A Study on the Advanced Treatment of Wastewater by Plants

식물을 이용한 오수의 고도처리에 관한 연구

  • 이용두 (제주대학교 환경공학과) ;
  • 김현희 (제주대학교 환경공학과)
  • Published : 1999.02.01

Abstract

In recent years increasing production and disposal of wastewater have caused an accelerated eutrophication of receiving waters. Therefore, in order to alleviate the detrimental impact of wastewater discharge, there is an increasing demand for removing the main nutrients, nitrogen and phosphorus, as well as the organic content of the waste water prior to disposal. This is effectively achieved by extended conventional treatment technology. However, the working expenses and energy requirements of such advanced treatment systems are rather high. So in a sparsely populated rural community is required development of wastewater treatment system combined with the regional characteristics. In this study, the systems are planted with Reeds and Amaryllis In A.C and estimated purification potential of system. The results obtained are as follows. BOD removal rate is 20% in the early stage, the last removal rate is 35% in A.C process and is 65% in Amaryllis+A.C process and is 50% in Reed+A.C process. T-N removal rate by Amaryllis is average 2.6g/$m^3$ㆍd, T-N removal rate by Reed is average 1.76g/$m^3$ㆍd. T-P removal rate by Amaryllis is average 0.27g/$m^3$ㆍd, T-P removal rate by Reed is average 0.25g/$m^3$ㆍd. BOD removal rate constant with retention time is 1.4494(1/d), T-N removal rate constant is 0.5428(1/d), T-P removal rate constant is 0.5287(1/d).

Keywords

References

  1. 用水と廢水 v.37 no.2 資源循環· 花卉植物を利用した生活排水の高度處理 尾崎保夫;尾崎秀子;阿部薰;雨谷惠夫
  2. 用水と廢水 v.38 no.12 有用植物を用いた生活排水の資源循環型淨化システムの開發 尾崎保夫;尾崎秀子;阿部薰;前田守弘
  3. Wat. Sci. Tech. v.19 no.10 Treatment of wastewater in the rhizosphere of wetland plants-The Root-zone Method Hans, Brix
  4. 用水と廢水 v.36 no.7 團地淨化槽處理水による花卉の水耕栽培と榮養鹽除去 平野浩二
  5. Research Journal WPCF v.63 no.3 An assessment of the root zone method of wastewater treatment Lucy M. Conhley;Richard I. Dick;Leonard. Lion
  6. 用水と廢水 v.35 no.9 植物の活用した資源循環型水質淨化技術の課題と展望 尾崎保夫;阿部薰
  7. Wat. Sci. Tec. v.29 no.4 Inventory of constructed wetlands in the united states Donald S. Brown;Sherwood C. Reed
  8. Wat. Env. Res. v.67 no.2 Subsurface flow wetlands-A performance evaluation Sherwood C. Reed;Donald Brown
  9. 大韓環境工學會誌 v.17 no.6 생이가래를 이용한 영양물질의 제거방안 연구 안윤주;공동수
  10. 한국환경과학회 1988년도 봄학술발표회 초록집 식물을 이용한 오수중의 영양염류 제거특성 이용두;김현희
  11. 수질오염공정시험법 동화기술 편집부
  12. Wat. Sci. Tech v.29 no.4 Functions of macrophytes in constructed wetlands Hans Brix
  13. Wat. Sci. Tech. v.30 no.8 Use of constructed wetlands in water pollution control ; Historical development, present status, and future perspectives Hans Brix
  14. Water Quality International no.4 Constructed wetlands in the USA Donald S Brown
  15. 한국환경농학회지 v.13 no.2 갈대砂床濾過法을 이용한 畜産廢水淨化 李德培;金鍾九;姜鍾國;金善寬;蘇在敦;李景洙
  16. Wat. Sci. Tech. v.30 no.8 Phosphorus uptake in florida marshes Robert H. Kadlee
  17. 環境技術 v.24 no.4 水生植物(マコモ)による水質淨化 江成敬次郞;鈴木淳
  18. Wat. Env. Res. v.32 no.3 Nitrogen removal in constructed wetlands treating nitrified meat processing effluent A.J. Van Oostrom
  19. Wat. Sci. Tech v.29 no.4 Denitrification in constructed wasterwater wetlands receiving high concentrations of nitrate A.J. van Oostrom;J.M.Russell