• Title/Summary/Keyword: BOD pollutants load

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부하지속곡선을 이용한 유량 조건별 수질특성 평가 - 영본A 유역을 대상으로 - (Water Quality Characteristics Evaluation by Flow Conditions Using Load Duration Curve - in Youngbon A Watershed -)

  • 박진환;김갑순;정재운;황경섭;문명진;함상인;임병진
    • 환경영향평가
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    • 제22권4호
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    • pp.319-327
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    • 2013
  • This study was conducted to identify runoff characteristics of pollutants using flow duration curve(FDC) and load duration curve(LDC) in Youngbon A watershed during 2009~2011. A flow rate and pollutant load in the study watershed were estimated by equation of stage-discharge and discharge-loads rating curve. From these methods, BOD, T-N, and T-P have evaluated whether water quality standards would have attained. Results showed that BOD loads of about 50% plotted above the LDC, while T-N and T-P loads of about 50% plotted below the curve. It means that BOD of about 50% have exceeded the water quality criteria, while T-N and T-P of about 50% have complied with the water quality standards. Meanwhile, BOD, TN and T-P loads plotted above the LDC of low flows, implying that they were more affected by point pollution sources than nonpoint pollution sources in the study watershed.

Assessment of Pollution Levels in the Jangsungcheon Watershed Using Load Duration Curves and Analysis of the Causes

  • Cho, Sohyun;Bak, Jonghun;Lee, Yeong Jae;Kim, Kyunghyun;Jung, Kang Young
    • 한국환경과학회지
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    • 제28권10호
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    • pp.873-885
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    • 2019
  • In this study, a load duration curve was applied to the Jangseongcheon, one of the tributaries of the Yeongsan River, to assess whether the target water quality was achieved. In addition, pollution of the water body was investigated to develop and suggest the optimal management time with respect to polluted flow sections and monthly conditions. The average flow rates of sections JS1 and JS2 were $0.25m^3/s$ and $1.08m^3/s$, respectively. The BOD and T-P for water-quality standards at JS1 were rated at II, whereas the COD and TOC were rated at III, thus indicating a fair level of water quality. By contrast, the BOD at JS2 was rated at III, the T-P at IV, and the TOC at V, indicating poor water quality in this section. The load duration curve was plotted using the actual flow data measured in eight-day intervals for eight years from 2011 to 2018 at locations JS1 and JS2 in the Jangsungcheon Basin. In an assessment using the load duration curve on whether the target water quality was met at location JS1, all of the water quality parameters (BOD, COD, TOC, T-N, T-P, and SS) satisfied the target water quality. By contrast, at location JS2, parameters COD, TOC, T-N, and T-P exceeded target values by more than 50%, indicating the target water quality was not met. The discharge loads of locations JS1 and JS2 were analyzed to identify the reasons the target water quality was exceeded. Results revealed that the land system contributed considerably. Furthermore, the discharge load of JS2 accounted for more than 80% of the load on the entire basin, excluding that of JS1. Therefore, the best method for restraining the inflow of pollutants into the stream near location JS2 must be applied to manage the water quality of the Jangsungcheon.

금강수계의 수질관리를 위한 QUAL-2E 모델의 적용(II) -자생BOD를 고려한 허용오염부하량 산정- (Application of QUAL-2E Model for Water Quality Management in the Keum River -Waste loads Allocation Analysis by Considering Autochthonous BOD-)

  • 김종구;이지연
    • 한국환경과학회지
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    • 제10권1호
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    • pp.21-25
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    • 2001
  • The Keum river has been utilized for drinking water supply of several city including Kunsan city and is deepening pollution state due to numerous municipal and industrial discharges. The concentration BOD in river is affected by the organic loading from a tributary and the algae biomass that largely happen to under eutrophication state. In the eutrophic water mass such as the Keum river, the autochthonous BOD was very important part for making a decision of water quality management, because it was accounted for majority of the total BOD. The predict of water quality has important meaning for management of water quality pollution of the Keum river. The purpose of this study will manage and predict water quality of the Keum river using QUAL-2E model considering the autochthonous BOD. The estimation of autochthonous BOD represented that the relationship between BOD and chlorophyll a. The regression equation was shown to be autochthonous BOD=$\beta$(sub)5$\times$chlorophyll a. The results of this study may be summarized as followed; The QUAL-2E model was calibrated with the data surveyed in the field of the study area in June, 1998. The calculated value by QUAL-2E model are in good agree to measured value within relative error of 7.80~20.33%. Especially, in the case of the considering autochthonous BOD, the calculated value of BOD were fairly good coincided with the observed values within relative error of 15%. But the case of not considering autochthonous BOD, relative error of BOD was shown to be 43.2%. In order to attain II grade of water quality standard in Puyo station which has a intake facility of water supply, we reduced to the pollutants loading of tributaries. In the case of removed 100% BOD of tributaries, the BOD of Puyo station was 4.07mg/$\ell$, belong to III grade of water quality standard. But in the case of removed 88% nutrient of tributaries, it was satisfied to II grade of water quality standard as below 3mg/$\ell$ of BOD. For estimation of autochthonous BOD in Keum river, we are performed simulating in accordance with reduction of nutrient load(50~100%) under conditions removal 90% organic load. Occupancy of autochthonous BOD according to nutrient loading reductions were varied from 25.97~79.51%. Occupancy of autochthonous BOD was shown to be a tendency to increasing in accordance with reduction of nutrient loading. Showing the above results, the nutrient that one of the growing factor of algae was important role in decision of BOD in the Keum river. For the water quality management of the Keum river, therefore, it is necessary to considering autochthonous BOD and to construction of advanced sewage treatment plant for nutrient removal.

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안성천 유역의 토지이용별 비점오염원 원단위 산정 (Estimating Unit Load of Non-Point Source Pollutants for Landuse Types in Anseongchun Watershed)

  • 황병기
    • 한국산학기술학회논문지
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    • 제10권5호
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    • pp.1026-1033
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    • 2009
  • 본 연구에서는 안성천 유역을 대상으로 토지지용별로 산지, 농경지, 도시지역을 표본지역으로 선정하여 비점오염원 원단위를 산정하였다. 그리고 강우시 유출수의 유출특성을 가장 잘 반영하는 유량가중평균농도를 산정하고, 유출오염부하량을 산정하였다. 유출계수가 높게 나타났던 1차 강우시가 2차 강우시보다 오염물질의 유량가중평균농도가 높게 나타나는 경향을 보였으며, 토지이용별 산정결과, 농지와 산지 같은 비도시지역보다 도시 지역에서 강우 유출시 높은 농도의 오염물질이 발생하는 것으로 나타났다. BOD 유출부하량은 산지, 농지, 도시 지역에서 1차 강우 시 각각 1,395kg/d, 1,623kg/d, 2,268kg/d로, 2차 강우시 각각 503kg/d, 512kg/d, 898kg/d로 산정되었다. 강우량 및 강우강도에 따라 토지이용별로 유출부하가 크게 다르게 나타났다. 토지이용별 원단위는 BOD 기준으로 도시지역이 72.7kg/ha/yr로 농경지(6.5kg/ha/yr)보다 12배 이상, 산지(9.5kg/ha/yr)보다 8배 이상 높게 나타나 도시지역이 비도시지역보다 단위면적당 비점오염부하가 매우 높은 것으로 나타났다.

유량-부하량 관계식과 8일 간격 누적유량지속곡선을 이용한 오수천의 수체 손상도 분석 (Analysis of Water bady Damage at Osu Stream Using the Flow-Loading Equation and 8-Day Intervals Cumulative Flow Duration Curve)

  • 이영성;김영석;한성욱;서권옥;임창복;이영재;김경현;정강영
    • 한국환경과학회지
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    • 제27권12호
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    • pp.1179-1193
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    • 2018
  • The purpose of this study at water quality pollutants to propose proper management method for the Osu-A unit watershed which is the influent tributary located upstream of the Sumjin -river among the 13 unit watersheds in the Sumjin-river water system. Analyzed the correlation between flow-pollution loading and the correlation between land use type, BOD and TP items, and analyzed 8-day intervals Cumulative Flow Duration Curve (CFDC) and Load Duration Curve (LDC) to evaluate water quality damage. As a result, both BOD and TP were larger than 1 and the concentration of water pollutants increased with increasing flow. BOD was positively correlated with Urban and Field, and TP was positively correlated with Field with 0.710. As a result of the LDC, BOD was analyzed that the target water quality was achieved with the excess rate of less than 50%, and TP exceeded the target water quality by 50.1%. BOD usually exceeded the standard value (exceedance probability 50%) at low flow zone and On the other hand, TP usually exceeded the standard value at high flow zone. Monthly BOD (April to June) and TP (May to August) exceeded the standard. Sewage Wastewater treatment and non-point pollution control is Osu-A unit watersheds are effective in improving BOD and TP.

방동저수지 유역의 토지이용에 따른 비점오염 부하발생 원단위 산정 (Load factor of Nonpoint Source Pollutant owing to Land Use in Bangdong Reservoir Watershed)

  • 문종필;김태철;안병기
    • 농업과학연구
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    • 제26권2호
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    • pp.61-69
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    • 1999
  • 1. 방동저수지 상류 5개 토지이용별 유출수량과 수질조사를 실시하고 비점오염원 원단위를 산정 하였다. 산지에서 SS 84kg/ha/년, BOD 4.2kg/ha/년, COD 15kg/ha/년, T-P 0.1kg/ha/년, T-N 1.1kg/ha/년으로 배출부하원단위가 가장 작았다. 거주지역에서 SS 319kg/ha/년, BOD 34kg/ha/년, COD 98kg/ha/년, T-P 5.6kg/ha/년, T-N 8.7kg/ha/년으로 배출부하 원단위가 가장 많았다. 2. 비점오염원은 강우-유출과 관련이 있어 전체 비점오염원의 약 46%가 7~8월에 유출되며, 건기인 10월에서 4월까지는 연간 총량의 약20%, 5월에서 9월까지는 약80%가 유출된다. 3. 유기물질인 SS, BOD, COD는 거주지역에서, 영양물질인 T-N은 논 밭지역에서 T-P는 논 밭 거주지역 및 방목지에서 많이 유출되고 있다. 4. T-N, T-P 등 영양물질이 농지에서 많이 유출되어 저수지와 같은 폐쇄수역에 부영양화로 인한 수질악화의 원인이 된다. 비점오염원이 우기에 집중배출되어 공공수역에 큰 오염원으로 작용하므로 도시하천을 이용한 비점오염원 관리방안과 비점오염원 발생원 저감방안을 적극 추진하여야 한다.

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농촌의 비닐하우스 재배지역에서 배출되는 강우유출수의 특성 (Characteristics of Stormwater Runoff discharged from vinyl greenhouse growing area in farming area)

  • 전제찬;이상협;권구호;이재운;권헌각;민경석
    • 한국습지학회지
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    • 제16권4호
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    • pp.413-422
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    • 2014
  • 국내의 수질정책은 하천으로 방류되는 방류수의 농도를 규제하는 방식에서 총량을 규제하는 방식으로 바뀌었다. 또한 수질오염총량관리제가 실시되어 각 수계의 구역별로 목표 수질이 정해지게 되었다. 수질오염총량관리제가 성공적으로 이행되기 위해서는 점오염원 및 비점오염원으로부터 배출되는 오염물질의 부하량을 정확하게 파악해야 한다. 이에 본 연구는 농촌의 밭지역을 대상으로 27회의 강우유출수 모니터링을 실시하였으며, 모니터링 결과를 활용하여 밭지역으로부터 배출되는 오염물질의 부하량 및 원단위 등을 산정하였다. 그 결과, 유기물질인 BOD 및 $COD_{Mn}$의 경우 오염물질의 평균 유출농도는 10.5mg/L와 19.6mg/L로 나타났으며, 영양염류인 TN과 TP는 4.5mg/L 및 2.4mg/L로 분석되었다. 한편, 국립환경과학원에서 제시한 원단위 산정 공식에 의해 산정된 원단위는 BOD $31.8kg/km^2/yr$, $COD_{Mn}$ $56.7kg/km^2/yr$, TOC $8.5kg/km^2/yr$, TSS $560.9kg/km^2/yr$, TN과 TP는 각각 $8.3kg/km^2/yr$$5.1kg/km^2/yr$로 산정되었다. 이러한 모니터링 결과는 연구자마다 그 결과 값에 차이가 있는 것으로 밝혀졌으며, 이에 정확한 원단위 산정을 위해서는 장기적인 모니터링이 이루어져야 할 것으로 판단된다.

고속도로 노면 강우유출 오염부하 원단위 산정 (Analysis of Unit Pollution Load on Highway runoff)

  • 강희만;이두진;배우근
    • 상하수도학회지
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    • 제26권1호
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    • pp.55-68
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    • 2012
  • Impervious surface increase due to urbanization, one of the leading causes of pavement increased the runoff coefficient, peak flow, and reducing the infiltration flow and thereby causing flooding and river erosion is occurring in aquatic ecosystems are known to impair. This study aimed to classify use type of detailed land into the road, reststop, tollgates and etc. focused on major domestic highways, to understand the characteristics of rainfall runoff pollutants and to calculate applicable unit pollution load. Because of high runoff coefficient and short travel time to drainage. first flush occurred clearly. Average EMCs of runoff in the highway was investigated as TSS 108.47 mg / L, COD 28.16 mg / L, BOD 13.61 mg / L, TN 6.38 mg / L, TP 0.03 mg / L, Cu 118.17 ${\mu}g$ / L, Pb 345.3 ${\mu}g$ / L, Zn 349.47 ${\mu}g$ / L. Unit pollution loads calculated by detailed land use area of highways based on average annual rainfall, EMCs, applicable basin areas and etc. were 46.6 kg/km2/day of BOD, 1.4 kg/km2/day of TP, 8.81 kg / km2/day of TN and these were BOD 50.8%, TP 66.7%, TN 64.4%in comparison of the unit pollution loads which applies fallow land standards of the TMDL(Total Maximum Daily Load). It was considered that discharged loads can be excessively calculated in case highway non-point management plans based on unit pollution load of the current land standard.

도시지역의 비점오염유출특성을 고려한 도시하천 적정관리방안 (Selection of Best Management Practices for Urban Watershed Corresponding to the Runoff Characteristics from Non-point Pollution Sources)

  • 지홍진;신귀암
    • 한국환경과학회지
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    • 제25권1호
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    • pp.31-40
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    • 2016
  • The purpose of this study was to analyse the runoff characteristics of non-point pollution sources in an urban watershed and determine the effectiveness of newly installed riverwater treatment system to reduce water pollution caused by storm runoff in the urban watershed. The results of this study showed that the levels of BOD5 and suspended solid were highly influenced by first-flush effect and the pollutant load of those two parameters were also very high in the urban watershed. Meanwhile, the effectiveness of riverwater treatment system to reduce the levels of BOD5 and suspended solid was relatively high, but those to reduce the levels of T-N and T-P was low, which needs some additional unit treatment process such as filtration and coagulation. Nonetheless, the riverwater treatment system tested was relatively simple in installation and operation, effective in removing many water pollutants and, most importantly, does not require much space as other treatment systems, so it could be an attractive alternative option to reduce riverwater pollution caused by storm runoff in urban watersheds.

도시지역 토지이용에 따른 비점원 오염물질 유출특성 (Stormwater Runoff Characteristics of Non-point Source Pollutants according to Landuse of Urban Area)

  • 정동환;신동석;류덕희;정동일
    • 환경영향평가
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    • 제16권6호
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    • pp.525-532
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    • 2007
  • In order to establish and implement the total maximum daily load (TMDL) management plan in Korea, it is necessary to set the source units and calculate discharge loads for non-point source pollutants such as BOD, COD, SS, TN and TP. This study analysed the corelation between stormwater runoff characteristics and event mean concentrations (EMCs) of non-point source pollutants. As the result of the corelation analysis, we knew that all the antecedent dry days (ADD) and the rainfall correlated lowly with non-point source pollutants in the urban areas such as resident area, industrial area, business area, road area and parking area. Therefore, it is necessary to get all samples from stormwater starting point to stormwater ending point and standardize the sampling method of stormwater in order to obtain more accurate EMCs for landuse.