한국환경농학회지 (Korean Journal of Environmental Agriculture)
- 제16권2호
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- Pages.170-174
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- 1997
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- 1225-3537(pISSN)
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- 2233-4173(eISSN)
인공습지에 의한 농공단지 폐수처리
Natural Treatment of Wastewater from Industrial Complex in Rural Area by Subsurface Flow Wetland System
- Yoon, Chun-Gyeong (Dept. of Agricultural Eng., Kon-Kuk University) ;
- Lim, Yoong-Ho (Dept. of Agricultural Chemistry, Kon-Kuk University) ;
- Kim, Hyung-Joong (Dept. of Agricultural Eng., Kon-Kuk University)
- 발행 : 1997.06.30
초록
자연정화방법 중 처리효과가 널리 알려진 인공습지를 농공단지 폐수처리에 적용할 수 있는지 가능성을 검토하기 위하여 천안시에 위치한 백석농공단지에 시작품을 설치하여 현장실험한 결과를 다음과 같이 요약할 수 있다. 처리조의 폐수유입량은 약
Constructed wetland system was studied to treat wastewater from industrial complex in rural area. Pilot plant at the Baeksuk Nongkong Danzi in Chunahn-City was used for field study. For the DO, the effluent concentration was higher than the influent concentration and it implies that natural reaeration supplies enough oxygen to the system. For the SS, the effluent concentration was consistently lower than the water quality standard even though the influent concentration varied significantly, which showed that SS was removed by the system effectively which is consist of soil and plants. For the BOD and COD, the average removal rate of them were 56% and 43%, respectively, therefore, the effluent concentration could not meet water quality standards when influent concentration was high. The removal rate of BOD and COD can be improved by supplemental treatment in addition to this system if necessary. For the T-N and T-P, the influent concentration of them were lower than the water quality standards than no further treatment was needed. Overall, the result showed that constructed wetland system is a feasible alternative for the treatment of wastewater from industrial complex in rural area. For actual application of this system, further study on design factors including loading rate, removal mechanism, and temperature effects is required to meet water quality standard consistently. Compared to existing systems, this system is quite competitive because it requires low capital cost, almost no energy and maintenance, and therefore, very cost effective.
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