, rather than efficiency. Compared to the dry season, the quality of incoming sewage was lower in the rainy season, which was attributed to the characteristics of the drainage area with higher sanitary sewerage. In addition, the difference in removal efficiency according to the influent quality of the wet season and dry season was small.

키워드

참고문헌

  1. Vladimir Novotny, Harvey Olem, Water Quality-Prevention, Identification, and Management of Diffuse Pollution, New York : Van Nostrand Reinhold, pp. 439-443, 1994.
  2. Kim Sung Won, Kim Kyung Moon, Jeon Je Chan, Kwon Koo Ho, Min Kyung Sok, "An analysis study on pollutant loads of combined sewer overflows in urban areas", Proc. of Korean Society of Civil Engineers 2012 Convention, pp. 2782-2786, October, 2012.
  3. National Institute of Environmental Research, An Effect Analysis of Rainfall Runoff on Embayment Water Quality in the Daecheong Lake(II), p. 6, 2010.
  4. Song Mi Young, A Study on the Occurrence Characteristic of Combined Sewer Overflows(CSOs) in Urban Area, Thesis of engineering master's degree, University of Seoul, June, 2014.
  5. Ki-Woong Bang, Jun-Ho Lee, Runoff Characterization of the Combined Sewer Overflows at Yudeung Stream in Daejeon, Journal of Korean Society of Urban Environment, vol. 4, no. 2, pp. 1-14, 2004.
  6. Chang-Soo Song, Seung-Hoon Ahn, Characteristics of Flowrate and Water Quality in Combined and Separate Sewer System, Journal of Green Industrial Research, Honam Univ., vol. 17, no. 1, pp. 39-48, June, 2011.
  7. Ministry of Environment, 2015 Sewage Statistics, Available From: http://www.me.go.kr (accessed 2017. 10.07)
  8. Ki Soo Park , Jing Cheng, Young Chul Kim, Treatment Study of the Turbid Water by High-Speed Synthetic Fiber Filter System, Journal of Korean Society on Water Environment, vol. 31, no. 3, pp. 262-271, May, 2015. DOI: https://doi.org/10.15681/KSWE.2015.31.3.262