• 제목/요약/키워드: NADB

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비점오염원 제어를 위한 인공습지의 계절변화에 따른 처리효율 평가 (Seasonal Performance of Constructed Wetland for Nonpoint Source Pollution Control)

  • 함종화;한정윤;김형철;윤춘경
    • 생태와환경
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    • 제39권4호통권118호
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    • pp.471-480
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    • 2006
  • 비점오염원 제어를 위한 현장실험을 실시하였다. 연구시설은 인공습지와 유수지를 각각 4개씩 조성하였으며, 각각의 면적은 0.8 ha와 0.08 ha이고, 총 면적은 약 3.6 ha이다. 습지의 유입수는 충남 당진군의 석문담수호로 유입되는 당진천의 물을 펌핑하여 사용하였다. 습지의 수심은 웨어를 이용하여 생장기 (3월${\sim}$8월)과 동절기 (12월${\sim}$2월)에 각각 0.3 m와 0.5 m를 유지하였으며, 체류시간은 2${\sim}$5일이었다. TP를 제외한 대부분의 수질항목에서 ($BOD_5$, TSS, TN)생장기보다 동절기에 더 높은농도를 나타내는 것으로 나타났으며, $BOD_5$는 동절기 동안에 유출수의 농도가 유입수보다 더 높은 농도를 나타냈다. 동절기 동안에 제거된 부하량은 $BOD_5$, TSS는 감소한 반면에 TN과 TP는 감소하지 않고 생장기과 비슷한 값을 나타내었다. 다른 연구자에 의한 연구결과인 NADB (North American Treatment Wetland Database)와 비교해 보면 $BOD_5$, TSS, TN, TP모두 동일 유입부하량에 대해 대부분 NADB와 비슷하거나 약간 낮은 유출수의 농도를 나타내었다. 동절기 동안에 생장기와 비슷한 농도의 유출수를 얻기 위해서는 유입부하량은 생장기보다 감소시켜 적용하면 가능할 것으로 판단된다. 따라서 본 연구결과 인공습지는 동절기에도 안정적인 처리율을 얻을 수 있으며, 비점오염제어에 적합할 것으로 판단된다.

하천수 정화를 위한 시화인공습지의 초기 수질 정화능 (Early-Year Performance of the Sihwa Constructed Wetland for Stream Water Treatment)

  • 권순국;이경도;조영현;김성배;전기설
    • 한국농공학회논문집
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    • 제47권1호
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    • pp.93-102
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    • 2005
  • A prototype surface flow constructed wetland was built in the upstream area of Sihwa reclaimed tidal lands to improve the water quality of Lake Sihwa by treating severely polluted stream water. In this study, we monitored hydrology, macrophyte (Phragmites communis Trin,) growth, and water quality in the Banwol and Donghwa wetlands to evaluate their performance during the initial period after the completion of wetland construction, The average removal efficiency($\%$) in each wetland was relatively low compared with the performance data from the North America Wetland Treatment System Database (NADB), which mainly includes urban sewage-treatment wetlands. However, the average removal rates per unit area ($g/m^{2}/day$) were 0.72, 0.72 and 0.51 (BOD), 2,04, 2.46 and 0.70 (SS), 0.89, 0.43 and 1.09 (TN) and 0.02, 0.02 and 0.02 (TP) in the Banwol and Donghwa wetlands and NADB, respectively. The overall performance of the Banwol and Donghwa wetlands was within the expected range of the wetland system processes contributing the reduction of the pollutant load to Lake Sihwa during the initial period of wetland operation. Considering the low influent concentration, high hydraulic loading rate, and insufficient macrophyte growth since the wetland was constructed, better performance is expected if an improved operational scheme is adopted.

습지와 유수지를 이용한 하구담수호 수질개선 (Water Quality Improvement in Estuary using Wetland and Pond)

  • 함종화;윤춘경;문용현
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2002년도 학술발표회 발표논문집
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    • pp.377-380
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    • 2002
  • Wetland systems are widely accepted natural water purification systems around the world in nonpoint sources pollution control. In this study, the field experiment to reduce nonpoint source pollution loadings from agricultural drainage and polluted stream waters using wetland and pond system was performed. The removal rate of $BOD_5$, TSS, TN, TP, and $Chl-{\alpha}$ was 52%, 90%, 56%, 59%, and 81%, respectively. Performance of the experimental system was compared with existing data base (NADB), and it was within the range of general system performance. Overall the water quality improvement was apparent in wetland and pond system.

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생장기와 동절기의 인공습지 오수처리 성능 (Wetland Performance for Wastewater Treatment in Growing and Winter Seasons)

  • 윤춘경
    • 한국농공학회지
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    • 제41권4호
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    • pp.37-46
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    • 1999
  • Field experimnet of constructed wetland for rural wastewater treatment was performed from July 1998 to April 1999 including winter to examine the seasonal effect on the wetland performance. The system worked without freezing even under $-10^{\circ}C$ of air temperature as long as watewater was flowing. BOD removal rates varied in similar pattern as the air temperature, and winter performance was relatively lower than that in the growing season. However, removing performance during winter was still significant, and BOD removal rates were almost the the same as in the growing season. SS removal rate was relativelyless affected by temmperature, but lower decay rate during the winter can result in accumulation of the SS in the system, which releases constituents in the next spring and can affect whole system performance. The winter removal rates of nutrients like T-N and T-P were decreased about half compared to the growing season and low temperature. To maintain stabilized wetland performanced including winter time, supplying minimum heating for plants could be an alternative in field application. Experimental data was compared with NADB(North Americal Wetlands for Water Quality treatment database), and general performance of the system was within the reasonable range. The pollutant loading and effluent concentration of the experimented system were in high margin. Base on the experiment and databases, the required effluent water quality could be achieved if loading rate adjusted as ilulstrated in the database.

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인공습지를 이용한 하구담수호 유입하천수 수질개선 현장실험결과 분석 (Analysis of Field Experimental Data for Water Quality Improvement of Tributary Stream to Estuarine Reservoir Using Constructed Wetland System)

  • 함종화;윤춘경;구원석;김형철;신현범
    • 한국농공학회논문집
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    • 제46권5호
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    • pp.141-153
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    • 2004
  • Wetland system is widely accepted as one of natural water purification systems around the world for nonpoint sources pollution control. Constructed wetlands have become a popular technology for treating contaminated surface and waste water. In this study, the field experiment to reduce nonpoint source pollution loadings from polluted stream waters using wetland system was performed from June 2002 to March 2004. Four wetlands were used and the size of each one was 0.8ha. Water of Dangjin stream flowing into Seokmun estuarine reservoir was pumped into wetlands. Inflow and hydraulic residence time of the system was 500 $m^3$/day∼1,500 $m^3$/day, 2∼5 days, respectively. After 2 year operation, plant-coverage of the wetlauds was about 70% from bare soil surface at initial stage . Average water quality of the influent was $BOD_5$ 4.17 mg/L, TSS 18.45 mg/L, T-N 4.32 mg/L, and T-P 0.30 mg/L. The average removal rate of $BOD_5$, TSS, T-N and T-P during the study period was 5.6%, 46.6%, 45.7%, and 54.8%, respectively. Organic ($BOD_5$) removal rate was low and the reason might be low influent concentration. Wetland removal rate of T-P was about 10% higher than T-N. Performance of the experimental system was compared with existing data base (NADB), and it was within the range of general system performance. Overall, the wetland system was found to be adequate for treating polluted water stream with stable removal efficiency even during the winter period. Most of the nonpoint source pollutions from watershed are transported by streams or ditches, and they could be controled by constructed wetland system before entering the lake or reservoir.

Feasibility Study of Constructed Wetland System for Sewage Treatment in Rural Area

  • Ham, Jong-Hwa;Yoon, Chun-Gyeong
    • 한국환경농학회지
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    • 제19권5호
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    • pp.426-432
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    • 2000
  • Field experiment was performed from August 1996 to December 1999 to examine the feasibility of constructed wetland system for sewage treatment in rural areas. A pilot system was installed in Konkuk University and the effluent of septic tank for school building was used as an influent to the wetland treatment basin. The system was composed of sand and reed, and operated continuously including winter time. Average removal rate of about 70% was observed for BOD, COD, and SS, about 50% for T-P, and about 25% for T-N. The reason for poor T-N removal might be due to high loading rate and short retention time. The system demonstrated satisfactory effluent concentration and stable performance in growing season. And it also worked adequately in wintertime even below $10^{\circ}C$ without freezing, and removal was still significant. The amount removed in BOD, COD, and SS was almost the same as in the growing season, and the amount removed in nutrients was about half of the one in growing season. Overall performance of the experimental system was compared with existing data base (NADB, 1994), and it was within the range of general system performance. As study period increased, removal rates for BOD, COD, SS, and T-P were consistently maintained and even enhanced, but removal rate for T-N decreased slightly. Wetland system was thought to be a feasible alternative for sewage treatment in rural area considering its low cost and low maintenance requirement. However, the effluent of the experimental wetland system often exceeded current effluent water quality standards, therefore, further treatment could be required if the effluent should be discharged to public waters. Wetland system of interest locates in rural area and is a part of rural ecosystem, therefore, ultimate disposal of reclaimed sewage for agricultural purpose or subsequent land treatment might be available and further research in this matter is recommended.

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자유수면형 인공습지에 의한 저농도 고유량의 하천수질개선 효과 분석 (Analysis of Stream Water Quality Improvement Using Surface-flow Wetland)

  • 함종화;윤춘경;구원석;김형철;신현범
    • 한국농공학회논문집
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    • 제47권1호
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    • pp.79-91
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    • 2005
  • Wetland systems are widely accepted natural water purification systems around the world in nonpoint sources pollution control. Constructed wetlands have become a popular technology for treating contaminated surface and wastewater. In this study, the field experiment to reduce nonpoint source pollution loadings from polluted stream waters using wetland system was performed from June 2002 to March 2004, including winter performance using four newly constructed wetlands. The Dangjin stream water flowing into Seokmun estuarine lake was pumped into wetlands, and inflow and hydraulic residence time of the system was $500m^{3}{\~}1500m^{3}/day\;and\;2{\~}5$ days respectively. After 3 years operation plant-coverage was about $80~90\%$ from zero at initial stage even with no plantation. Average water quality of the influent in growing season was BOD_{5}\;3.96mg/L$, TSS 22.98 mg/L, T-N 3.29 mg/L, T-P 0.30 mg/L. The average removal rate of four wetlands for $BOD_{5},\;TSS,\;T-N\;and\;T-P$ in growing season was $24\%$, $62\%$, $54\%$, and $51\%$, respectively. And average water quality of the influent in winter season was $BOD_{5}$ 4.92 mg/L, TSS 12.47 mg/L, T-N 5.54 mg/L, and T-P 0.32 mg/L, respectively. The average removal rate of four wetlands for them was $-21\%$. $23\%$, $33\%$, and $53\%$, respectively. The reason of higher BOD_{5} effluent concentration in winter season might be that low temperature restrained microorganism activity and a organic body from the withered plant and algae was flown out. Except the result of $BOD_{5}$, the effectiveness of water quality improvement in winter season was satisfactory for treating polluted stream waters, and $BOD_{5}$ variation was within the range of background concentration. Performance of the experimental system was compared with existing data base (NADB), and it was within the range of general system performance. Overall, the wetland system was found to be satisfactory for NPS control such as improvement of polluted stream water.