• 제목/요약/키워드: Non-point source pollution load

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WQV 기반 비점오염저감시설의 강우유출수 처리비 경험공식의 개선 (The Improvement on the Empirical Formula of Stormwater Captured Ratio for Water Quality Volume Based Non-Point Pollutants Water Quality Control Basins)

  • 최대규;박무종;박배경;김상단
    • 한국물환경학회지
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    • 제30권1호
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    • pp.87-94
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    • 2014
  • According to the technical guideline of water pollutant load management, the rainfall captured ratio which can be estimated by the empirical formula is an important element to estimate reduction loads of non-point pollutants water quality control basin. In this study, the rainfall captured ratio is altered to stormwater captured ratio considering its meaning in the technical guideline of water pollutant load management, and the new empircal formula of stormwater captured ratio is suggested. In order to do this, we calculate stormwater captured ratio by using the hourly rainfall data of seven urban weather stations (Busan, Daegu, Daejeon, Gangreung, Seoul, Gwangju, and Jeju) for 43 years. The regression coefficients of the existed empirical formula cannot reflect the catchment properties at all, because they are fixed values regardless of regions. However the empirical formula of stormwater captured ratio has flexible regression coefficients by runoff coefficient(C), so it is allowed to consider the characteristics of runoff in catchment. It is expected that reduction loads of storage based water quality control basin can be more reasonably estimated than before.

산업단지 비점오염원의 유출특성(II): C산업단지의 강우사상별 유출특성을 중심으로 (The Runoff Characteristics of Non-point Pollution Sources in Industrial Complex(II): Focusing on the Outflow Characteristics of the C Industrial Complex by Rainfall Event)

  • 우제석;신현곤
    • 유기물자원화
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    • 제30권1호
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    • pp.41-47
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    • 2022
  • 본 연구는 강우시 산업단지에서 발생하는 비점오염원 유출 특성을 평가하여 비점오염원 부하량 및 원단위 산정을 위한 기초자료로 활용하기 위하여 C 산업단지에 대하여 강우유출수 수질모니터링을 수행하였다. 강우 사상별 유출량에 따른 EMC 산정 결과, 1차 강우시 BOD, CODMn, SS, T-N, T-P의 EMCs 범위는 각각 1.32~48.76, 3.32~43.75, 2.89~199.43, 2.76~8.93, 0.08~068 mg/L로 나타났으며, 2차 강우시는 각각 0.5~2.9, 2.71~7.13, 2.82~174.94, 1.33~4.03, 0.01~1.28 mg/L로 나타났다. 누적 유출량과 누적 오염부하량 비율 산정 결과, 강우 초기 유출량이 적은 시간에는 대부분 오염부하량이 강우 유출량보다 적지만 시간이 지남에 따라 강우 누적 유출량과 누적 오염부하량의 비가 1보다 커지면서 초기세척 현상이 일어났다.

식생밭두렁과 실트펜스를 이용한 밭 비점오염 저감효과 평가 (Evaluation for Non-Point Sources Reduction Effect by Vegetated Ridge and Silt Fence)

  • 김동현;김상민
    • 한국농공학회논문집
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    • 제57권5호
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    • pp.129-137
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    • 2015
  • The objective of this study was to test the non-point source pollution (NPS) control by the vegetated ridge and silt fence through field monitoring. The experiment plots were established with three sizes which are 5 m width by 22 m length with 8 %, 3 % slope and 15m width by 15 m length with 6 % slope. Flumes with the floating type stage gages were installed at the outlet of each plot to monitor the runoff. For a rainfall monitoring, tipping bucket rain gage was installed within the experiment site. Water quality samples were monitored during the heavy rainfall occurred. The amount of rainfall from 4 monitored events ranged from 27.6 mm to 130 mm. The runoff reduction rate could vary depending on slope, soil, crop growth condition, rainfall amount, rainfall intensity, antecedent moisture condition, and many other factors. The runoff from vegetated ridge and silt fence treatment plots was 24.05 % and -8.28 % lower than that from control plot, respectively. The monitoring results showed that the average pollution loads reduced by vegetated ridge compared to control were BOD 36.62~53.60 %, SS 40.41~73.71 %, COD 39.34~56.41 %, DOC 49.08~53.67 %, TN 26.74~67.23 %, and TP 52.72~91.80 %; by silt fence compared to control were SS 41.73 %, COD 1.93 %, and TN 2.38 %. The paired t-test result indicated that the vegetated ridge and silt fence were statistically significant effect in SS load reduction, with a 5 % significant level. Monitored results indicated that vegetated ridge and silt fence were both effective to reduce the pollutant from the field surface runoff.

탐진강의 총량규제를 위한 오염원별 수계${cdot}$행정구역 허용부하량과 삭감부하량 할당에 관한 연구 (Study on Allocation of Pollution Discharges by Watersheds and Administrative Regions with Pollution Sources for the TMDL (Total Maximum Daily Load) in Tamjin River)

  • 황금록;황대호;백도현;이홍근
    • 한국환경보건학회지
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    • 제30권5호
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    • pp.449-454
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    • 2004
  • This study is to calculate Allocation of Pollution Discharges by administrative region for the TMDL (Total Maximum Daily Load) on Tamjin River. TMDL has the water quality target and value ($BOD_5$, 1 ppm) and is calculated by the QUAL2E model. The expected TMDL for Tamjin River is 1,532,360 kg/day. The calculation showed that the main pollutants are due to the non-point sources in Tamjin River and the aqua-farms are another important sources near the bay. And sources from population and livestock should be reduced, especially aqua-farm source should be managed and eliminated first which is over 14,000 ton/day.

황구지천 유역의 오염부하 특성 및 지류 영향 평가 (Evaluation on Pollution Load Characteristics and Influence of Tributaries in the Hwangguji Stream)

  • 임수진;임병란;이한샘;강주형;안태웅;신현상
    • 한국물환경학회지
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    • 제37권4호
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    • pp.249-262
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    • 2021
  • This study investigated the pollution characteristics of the main pollution zone in the Hwangguji watershed and the influence of the tributary on the main stream. The characteristics of the main pollution zone, including, the water quality index (WQI), stream rating, load duration curve (LDC), delivery load density (DLD), and contribution of the tributary to the mainstream, were evaluated by time-series visual heatmap. The WQI of the mainstream of Hwangguji was lowered to the poor (IV) level from the inflow point of Suwon stream (SW) and the LDC excess rate in the T-P was higher than that of BOD5, especially for the wet season, suggesting that management of non-point source with T-P is preferred. The contribution (%) of the tributaries in the upstream section of Hwangguji watershed were BOD5 14.54%, TOC 15.67%, T-N 5.43%, and T-P 6.97%. In particular, the Suwon sewage treatment plant located in the mainstream showed a high contribution of BOD5 (64.40%) and T-P (53.54%), respectively, due to the high discharge rate (6.019 m3/sec). Meanwhile, Sammi and Gal stream have a large impact on the mainstream with high DLD and poor WQI. Thus, both streams were considered as pollution hot spots. These results provide useful basic data for preparing more effective water quality improvement and management plans in the watershed.

주암호 농촌 소유역 오염부하특성 (Pollutant Load Characteristics of a Rural Watershed of Juam Lake)

  • 한국헌;윤광식;정재운;윤석군;김영주
    • 한국농공학회논문집
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    • 제47권3호
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    • pp.77-86
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    • 2005
  • A monitoring study has been conducted to identify hydrologic conditions, water quality and nutrient loading characteristics of small watershed in Juam Lake. Climate data of the watershed were collected; flow rate was measured and water quality sampling was conducted at the watershed outlet for this study. Water quality data revealed that T-P concentrations meet I grade of lake water quality standard during non-storm period, but degraded up to II-III grade of lake water quality standard during storm period. The observed T-N concentrations always exceeded lake water quality standard. Therefore, T-P was identified as limiting chemical constituent for eutrophication of Juam Lake. T-P concentration of non-storm period also revealed that point source pollution is not serious in the watershed. Three year monitoring results showed that the observed T-N losses were $10.85\~18.88$ kg/ha and T-P losses were $0.028\~0.323$ kg/ha during six month (Mar. - Oct.), respectively. Major portion of runoff amount discharged by a few storm events a year and nutrient load showed apparent seasonal variation. Huge runoff amounts were generated by intense storms, which make application of water treatment or detention facilities ineffective. Monitoring results confirmed that water quality improvement by abating nonpoint source pollution in rural watershed of monsoon climate should be focused on source control. T-P losses from paddy field seemed to consist of significant amount of total load from study watershed. Therefore, management of drainage from paddy field is considered to be important for preventing algal blooming problem in Juam Lake.

소옥천 유역 비점오염 관리를 위한 취약성 지수분석 및 평가에 관한 연구 (A Study on the Analysis and Evaluation of Vulnerability Index for the Management of Nonpoint source in SoOak River Watershed)

  • 갈병석;문현생;홍선화;박천동;길한뉘;박재범
    • 한국지리정보학회지
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    • 제22권2호
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    • pp.107-120
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    • 2019
  • 본 연구에서는 대청호 상류에 위치한 소옥천을 대상으로 유역 및 오염원 특성을 조사하여 각 특성별 지수를 분석하고 취약지역을 분석하였다. 다양한 유역 및 오염원 자료를 지수화하기 위하여 표준화법인 Dimension Index법을 적용하였으며 선정된 지수와 수질모니터링 자료와의 상관성 분석을 통해 각 오염원별 영향인자를 도출하였다. 오염원별 영향인자에 미치는 특성들은 각각의 유의성에 차이가 있었으며 BOD와 COD는 인구밀도와 대지면적 비율, T-N은 CN과 논면적 비율, T-P는 인구밀도와 대지면적 비율에서 유의한 영향이 있는 것으로 검토되었다. 오염원별 영향인자로 판단된 지수를 이용하여 취약지역 우선순위를 산정하였고 배출부하량을 고려하여 산정된 취약지역과 순위를 비교 검토하였다. 배출부하량은 비점오염 대책 수립시 많이 사용되고 있으나 호소나 하천에 유입되는 유달부하량과 차이가 있어 수질 모니터링 자료와의 상관성 분석시 수질과 유의미한 값이 낮게 나타났다. 따라서 효율적인 비점오염 관리를 위해서는 취약지역 선정과 함께 수질과 상관성 높은 영향인자를 분석하고 해당 인자에 대한 관리가 우선으로 필요할 것으로 판단된다.

소양호 상류유역의 비점오염원 유출특성에 의한 원단위 산정 (Estimation of the Unit Load by the Outflow Characteristics of Non-Point Source Pollution in the Upstream Watershed of So-yang Lake)

  • 최한규;박수진;김진수
    • 산업기술연구
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    • 제25권B호
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    • pp.37-46
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    • 2005
  • From 2000 to 2004, the research was carried out at Naerin-cheon and Inbook-cheon, the upper streams of Soyang Lake, to study the relationship between precipitation and eutrophication-causing water pollutants, BOD, T-N and T-P. During the five years, the amount of flowing water was measured, and the water quantity was examined under different precipitation levels. From the observation, outflow patterns of the water pollutants and changes in the water quality factors at the time of rainfall were clarified. In addition, estimation of the unit load was made for each stream; for Naerin-cheon at the time of rainfall, we estimated BOD to be $1,112kg/km^2/year$, T-N to be $2,077kg/km^2/year$, and T-P to be $223kg/km^2/year$; for Inbook-cheon at the time of rainfall, we estimated BOD to be $1,229kg/km^2/year$, T-N to be $1,565kg/km^2/year$, and T-P to be $255kg/km^2/year$. For the time of no rainfall different estimation was made; for Naerin-cheon, we estimated BOD to be $2,403g/km^2/day$, T-N to be $5,004g/km^2/day$, and T-P to be $53g/km^2/day$; and for Inbook-cheon, we estimated BOD to be $1,550g/km^2/day$, T-N to be $2,283g/km^2/day$, and T-P to be $42g/km^2/day$.

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도로 비점오염 해석을 위한 ROADMOD개발 및 적용: 도로청소 효과 분석 (Development and Application of ROADMOD for Analysis of Non-point Source Pollutions from Road: Analysis of Removal Efficiency of Sediment in Road by Sweeping)

  • 강희만;전지홍
    • 한국물환경학회지
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    • 제37권2호
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    • pp.103-113
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    • 2021
  • In this study, an Excel-based model (ROADMOD) was developed to estimate pollutant loading from the road and evaluate BMPs. ROADMOD employs the Chezy-Manning equation and empirical expression for estimating surface runoff, and power function for pollutant buildup, and exponential function for pollutant washoff in SWMM. The results of model calibration for buildup and washoff using observed data revealed a good match between the simulation results and the observed data. The long-term surface runoff and sediment simulated by ROADMOD demonstrated a good match with those by SWMM with 2 ~ 14% of relative error. The shorter sweeping interval (within 8 days) remarkably decreased sediment loads from the road. It was found that the effect of reducing sediment loads from the road was greatly affected not only by the sweeping interval but also by sweeping on the day before a rainfall event. The 48% of removal efficiency of sediment loads from the road was achieved with 26 times of road sweeping per year when sweeping was performed on the day before the rainfall event. A 4-day sweeping interval showed similar removal efficiency (48%) with 96 times of sweeping per year. It is considered that the road sweeping on the day before a rainfall event could maximize the effect of reducing the non-point source pollution from the road with minimization of the number of road sweeping. So, the road sweeping on the day before a rainfall event can be considered as one of the useful and best management practices (BMPs) on road.

경험식과 요인분석을 통한 오염물질 유출 특성 연구 - 남한강 상·하류 수계 주요 하천을 중심으로 (A Study on the Discharged Characteristics of the Pollutants using the Empirical Equation and Factor Analysis - Case Study of the Upper and Lower Watershed of South Han River)

  • 박지형;손수민;류덕희
    • 한국물환경학회지
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    • 제27권6호
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    • pp.905-913
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    • 2011
  • This study was conducted to characterize the discharge feature of pollutant load from the upper and lower watershed influencing on the water quality of South Han River using the empirical equation and Factor Analysis. The results of regression analysis between flow rate and pollutant load were as follows. In the streams of the upper watershed of South Han river, $BOD_5$ and $COD_{Mn}$ were increased as the flow rate was increased. Also, steep increases in SS and TP were observed with positive correlation with the flow rate while change in TN was slightly shown. On the other hand, in the streams of the lower watershed of South Han river, $BOD_5$ was negatively correlated with the flow rate, being decreased with the increase in the flow rate. However, changes in $COD_{Mn}$, TN, SS, and TP showed a similar trend with those observed in the upper watershed. With Factor Analysis of the water quality and various components, it was appeared that the flow rate, SS, and TP were significantly correlated each other and they were indicated as the principal component influencing on water quality in the streams of the upper watershed. In contrast, $BOD_5$, $COD_{Mn}$ and TOC were significantly correlated each other and they were included as the principal pollution component of the streams in the lower watershed. From these results, it was conclusive that the upper watershed of South Han River was mainly affected by non point source pollutants while the lower watershed was influenced by point source pollutants from the developed areas.