DOI QR코드

DOI QR Code

매립지내 환경에너지단지의 무방류 시스템 구축방안

Construction Method of Zero Discharge System for Environmental Energy Complex in Landfill

  • 투고 : 2013.08.26
  • 심사 : 2013.10.10
  • 발행 : 2013.10.15

초록

A research was performed for zero discharge system of waste water which is produced from energy recovery process of waste and biomass. Leachate and all kinds of waste water should be separated and integrated into three categories in addition to converting existing leachate treatment facility into waste water treatment facility as well as introducing a management system of reverse osmosis membrane facility and bioreactor landfill. Following these conditions to better water treatment process, it was likely to produce over 3,000 tons of low-grade recycling water and 2,000 tons of high-grade recycling water per day when zero discharge system of waste water is applied starting from 2016. Economical efficiency was also surveyed in total treatment fee. Present system costs 18,129 million won per year, and suggested zero discharge system would cost 15,789 million won per year.

키워드

참고문헌

  1. Christo pher, A.B., Ronald, J.B., Craig, H.B., Morton, A.B., Tuncer, B.E. (2012) Deer Track Bioreactor Experiment: Field-Scale Evaluation of Municipal solid Waste Bioreactor Performance, Am. Soc. Civ. Eng., DOI: 10.1061/(ASCE)GT.1943- 5606.0000636. pp. 663-665.
  2. Chun, S.K. (2012) A Study on the Mass Balance Analysis of Non-Degradable Substanes for Bioreactor Landfill, Eviron. Eng. Res., 17(4), pp. 194-196. https://doi.org/10.4491/eer.2012.17.4.191
  3. Jeong, C.H., Sim, Y.S., Kim, S.J., Park, C.H. (2003) Effect of Mecellulose on the Nitrogen Removal of Low Organic Loadings in 2-stage Denitrification Process, Korean Soc. W. Wastew., 17(6), p. 840.
  4. Kjedsen, P., Barlaz, M.A., Rooker, A.P., Baun, A., Ledin, A., Christensen, T.H. (2002). Present and long term composition of MSW landfill leachate-A review, Crit. Rev. Env. Sci. Technol., 32(4), pp. 297-336. https://doi.org/10.1080/10643380290813462
  5. Kim, N .J., Chun, S.K. (2012) The Effect of Leachate and Organic Waste Water Injection on Decomposition Characteristics of Landfill Waste, J. Korea Soc. Waste Manag., 29(8), pp. 700-701.
  6. Lee, C .H., Kim, Y.H., Jeon, M.J., Lee, Y.S., Jang, A., Kim, H.S. (2011) Comparison of physical cleaning applied to chemical backwashing of wastewater reuse membrane system, Korean Soc. W. Wastew., 25(6), pp. 981-982.
  7. Ministr y of Environment(MOE) (2009) Measure for waste resources and biomass energy - plan of execution, pp. 19-45.
  8. Park, H.K., Hyun, I.H., Park, C.H. (1997) A Conceptual Zero - Discharage System for Water Quality Management of the Nak - Dong River, Korean Soc. W. Wastew., 11(2), pp. 45-47.
  9. Rhee, S.W., Ryu, D.S., Chun, S.K. (2012) Analysis of Leachate Characteristics and Landfill Gas Increasement by the Injection of Leachate in Sudokwon Landfill, J. Korea Soc. Waste Manag., 29(7), 634-641.
  10. Sudok won Landfill Site Management Corp.(SLC) (2011) Field Proofing Research on Leachate Recirculation in Management Type Landfill, pp. 41-47.
  11. Sudokwon Landfill Site Management Corp. (2012) Research Service on the Propriety of Extending Leachate Treatment Facility and on General Planning, pp. v 1-38.
  12. Sudokwon Landfill Site Management Corp. (2003) Research Service on the Propriety of Introducing Bioreactor Landfill. pp. 93-109.
  13. Sudokwon Landfill Site Management Corp. (2003) Research Service on the Propriety of Leachate Reuse(R/O) and on General Planning, p. 135.
  14. Sudokwon Landfill Site Management Corp. (2009) Research Service on the Propriety of SUDOKWON Waste Energy Town Construction Project, pp. 124-125, 139.
  15. Triant afillopoulos, A., Skordilis, A., Konstantakopoulos, K. (2001) Landfill behavior with leachate recirculation. In: Leachate and landfill gas. SARDINIA 2001 (II). pp. 115-121, Sardinia.