• 제목/요약/키워드: nonpoint source pollutant

검색결과 172건 처리시간 0.022초

국내 고속도로 강우 유출수의 EMCs 및 유출 부하량 산정 (Estimation of Pollutant EMCs and Loadings in Highway Runoff)

  • 김이형;고석오;이병식;김성길
    • 대한토목학회논문집
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    • 제26권2B호
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    • pp.225-231
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    • 2006
  • 최근 들어 오염총량관리제의 시행과 함께 비점오염원 관리의 중요성이 커지고 있다. 오염총량이란 하천수질의 개선을 위하여 도입하였으며 유역이란 개념을 도입하였다. 하천수계로 유입되는 오염물질 부하량은 점오염원 부하량, 비점오염 부하량 및 안전율의 합으로 산정이 되고 있다. 그러나 일반적으로 유역 및 강우 특성에 기인하여 유출되는 비점오염원의 특수성 때문에 안전율을 보통 10% 정도로 두고 있다. 이러한 불확실성은 다양한 요인에 기인하는데, 모니터링을 통한 기초자료의 부족이 가장 원인으로 보고되고 있다. 따라서 본 연구는 다양한 비점오염원 중에서 포장율이 높아 오염물질의 유출이 높은 고속도로 지역에서의 오염물질 유출 부하 원단위 산정을 위하여 가장 필수적으로 요구되는 오염물질의 EMC 및 유출부하량 산정을 위하여 수행되었다. 고속도로의 경우, 높은 포장율과 많은 자동차의 운행으로 인하여 건조기간 동안 오염물질들의 축적이 높은 지역이며, 강우시 집중적으로 인근 수계로 유입되기에 비점오염원 관리에서 매우 중요한 토지이용으로 고려되고 있다. 그러나 현재 국내에서는 비점오염원에 관한 기초 연구가 미흡하여 고속도로 등을 포함한 각종 토지이용에서의 비점오염원에 관한 기초 자료의 부족이 매우 심각한 상황이다. 본 연구를 수행하기 위하여 국내 5개의 고속도로 지점에서 모니터링이 수행되었으며, 각 지점별 자동 유량 및 강우량 측정계를 설치하여 자료를 수집하였다. 모니터링 자료는 고속도로에서의 비점오염물질 EMC 및 부하량 산정을 위하여 사용되었다. EMC에 관한 95% 신뢰구간을 살펴보면, TSS의 경우 45.52-125.76 mg/L, COD는 52.04-95.48 mg/L, TN은 1.77-4.48 mg/L 그리고 TP의 경우 0.29-0.54 mg/L의 범위로 나타났다. 부하량에 관한 95% 확신범위는 TSS가 $712.7-2,418.4mg/m^2$의 범위를 보였으며, COD의 경우 $684.1-1,779.6mg/m^2$의 범위로 나타났다.

Analysis of pollutant build-up model applied to various urban landuse

  • Choi, Jiyeon;Na, Eunhye;Ryu, Jichul;Kim, Jinsun;Kim, Hongtae;Shin, Dongsuk
    • Membrane and Water Treatment
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    • 제10권1호
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    • pp.13-17
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    • 2019
  • This study was conducted to analyse the application of pollutant build-up model on various urban landuses and to characterize pollutant build-up on urban areas as a source of stormwater runoff pollution. The monitored data from impervious surfaces in urban areas such as commercial (8 sites), industrial (10 sites), road (8 sites), residential (10 sites), recreational (5 sites) from 2008 to 2016 were used for the analysis of pollutant build-up model. Based on the results, the average runoff coefficients vary from 0.35 to 0.61. In all landuses except recreational landuse, the runoff coefficient is 0.5 or more, which is the highest in the commercial area. Commercial landuse where pollutants occur at the highest EMC in all landuse, and it is considered that NPS management is necessary compared with other landuses. The maximum build-up load for organic matter (BOD) was highest in the commercial area ($4.59g/m^2$), and for particular matter (TSS) in the road area ($5.90g/m^2$) while for nutrient (TN and TP) in the residential area ($0.40g/m^2$, $0.14g/m^2$). The rate constants ranged from 0.1 to 1.3 1/day depending on landuse and pollutant parameters, which means that pollutant accumulation occurs between 1 and 10 days during dry day. It is clear that these build-up curves can generally be classified based on landuse. Antecedent dry day (ADD) is a suitable and reasonable variable for developing pollutant build-up functions. The pollutant build-up curves for different landuse shows that these build-up curves can be generally categorized based on landuse.

원단위법에 의한 비점오염부하량 산정 시 토지피복 특성을 반영하는 고해상도 항공영상의 활용방안 (Application of the High Resolution Aerial Images to Estimate Nonpoint Pollution Loads in the Unit Load Approach)

  • 이범연;이창희;이수웅;하도
    • 환경영향평가
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    • 제18권5호
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    • pp.281-291
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    • 2009
  • In Total Water Pollutant Load Management System of Korea, unit load approach based on land register data is currently used for the estimation of non-point pollutant load. However, a problem raised that land register data could not always reflect the actual land surface coverages which determine runoff characteristics of non-point pollution sources. As a way to overcome this, we tried to establish quantitative relationships between the aerial images (0.4m resolution) which reflect actual land surface coverages and the land registration maps according to the 19 major designated land-use categories in Kyeongan watershed. Analyses showed different relationships according to the land-use categories. Only a few land-use categories including forestry, road and river showed essentially identical and some categories such as orchard, parking lot and sport utility site showed no relationships at all between image data and land register data. Except for the two cases, all the other categories showed statistically significant linear relationships between image data and land register data. The analyses indicate that using high resolution aerial maps is a better way to estimate non-point pollutant load. If the aerial maps are not available, application of the linear relationships as conversion factors of land register data to image data could be an possible option to estimate non-point pollutant loads for the specific land-use categories in Kyeongan watershed.

GIS based Water-pollutant Buffering Zone Management

  • Kim, Kye-Hyun;Yoon, Chun-Joo
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2002년도 Proceedings of International Symposium on Remote Sensing
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    • pp.506-506
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    • 2002
  • S. Korean Government has accelerating its efforts to enhance the quality of the drinking water. The Ministry of Environment has declared the law of securing water-pollutant buffering zone to minimize the inflow of the point and nonpoint sources into the drinking water sources. As a first phase of installing nationa-wide water-pollutant buffering zone, approximately 300km buffering zone has been delineated along the South and North Han river, the major drinking water sources for the capital area of S. Korea, which has the population of more than 12 millions. The buffering zone has the width of 1,000 meter for the special protection area, and 500 meter for the remaining area from both ends of the river. The major works have been done in three stages. Firstly, the boundaries lines of the buffering zone was delineated on the digital topographic maps. Secondly, the maps were overlayed with the cadastral maps to identify individual land parcels, the street address of the major pollutant discharging facilities, and all different types of pollutants including livestocks. Thirdly, the field work has been done as a verification. Once the buffering zone was generated, all the information for the buffering gone were created or imported from other government agencies including official land price, details of the major manufacturing facilities discharging considerable amount of pollutants, major motels and resorts, not to mention of restaurants, etc. Also, major livestock houses were located to identify the path of the pollutant inflow to the drinking water source. Further works need to be continued such as purchasing private lands within the buffering zone and change the land use in the efforts to decrease the pollutant amount and to provide more environmentally friendly space. Also, high resolution satellite imagery should be utilized in the near future as a cost-effective data source to update all the landuse activities within buffering zone.

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SWAT 모형을 활용한 유황별 비점오염 저감 효율 분석 - 달천 유역을 대상으로 - (Analysis of Efficiency of Pollution Reduction Scenarios by Flow Regime Using SWAT Model - A case study for Dalcheon Basin -)

  • 김수홍;홍지영;박운지;김종건;임경재
    • 한국물환경학회지
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    • 제37권6호
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    • pp.469-482
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    • 2021
  • The recent climate change and urbanization have seen an increase in runoff and pollutant loads, and consequently significant negative water pollution. The characteristics of the pollutant loads vary among the different flow regime depending on their source and transport mechanism, However, pollutant load reduction based on flow regime perspectives has not been investigated thoroughly. Therefore, it is necessary to analyze the effects of concentration on pollutant load characteristics and reductions from each flow regime to develop efficient pollution management. As non-point pollutants continuously increase due to the increase in impervious area, efficient management is necessary. Therefore, in this study, 1) the characteristics of pollutant sources were analyzed at the Dalcheon Basin, 2) reduction of nonpoint pollution, and 3) reduction efficiency for flow regimes were analyzed. By analyzing the characteristics of the Dalcheon Basin, a reduction efficiency scenario for each pollutant source was constructed. The efficiency analysis showed 0.06% to 5.62% for the living scenario, 0.09 to 24.62% for the livestock scenario, 0.17% to 12.81% for the industry scenario, 9.45% to 38.45% for the land scenario, and 9.8% to 39.2% for the composite scenario. Therefore, various pollution reduction scenarios, taking into account the characteristics of pollutants and flow regime characteristics, can contribute to the development of efficient measurements to improve water quality at various flow regime perspectives in the Dalcheon Basin.

농업 소유역 격자단위 오염부하량 평가 (Assessment of Cell Based Pollutant Loadings in an Intensive Agricultural Watershed)

  • 강문성;조재필;전종안;박승우
    • 한국농공학회논문집
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    • 제51권5호
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    • pp.87-94
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    • 2009
  • The objectives of this paper were to estimate cell based pollutant loadings for total maximum daily load (TMDL) programs and to evaluate the applicability of the agricultural nonpoint source (AGNPS) model for an intensive agricultural watershed in Korea. The model was calibrated and validated at a watershed of 384.8 ha of drainage area using the observed data from 1996 through 2000 in terms of runoff, suspended solid, total nitrogen, and total phosphorus on a hourly basis. Analysis of spatial variations of pollutant loadings for rainfall frequencies of various intensities and durations were conducted. In addition, the validated model was applied to estimated the TMDL removal efficiency for best management practices (BMPs) scenarios which were selected by taking into account the pollutant characteristics of the study watershed. The model can help to understand the problems and to find solutions through landuse changes and BMPs. Thus, the method used for this study was able to identify TMDL quantitatively as well as qualitatively for various sources pollution that are spatially dispersed. Also it provides an assessment of the impact of BMPs on the water bodies studied, allowing the TMDL programs to be complemented more effectively.

농업용 저수지 상류유역의 비점원오염 유출부하량 산정 - 고성저수지를 대상으로 - (Dischatge Loads of Nonpoint Source Pollutant in the Upper Watershed of Inigation Reservoir - Case Study of the Goseong Reservoir -)

  • 김진호;한국헌;류종수;정구복;권순국
    • 한국물환경학회지
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    • 제23권3호
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    • pp.324-331
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    • 2007
  • This study was conducted to evaluate the influence of pollutant loads on the water quality in the Goseong reservoir from May 2005 to October 2006. Annual total runoff at the Goseong-cheon watershed was 968.0 mm in 2005, 382.6 mm in 2006, respectively. The mean concentration of BOD, COD and SS in the stream were 2.28, 6.03, 46.97 mg/L in rainy seasons and 0.95, 2.14, 6.05 mg/L in dry seasons at SWT C sub-watershed. Total-N concentrations ranged from 2.60 to 3.18 mg/L at SWT C sub-watershed, which was generally higher than the quality standard of agricultural water (1.0 mg/L). Total-P concentrations ranged from 0.044 to 0.130 mg/L at SWT C sub-watershed. Measured pollutant loads in the SWT C sub-watershed were 36.7 kg/day of BOD, 72.3 kg/day of T-N and 2.3 kg/day of T-P in 2005 at SWT C sub-watershed, 63.9 kg/day of BOD, 82.8 kg/day of T-N and 1.1 kg/day of T-P in 2006 at SWT C sub-watershed, respectively. In the analysis of the effluent characteristics for NPS pollutants, it appeared that the loading rates of effluent from SWT C watershed were, respectively, BOD 62.3%, T-N 69.6%, T-P 71.1%, SS 70.1% during the rainy season in 2006. The calculated T-N daily pollutant loadings by the unit loading factor method from each sub-watershed were much greater than observed, but the calculated T-P daily pollutant loadings much lesser than observed.

동적 EMC를 이용한 고속도로 초기우수 처리 기준 산정 (Determination of First Flush Criteria in Highway Stormwater Runoff using Dynamic EMCs)

  • 김이형;이은주;고석오;김성길;이병식;이주광;강희만
    • 한국물환경학회지
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    • 제22권2호
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    • pp.294-299
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    • 2006
  • The Ministry of Environment in Korea has introduced Total Pollution Load Management System (TPLMS) in major 4 large rivers to protect the water quality from possible pollutants. In order to successfully achieve the TPLMS, the nonpoint source should be controled by applying the best management practices in highly polluted areas. Of the various nonpoint sources, the highways are stormwater intensive landuses because of its high imperviousness and high pollutant mass emissions. The EMC (Event Mean Concentration) is an important parameter to correctly determine the pollutant mass loadings from nonpoint sources. However, it has wide ranges because of various reasons such as first flush phenomenon, rainfall and watershed characteristics. Even though the EMC is closely related to the first flush phenomenon, the relationship have not proven until present. Therefore, in this paper, the dynamic EMC method will be introduced to clearly make the relationship between EMC and first flush phenomenon. Also by applying the dynamic EMC method to monitored data, we found that the highly concentrated stormwater runoff was washed off within 20~50 minutes storm duration. The first flush criteria for economical treatment was also determined to 5~10 mm (mean=7.4 mm) as a cumulative rainfall.

비점오염모델 적용을 위한 우리나라 행정구역별 강수 중 질소농도 비교분석 (Comparative Analysis of Nitrogen Concentration of Rainfall in South Korea for Nonpoint Source Pollution Model Application)

  • 최동호;김민경;허승오;홍성창;최순군
    • 한국환경농학회지
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    • 제37권3호
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    • pp.189-196
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    • 2018
  • 본 연구에서는 비점오염 모델에 강우의 질소 농도를 현실적으로 반영하기 위하여 국내 문헌과 3년 동안 관측한 강우 질소 농도를 분석하여 1개시(서울시), 9개도(경기도, 강원도, 충청남/북도, 전북남/북도, 경상남/북도, 제주도) 6개 광역시(부산, 인천, 대전, 울산, 대구, 광주)의 강우시 $NO_3{^-}$, $NH_4{^+}$ 및 T-N의 대표 농도를 제시하였다. $NO_3{^-}$$NH_4{^+}$의 평균 농도는 각각 1.88 mg/L와 0.96 mg/L 였으며, T-N은 2.84 mg/L 였다. 이는 환경부에서 제시하고 있는 2015년 전국 $NO_3{^-}$$NH_4{^+}$의 평균 농도인 1.98 mg/L와 1.05 mg/L와 비슷한 것으로 나타나 본 연구에서 제시된 각 행정구역별 농도는 타당한 수치로 사료된다. 본 연구결과 행정구역별로 질소농도의 차이가 있는 것으로 나타나 해당지역에 적합한 질소농도의 적용이 필요한 것으로 나타났다. 따라서 비점오염 모델 적용시 다양한 구축자료(수문인자, 지형인자 및 영농활동 인자 등)와 더불어 모델 적용지역의 강우 특성을 적절히 반영하여 오염부하량을 추정하는데 활용이 가능할 것으로 판단된다.

Biodegradable Check Dam and Synthetic Polymer, its Experimental Evaluation for Turbidity Control of Agricultural Drainage Water

  • Kim, Minyoung;Kim, Seounghee;Kim, Jinoh;Lee, Sangbong;Kim, Youngjin;Cho, Yongho
    • 한국토양비료학회지
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    • 제46권6호
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    • pp.458-462
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    • 2013
  • A drainage ditch is normally a component of drainage networks in farming systems to remove surplus water, but at the same time, it may act as a major conduit of agricultural nonpoint source pollutions such as sediment, nitrogen, phosphorus, and so on. The hybrid turbidity reduction system using biodegradable check dam and synthetic polymer was developed in this study to manage pollutant discharge from agricultural farmlands during rainfall events and/or irrigation periods. The performance of this hybrid system was assessed using a laboratory open channel sized in 10m-length and 0.2m-width. Various check dams using agricultural byproducts (e.g., rice straw, rice husks, coconut fiber and a mixture of rice husks and coconut fiber) were tested and additional physical factors (e.g., channel slope, flowrate, PAM dosage, turbidity level, etc.) affecting on turbidity reduction were applied to assess their performance. A series of lab experiments clearly showed that the hybrid turbidity reduction system could play a significant role as a supplementary of Best Management Practice (BMP). Moreover, the findings of this study could facilitate to develop an advanced BMP for minimizing nonpoint source pollution from agricultural farmlands and ultimately to achieve the sustainable agriculture.