• 제목/요약/키워드: Experimental wetland

검색결과 51건 처리시간 0.026초

인공습지 조성 후 습지미생물활성도 변화에 관한 연구 (Change of Wetland Microbial Activities after Creation of Constructed Wetlands)

  • 이자연;김보라;박소영;성기준
    • 한국환경과학회지
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    • 제19권1호
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    • pp.17-26
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    • 2010
  • To understand the initial changes in the microbial activities of wetland soil after construction, dehydrogenase activity (DHA) and denitrification potential (DNP) of soil from 1 natural wetland and 2 newly constructed wetlands were monitored. Soil samples were collected from the Daepyung marsh as a natural wetland, a treatment wetland in the West Nakdong River, and an experimental wetland in the Pukyong National University, Busan. The results showed that the DHA of the natural wetland soil was 6.1 times higher than that of the experimental wetland and similar to that of the treatment wetland 6 months after wetland construction (fall). Few differences were observed in the DNP between the soil samples from the natural wetland and 2 constructed wetlands four months after wetland construction (summer). However, 6 months after the construction (fall), the DNP of the soil samples from the natural wetland was 12.9 times and 1.8 times higher than that of the experimental wetland and the treatment wetland, respectively. These results suggested that the presence of organic matter as a carbon source in the wetland soil affects the DHA of wetland soil. Seasonal variation of wetland environment, acclimation time under anaerobic or anoxic wetland conditions, and the presence of carbon source also affect the DNP of the wetland soil. The results imply that the newly constructed wetland requires some period of time for having the better contaminant removal performance through biogeochemical processes. Therefore, those microbial activities and related indicators could be considered for wetland management such as operation and performance monitoring of wetlands.

습지 생태 체험 학습이 초등학생의 환경 친화적 태도에 미치는 영향 (Effects of the Wetland Field Trip on the Pro-Environmental Attitudes of Elementary School Students)

  • 김승현;홍승호
    • 한국환경교육학회지:환경교육
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    • 제23권2호
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    • pp.32-45
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    • 2010
  • The purpose of the present study is to develop ecological experience learning program for the wetland so that elementary school students can recognize the significance and values of wetland and have the attitudes to protect it through their ecological experience learning, and investigate changes in elementary school students' perception for wetland. The experimental class was composed of 26 elementary school students and took the ecological experience learning. The comparison class was also composed of 26 students who took theoretical learning for wetland. It was found that knowledge and attitudes for wetland of the experimental class were significantly high not only in the knowledge area but also in the affective area than those of the comparison class. And it was found that interest and curiosity into wetland were elevated also in the results of the qualitative evaluation, suggesting that we could get the effect of ecological experience learning. Therefore, it is thought that above all, more experience learning programs for wetland are needed to develop for elementary school students' right view of nature and minds to love it by continuously finding and providing materials of experience learning like those of this research in the future.

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우포늪 체험 학습을 위한 습지 생태 지도 프로그램 개발 및 적용 (The Development and Application of Wetland Ecology Map Program for the Study through Experience at Upo Swamp)

  • 양은주;김기대
    • 한국환경교육학회지:환경교육
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    • 제23권2호
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    • pp.97-112
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    • 2010
  • The study aims to comprehend the effect of the wetland ecology education on the elementary school students' changes of recognition about wetland through the wetland ecology map program. In this study, the literary research, the experimental research and the survey methods were operated. Through the literary research, the environmental factors were extracted, and the writing item of ecology map was reconstructed based on the literary research, so the experimental research was operated with the wetland ecology map program. Through four areas of test items such as the information and knowledge, values and attitudes, development and conservation, behavior and participation, and the analysis of children's study results, the effect of the wetland ecology map program on changes of recognition about wetland was verified quantitatively and qualitatively. Wetland ecology map program would be able to be an educational approach which can achieve the 'personalization of environment' setting up predictable environmental improvement goals and satisfying the needs of spatial information of the appropriate regions from the holistic perspective that students themselves plan and participate beyond a one-time experience program. Production of ecological map through continuous monitoring is expected to improve the possibility of subjective environmental actions by operating self-directed learning. Based on the conclusion of this study, we would suggest the following. For wetland ecology map program to be supplemented and utilized, the basic education of wetland should be organized in regular school curriculum, ecology map program including various teaching learning methods be prepared actively, and in future studies, studies of ecosystem-wide wetland ecology map program including animals like birds and fish are necessary.

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생활오수 처리를 위한 인공습지의 처리수 수질 추정식에 관한 연구 (Study on the Estimation Equation of Effluent Concentration from Constructed Wetland for Domestic Wastewater Treatment)

  • 윤춘경;권순국;전지흥
    • 한국물환경학회지
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    • 제16권4호
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    • pp.491-499
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    • 2000
  • Effluent concentration estimation equations for treatment wetland were reviewed with 3 -year experimental data. Four equations from USEPA, WPCF, Kadlec and Knight, and this study were applied to the over 100 data points of 1996 to 1999 study at the pilot plant in Konkuk University. The system was a subsurface flow type and consisted of 60cm depth of sand and reeds, and it worked continuously including winter with domestic sewage from school building. Generally, all the equations demonstrated reasonable agreement with experimental data and they could be used for design process if selected carefully. Among them, the equation from this study showed the best fit for the data. The reason might be not only the equation was derived from the experimental data, but also it included plant coverage parameter in the equation while others did not Plant coverage was proved to be an important parameter in the prediction of the treatment wetland system, and its inclusion in the estimation equation could improve the accuracy. Although existing equations could be used in the wetland design, pilot plant experiment for the anticipated condition and subsequent equation development can provide more reliable equation. It takes time to obtain meaningful data from wetland system. Therefore, timely onset of well organized study is recommended before large scale application of treatment wetland system to either point or nonpoint source pollution abatement.

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습지의 수환경과 영양물질에 미치는 침수식물의 영향 (Effects of Submerged Plants on Water Environment and Nutrient Reduction in a Wetland)

  • 이용민;이석모;성기준
    • 한국물환경학회지
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    • 제26권1호
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    • pp.19-27
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    • 2010
  • Submerged plants whose most of vegetative mass are below the water surface can have great effects on wetland biogeochemistry and water purification through their photosynthesis and nutrient uptake processes. In this study, change of dissolved oxygen concentration and pH as well as nutrient removal capacity of the submerged plant dominant wetland were investigated using wetland mesocosm experiments. Obvious periodic DO and pH fluctuation was observed due to photosynthetic activities of the submerged plants. It implies that the submerged plants can provide periodic or sequential changes of oxic and anoxic conditions that affect nitrification and denitrification processes and contribute permanent nitrogen removal in the wetland system. The pH changes in the wetland mesocosm suggested that submerged plant could also play an important role as a temporary $CO_2$ storage. Higher nutrient removal efficiency was observed in the submerged plant dominant wetland mesocosm. The removal efficiencies under experimental conditions were 38.89, 84.70, 91.21, 70.76, 75.30% of TN, DIN, $NH_4-N$, TP, $PO_4-P$ in the wetland mesocosm, while those were 26.11, 57.34, 63.87, 28.19, 55.15% in the control treatment, respectively.

기준습지 토양특성을 활용한 인공습지의 토양발달 평가 (Assessment of the Wetland Soil Development in Constructed Wetlands using the Soil Properties of a Reference Wetland)

  • 이자연;강대석;성기준
    • 한국습지학회지
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    • 제12권1호
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    • pp.1-14
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    • 2010
  • 인공습지 토양의 변화 특성을 인공습지의 성공 여부와 습지의 기능 평가에 활용할 수 있을 지 알아보고자 인공습지 조성 후 토양의 변화를 기준습지 토양의 변화특성과 비교하였다. 본 연구에서는 기준습지로 자연습지 1곳과 오염물질 유입 특성이 다른 인공습지 2곳(처리습지, 실험습지)을 선정하여 주요 토양 특성의 변화를 조사하였다. 습지토양의 침수조건에 따른 물리화학적 특성변화 및 유기물 축적정도를 비교하기 위하여 토성, 함수율, pH, CEC 및 유기물함량을 측정하였으며, 습지의 영양물질의 축적 정도를 비교하기 위하여 총질소와 유효인산의 농도변화를 분석하였다. 토성의 경우 전체적으로 자연습지에서는 점토의 함량이, 인공습지에서는 모래의 함량이 많은 것으로 나타나 자연습지와 인공습지의 토성은 큰 차이를 보였다. 그러나 시간이 지나면서 인공습지 토양의 실트와 점토 함량이 점차 증가하였다. 함수율과 유기물함량의 경우 여름철과 가을철 모두 자연습지가 인공습지보다 높았다. 토양의 pH는 자연습지가 인공습지에 비하여 낮았으며, 인공습지의 경우에도 습지 조성 후 중성으로 변화하였다가 다시 pH가 낮아지는 것을 관찰할 수 있었다. CEC, 총질소, 유효인산의 농도는 외부의 유기물질이나 오염물질 유입과 관련 있는 것으로 판단되나, 오랜 기간 동안 영양물질을 보유한 자연습지에서 인공습지보다 모든 항목이 높게 나타났다. 실험습지의 경우 조성과정에서 오염도가 높은 표토와 낮은 심토가 섞여 유기물과 영양물질의 농도가 감소하였는데, 습지 조성과정에서 나타나는 토양 특성변화도 습지의 생지화학적 기능이나 습지 토양 발달에 영향을 미칠 수 있을 것이라 판단된다. 이 연구는 인공습지 토양의 물리적 특성변화와 유기물 및 영양물질 보유량 변화 등과 같은 습지토양의 발달특성을 활용하여 인공습지 조성의 성공 여부나 인공습지의 기능 평가에 활용할 수 있음을 보여주었으며, 이를 위하여 자연습지와 같은 기준습지의 역할이 중요함을 제시하였다.

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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하천습지의 식생학적 자연도 평가 (Assessment of Degree of Naturalness of Vegetation on the Riverine Wetland)

  • 전승훈
    • 환경영향평가
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    • 제20권1호
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    • pp.1-11
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    • 2011
  • This study was carried out to suggest the baseline data necessary for vegetation restoration at riverine wetland within stream corridor. We used the prevalence index for wetland assessment by applying the method of weighted averages with index values based on five hydrophyte indicator status as defined by estimated probability occurred in wetland. We selected near nature and urbanized reach of Gap and Yanghwa streams as experimental site. Although two sites have some different disturbance and characteristics of watershed, they showed that similarity of vegetation community including three dominant species - Salix koreensis, Phragmites communis, Miscanthus sacchariflorus - was very high. But in case of Yanghwa stream, various kinds of emergent plants along wetted condition were distinctly occurred, resulted from difference of hydrological regime and substrate, etc. Degree of naturalness of vegetation at the sampled areas indicated that near nature area of Gap stream and all area of Yanghwa stream were fitted as riverine wetland, while urbanized area of Gap stream has changed into upland condition. In conclusion assessment system using prevalence index would be considered an effective method for evaluating of natural states of riverine wetland, but further integrated consideration of physical, hydrological, and biological factors of stream process, and also with considering the difference between those qualitative data of vegetation community.

오염하천 수질개선을 위한 Hybrid형 인공습지의 적용 (Application of Hybrid Constructed Wetland System for Stream Water Quality Improvement)

  • 김승준;최용수;배우근
    • 한국물환경학회지
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    • 제22권2호
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    • pp.209-214
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    • 2006
  • The purpose of this study is to improve the stream water quality by the experimental hybrid constructed wetland system. It consisted of the water layer, sand bed planted reeds, irises and roses, gravel bed, yellow-soil media bed and a flow shifter (FS) which can reverse top and bottom flow in the middle of the wetland. The organic compounds and nitrogen removal efficiencies varied with the seasons, namely temperature change. In summer, the mean efficiencies of COD and TN in the outflow from this wetland system were 63.4 and 48.0% and shown the highest, respectively, whereas, the suspended solids and phosphorus removal efficiencies seemed to be less affected by temperature. As a result of inspecting the decreasing trend of pollutants, nitrification-denitrification in the wetland was the major removal mechanism for nitrogen, the nitrogen reduction was especially enhanced by the application of a FS in the wetland, and phosphorus reduction was mainly occurred as a consequence of adsorption of the yellow-soil media.