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Optimum Pre-treatment Method in Constructed Wetlands by Natural Purification Method for Treating Livestock Wastewater

자연정화공법에 의한 인공습지에서 효과적인 축산폐수처리를 위한 최적 전처리방법 구명

  • Park, Jong-Hwan (Division of Applied Life Science, GyeongSang National University) ;
  • Seo, Dong-Cheol (Department of Bio-Environmental Sciences, Sunchon National University) ;
  • Kim, Ah-Reum (Division of Applied Life Science, GyeongSang National University) ;
  • Kim, Sung-Hun (Division of Applied Life Science, GyeongSang National University) ;
  • Lee, Seong-Tea (Gyeongnam Agricultural Research and Extension Services) ;
  • Jeong, Tae-Uk (Busan Metropolitan City Institude of Health and Environment Research) ;
  • Choi, Jeong-Ho (Division of Research and Development, Korea Environment Corporation) ;
  • Lee, Sang-Won (Department of Pharmaceutical Engineering, Gyeongnam National University of Science and Technology) ;
  • Cho, Ju-Sik (Department of Bio-Environmental Sciences, Sunchon National University) ;
  • Kim, Hyun-Ook (Division of Environmental Engineering, University of Seoul) ;
  • Heo, Jong-Soo (Division of Applied Life Science, GyeongSang National University)
  • 박종환 (경상대학교 응용생명과학부) ;
  • 서동철 (순천대학교 생물환경학과) ;
  • 김아름 (경상대학교 응용생명과학부) ;
  • 김성헌 (경상대학교 응용생명과학부) ;
  • 이성태 (경상남도 농업기술원) ;
  • 정태욱 (부산광역시 보건환경연구원) ;
  • 최정호 (한국관리공단 연구개발본부) ;
  • 이상원 (경남과학기술대학교 제약공학과) ;
  • 조주식 (순천대학교 생물환경학과) ;
  • 김현욱 (서울시립대학교 환경공학부) ;
  • 허종수 (경상대학교 응용생명과학부)
  • Received : 2011.05.30
  • Accepted : 2011.06.20
  • Published : 2011.06.30

Abstract

In order to obtain optimum pre-treatment methods and improve T-N and T-P removal efficiencies, removal rates of pollutants in small-scale livestock wastewater treatment apparatus with water plant filtration bed or activated sludge tank were investigated. Based on the results from the optimum pre-treatment in small-scale livestock wastewater treatment apparatus, removal efficiencies of pollutants in livestock wastewater treatment plant with water plant filtration and activated sludge beds. The removal rates of COD, SS, T-N, and T-P in effluent were 83, 89, 63 and 87% in small-scale livestock wastewater treatment apparatus with water plant filtration bed, respectively. The removal rates of COD, SS, T-N, and T-P in effluent were 96, 95, 86 and 92% in small-scale livestock wastewater treatment apparatus with activated sludge tank, respectively. For increasing the COD, SS, T-N, and T-P removals in small-scale livestock wastewater treatment apparatus, the water plant filtration and activated sludge beds are recommended. In livestock wastewater treatment plant with water plant filtration ($1^{st}$ treatment) and activated sludge ($2^{nd}$ treatment) beds, the concentrations of COD, SS, T-N, and T-P in effluent were 39, 15, 42 and $1mg\;L^{-1}$, respectively. It was shown that the concentrations of COD, SS, T-N, and T-P met acceptable effluent quality standard for livestock wastewater. Based on the above results, the removal rates of COD, SS, T-N, and T-P in effluent were over 99.8, 99.9, 99.2, and 99.9% in livestock wastewater treatment plant, respectively.

자연정화공법에 의한 축산폐수처리장에서 효과적으로 축산폐수를 처리하기 위해 인공습지 축산폐수처리 시스템에 전처리방법으로 수생식물여과조와 활성슬러지조를 적용하여 최적 전처리방법을 조사하였다. 또한, 최적 전처리방법을 실제 현장 축산폐수처리장에 연계하여 시공한 후 전처리방법의 효율성과 안전성을 검토하였다. 수생식물여과조와 인공습지를 연계한 소형 축산폐수처리장치에서 최종방류수 중 COD, SS, T-N 및 T-P의 처리효율은 각각 83, 89, 63 및 87%이었다. 활성슬러지조와 자연정화공법을 연계한 소형 축산폐수처리장치에서 최종방류수 중 COD, SS, T-N 및 T-P의 처리효율은 각각 96, 95, 86 및 92%이었다. 수생식물여과조 및 활성슬러지조는 인공습지 축산폐수처리장의 전처리공법으로서 질소와 인 처리효율을 향상시킬 수 있어 고농도의 축산폐수를 안정적으로 처리하기 위해 필요할 것으로 판단된다. 최적 전처리방법을 연계한 실제 현장 축산폐수처리장에서 COD, SS, T-N 및 T-P 의 처리효율은 모든 조건에서 각각 99.8, 99.9, 99.2 및 99.9%으로 높은 처리효율을 보였다.

Keywords

References

  1. APHA, AWWA, WCF. 2005. Standard methods for the examination of water and wastewater, 17th Edition. American Public Health Association, Washington, DC.
  2. Huang, J., Jr.R.B. Reneau, and C. Hagedorn. 2000. Nitrogen removal in constructed wetlands employed to treat domestic wastewater. Wat. Res. 34:2582-2588. https://doi.org/10.1016/S0043-1354(00)00018-X
  3. Heo, J.S. 2007. Development of sewage treatment plant for a detached house in an agricultural village by natural purification method for water quality management of Nakdong River basin. Final report. Ministry of Agriculture and Forestry.
  4. Jo, I.S. 2003. Treatment of pollutants in environmentally friendly constructed wetland for sewage treatmentin longterm. Master Thesis. Gyeongsang National University, Korea.
  5. Kim, A.R., H.C. Kim, D.C. Seo, J.H. Park, S.H. Kim, S.T. Lee, T.U. Jeong, J.H. Choi, H. Kim, J.S. Cho, and J.S. Heo. 2011. Selection of optimum filter media in small-scale livestock wastewater treatment apparatus by natural purification method. Korean J. Soil Sci. Fert. 44:285-292. https://doi.org/10.7745/KJSSF.2011.44.2.285
  6. Kim, K.S. 2003. Comparison of physical and chemical characteristics between aerobic granular sludge and activated sludge. Kor. J. Tech. water. 11:45-52.
  7. Kim, B.H. 1996. A study on the nitrogen and phosphorus removal by electrosis with iron electrode in biological process. Doctoral Thesis, KyungHee Univestity, Seoul, Korea.
  8. Kim, J.T., Moon, K.H., and Kim, J.W. 2001. The standard method of water analysis. Shinkwang a publishing company. Korea.
  9. Lee, D.B., J.G. Kim, J.G. Kang, S.K. Kim, J.D. So, and K.S. Rhee. 1994. Purification of animal wastewater using a reedsand- filter system -I. Retention period and seasonal variation-. Kor. J. Environ. Agric. 13:231-239.
  10. Lee, Y.D. and H.H. Kim. 1999. A study on the advanced treatment of wastewater by plants. J. Environ. Sci. 8:75-81.
  11. Park, J.H. 2011. Treatment of livestock wastewater by natural purification mehod. Master Thesis. Gyeongsang National University, Korea.
  12. Park, J.H, D.C. Seo, A.R. Kim, S.H. Kim, S.T. Lee, T.U. Jeong, J.H. Choi, H. Kim, J.S. Cho, and J.S. Heo. 2011. Optimum configuration method and livestock wastewater loding for treating livestock wastewater in constructed wetlands by natural purification method. Korean J. Soil Sci. Fert. 44:278-284. https://doi.org/10.7745/KJSSF.2011.44.2.278
  13. Park, W.C. 1997. An effective means for livestock wastewater treatment. In 10th anniversary seminar of EMC foundation. Environmental Management Corporation.
  14. Seo, D.C. 2005. Development of treatment process of biological nitrogen and phosphorus in sewage treatment plant by natural purification system. Doctor Thesis. Gyeongsang National University of Education, Korea.
  15. Seo, D.C., B.I. Jang, I.S. Jo, S.C. Lim, H.J. Lee, J.S. Cho, H.C. Kim, and J.S. Heo. 2006a. Selection of optimum water plant in constructed wetland by natural purification method for municipal sewage treatment. Kor. J. Environ. Agric. 25:25-33. https://doi.org/10.5338/KJEA.2006.25.1.025
  16. Seo, D.C., B.J. Lee, S.H. Hwang, H.J. Lee, J.S. Cho, S.W. Lee, and H.C. Kim. 2006b. Treatment efficiency of existing forms of pollutants in sewage treatment plant by natural purification method. Kor. J. Environ. Agric. 25:129-137. https://doi.org/10.5338/KJEA.2006.25.2.129
  17. Yoon, C.G., Y.H. Lim, and H.J. Kim. 1997. Natural treatment of wastewater from industrial complex in rural area by subsurface flow wetland system. Kor. J. Environ. Agric. 16:170-174.

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