• 제목/요약/키워드: influence of pollutant

검색결과 189건 처리시간 0.026초

강우시 주택 및 공단지역의 비점오염원 유출특성 (Characteristics of Non-point Source Runoff in Housing and Industrial Area during Rainfall)

  • 김강석;박종석;홍현승;이경훈
    • 한국습지학회지
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    • 제14권4호
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    • pp.581-589
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    • 2012
  • 비점오염원은 유역 및 지역의 토지이용 형태별로 강우유출수의 유출특성이 다양하고, 강우시 지표면의 각종 오염물질들이 도시하천으로 유입되어 수질에 심각한 영향을 미치고 있다. 본 연구에서는 도시지역을 주택 및 공단구역으로 구분하여 강우유출수의 유출특성을 파악하고자 오염물질별 EMC를 산정하였다. 분석 결과 강우시 주택 및 공단지역의 비점오염원은 강우초기에 유출수의 농도가 급격히 증가한 후 서서히 감소하는 초기세척현상이 발생하였으며, 초기우수의 제어가 필요하였다. 향후 장기적인 강우사상 및 수질조사 자료의 축척, GIS를 이용한 토지이용형태, 지형 및 지질특성의 자료 축척 등 지속적인 연구가 필요할 것으로 판단된다.

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.

토지피복 특성에 따른 비점오염원 유출특성 평가 (Estimation of Runoff Characteristics of Non-point Pollutant Source by Land Cover Characteristics)

  • 이재운;이윤정;권헌각;윤종수;이춘식;천세억
    • 한국환경과학회지
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    • 제21권8호
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    • pp.977-988
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    • 2012
  • This study analyzed the characteristics of stormwater runoff by rainfall type in orchard areas and transportation areas for 2 years(2010~2011year). Effluents were monitored to calculate the Event Mean Concentrations(EMCs) and runoff loads of each pollutant. The pollutant EMCs by volume of stormwater runoff showed the ranges of BOD 0.9~13.6 mg/L, COD 13.7~45.2 mg/L, SS 4.1~236.4 mg/L, T-N 2.123~21.111 mg/L, T-P 0.495~2.214 mg/L in the orchard areas, and was calculated as BOD 2.3~22.5mg/L, COD 4.4~91.1 mg/L, SS 4.3~138.3 mg/L, T-N 0.700~13.500 mg/L, T-P 0.082~1.345 mg/L in the transportation areas. The correlation coefficient of determination in the orchard area was investigated in the order of Total Rainfall(0.81) > Total Runoff(0.76) > Rainfall Intensity(0.56) > Rainfall Duration(0.46) > Antecedent Dry Days(0.27). Also, in the case of the transportation area was investigated in the order of Total Rainfall (0.55) > Total Runoff(0.54) > Rainfall Intensity(0.53) > Rainfall Duration(0.24) > Antecedent Dry Days(0.14). As the result, comparing valuables relating to runoff of non-pollutant source between orchard areas and transportation areas, orchard area($R^2{\geq}0.5$ : X3, X4, X5) was investigated to have more influence of diverse independent valuables compared to the transportation area($R^2{\geq}0.5$ : X3, X4) and the difference of discharge influence factor by the land characteristics appeared apparently.

점오염원 유입이 형산강하류 수질변화에 미치는 영향 (Influence of the Point Source Inflow on the Water Quality Variation in the Downstream of Hyeongsan River)

  • 이창수
    • 한국환경과학회지
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    • 제17권10호
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    • pp.1075-1080
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    • 2008
  • The influence of the point source inflow on the water quality variation in the downstream of Hyeongsan River was investigated. As the results of seasonal variation, the pollutant concentrations of dry season were 1.5-4 times higher than those of wet season. The increase rate of $BOD_5$, $COD_{Mn}$, T-N, T-P due to point source were ranged to $8.1\sim42.6%$, $7.3\sim41.9%$ and $17.1\sim207%$ as the inflow of P1, P2 and P3, respectively. After P1, P2 and P3 inflow, the accumulated increase rate were 64.3%, 32.6%, 93.1% and 258.9% in $BOD_5$, $COD_{Mn}$, T-N, T-P, respectively. It was found that the influence of point source inflow on the water quality in the downstream of Hyeongsan River is severe.

확산모형에 의한 하구에서의 오염물질이동 예측(수공) (Prediction of Pollutant Transport by Dispersion Model on Estuary)

  • 박영욱;박상현;천만복;이봉훈;권순국
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2000년도 학술발표회 발표논문집
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    • pp.371-377
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    • 2000
  • Environmental impact on a land reclamation project, Hwaong tidal barrier was studied using the dispersion and advection model to predict the influence of polluted water discharged from freshwater reservior. The simulation results show that the distribution of concentration by influence of polluted water discharged during a tidal cycle appeared to be extinguished at atmost all points after two tidal cycle. Peak concentration near the sluice gate is found out to be higher during the spring tide than neap tide. Equi-concentration contour line appeared to distributed a longer according to line of sea dike in spring tide than neap tide. The reasons is because influence by currents of northwest direction is a stronger, compared to spring tide and neap tide in the flood tide.

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새만금 간척지구 담수호 건설에 따른 담수배출의 영향범위 예측 (Prediction of Influence of Polluted Water Discharged from Saemankeum Lake)

  • 김대근;서일원;백경오
    • 한국수자원학회논문집
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    • 제30권6호
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    • pp.649-659
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    • 1997
  • The influence of polluted water discharged from the Saemankeum Lake is predicted by using two-dimensional finite element model. The simulation results show that influence of the Polluted water to the northern part of the Kckunsan Islands is small during flood time. The reason is because lock gates are located in the south of the Kokunsan Islands so that tidal current directing north is blocked by these Islands. However, during the ebb time, the influence of the polluted water is extended to the whole southern part of the Kokunsan Islands. When the amount of ten percent of the total volume of polluted water is discharged from the Saemankeum Lake, equi-concentration contour line of one tenth of initial discharge concentration includes the inner area surrounded by Sinsi Island, Munyeo Island, Bian Island, and Daehang-Li. In general, peak concentration near the lock gates is found out to be higher during the spring tide than the neap tide.

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大氣汚染濃度에 관한 動的確率모델 (A Dynamic-Stochastic Model for Air Pollutant Concentration)

  • 김해경
    • 한국대기환경학회지
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    • 제7권3호
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    • pp.156-168
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    • 1991
  • The purpose of this paper is to develop a stochastic model for daily sulphur dioxide $(SO_2)$ concentrations prediction in urban area (Seoul). For this, the influence of the meteorological parameters on the $SO_2$ concentrations is investigated by a statistical analysis of the 24-hr averaged $SO_2$ levels of Seoul area during 1989 $\sim$ 1990. The annual fluctuations of the regression trend, periodicity and dependence of the daily concentration are also analyzed. Based on these, a nonlinear regression transfer function model for the prediction of daily $SO_2$ concentrations is derived. A statistical procedure for using the model to predict the concentration level is also proposed.

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강우강도와 토지이용을 고려한 비점오염물질 부하량 산정에 관한 연구 (Estimation of Pollutants Loading from Non-Point Sources Based on Rainfall Event and Land use Characteristics)

  • 이혜원;최남희;이용석;최정현
    • 대한환경공학회지
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    • 제33권8호
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    • pp.572-577
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    • 2011
  • 비점오염부하량 산정을 위해 사용되는 원단위는 쉽게 이용 가능하지만, 지역의 토지이용 특성과 강우강도의 시간적인 변이를 고려하지 못하는 단점이 있다. 본 연구에서는 간편하면서도 강우량에 따른 부하량 변화를 고려한 보다 정확한 비점부하량 산정방법을 개발 및 적용하였다. 경기도 경안천 유역에 위치한 두 개의 비점오염저감시설을 대상으로 2010년 6월부터 11월까지 모니터링을 수행하여 강우강도, 유출 특성, 오염부하 등에 관한 분석을 진행하였다. 비점오염원 유출수의 특성을 나타내는 유량가중평균농도(Event Mean Concentration; EMC)의 경우에는 도시 지역인 경기도 광주시 경안동이 산과 밭으로 이루어진 용인시 모현면에 비해 높거나 비슷한 값을 보였으나, TP (Total Phosphorus)의 경우 유역 내 농경지에 사용된 퇴비나 비료에 포함된 인의 영향으로 모현면이 경안동보다 더 높게 나타났다. 강우량과 오염물질 배출부하량과의 관계는 3차원 다항식에 의해 가장 잘 설명되었으며, 0.33~0.81 범위의 결정계수를 나타내고 있다. 산정된 유출율 및 부하량 함수의 기울기가 EMC 결과와 반대되는 경향을 보이는 것으로부터, 비점오염원은 토지이용 이외에도 지형, 토성, 수리 수문현상 등에 따라 배출특성이 달라짐을 알 수 있다. 따라서 비점오염물질의 유출 특성을 정확히 파악하기 위해서는 장기모니터링을 통한자료의 수집을 바탕으로 강우량에 따른 부하량 변화를 고려한 비점부하량 산정함수를 구하는 것이 필요하다.

수질오염총량관리제 시행에 따른 삽교호의 수질변화 예측 (Forecasting of changes in the water quality in Sapgyo-Lake in accordance with implementation of Total Water Pollutant Load Management System)

  • 김홍수;조병욱;박상현;이무규;김창기;최정호
    • 한국물환경학회지
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    • 제35권3호
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    • pp.209-223
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    • 2019
  • Broadly speaking, in order to analyze the water quality improvement effects of the implementation of the Total Water Pollutant Management System in the Sapgy-Lake waterways, a reference was made to the [Plans for implementation of the Total Maximum Daily Load(TMDL)] in 3 cities (Cheonan, Asan, Dangjin). The results of the investigation into the plans to reduce the pollutant load show in that region show that there are plans to reduce pollution for a total of 16 reduction facilities. As for the result of the computation of the reduction in the load, these measurements were computed at the Gokgyo-stream basin and Namwon-stream basin, with BOD and T-P at the Gokgyo-stream basin reduced by 13.9 % and 13.3 %, respectively, while BOD and T-P at the Namwon-stream were reduced by 3.7 % and 3.3 %, respectively. In this way, thus using the results of the water quality forecast of Sapgyo-Lake in measures for the improvement of water quality (in accordance with the implementation of the TMDL), and using the QUAL-MEV model and EFDC model, it is noted that BOD will be improved by 26.4 % from 6.1 mg/L to 4.5 mg/L 0.0 %, T-P by 36.7 % from 0.168 mg/L to 0.107 mg/L and TOC by 26.4 % from 7.7 mg/L to 5.6 mg/L. However, it is forecasted that the targeted standards for the medium influence area will not be achieved. Evidently, Gokgyo-stream and Namwon-stream have been implementing the Total Water Pollutant Management System for the BOD items since January 1, 2019, but the Sapgyo-stream and Muhan-stream were excluded from being designated as subject regions. As such, it is noted now that it is necessary to implement the TMDL for the entire Sapgyo-Lake water systems including Sapgyo-stream and Muhan-stream in order to improve the water quality of Sapgyo-Lake, and likewise the T-P should be designated as the substance subjected to management in addition to BOD.

청양-홍성간 도로에서의 강우 시 비점오염 유출특성 및 오염부하량 분석 (Runoff Characteristics and Non-point Source Pollution Loads from Cheongyang-Hongseong Road)

  • 이춘원;강선홍;안태웅;양주경
    • 상하수도학회지
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    • 제25권2호
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    • pp.265-274
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    • 2011
  • Nowadays, the importance of non-point source pollution treatment is being emphasized. Especially, the easy runoff characteristic of highly concentrated pollutants in the roads makes the circumstance more complicated due to impermeability of roads. When the pollutants flow into steam it could make water quality in stream worse and it also causes a bad influence in the aquatic ecosystem because the effluents of rainfall-runoff may contain indecomposable materials like oil and heavy metals. Therefore, we tried to figure out the property of non-point source pollution when it is raining and carried out an assessment for the property of runoff for non-point source pollution and EMC (Event Mean Concentrations) of the essential pollutants during this study. As the result of the study, the EMC was BOD 5.2~21.7 mg/L, COD 7.5~35.4 mg/L, TSS 71.5~466.1 mg/L, T-N 0.682~1.789 mg/L and T-P 0.174~0.378 mg/L, respectively. The decreasing rate of non-point pollutant in Chungyang-Hongsung road indicates the maximum decrease of 80% until 5 mm of rainfall based on SS concentration; by the rainy time within 20~30 minutes, the decreasing rate of SS concentration was shown as 88.0~97.6%. Therefore it was concluded that it seems to be possibly control non-point pollutants if we install equipments to treat non-point pollutants with holding capacity of 30 min. It is supposed that the result of this study could be used for non-point pollutants treatment of roads in Chungyang-Hongsung area. We also want to systematically study and consistently prepare the efficient management of runoff from non-point source pollution and pollutant loading because the characteristics of non-point source pollution runoff changes depending on different characteristics and situations of roads and rainfall.