년 - 년
4,000원
본 연구에서는 금호강의 수질 및 유량 자료를 이용하여 첨두수질에 따른 강우유출 특성을 분석하고 모니터링 및 오염 원별 관리 시기 등의 비점오염 관리 방향을 도출하였다. 첨두수질농도(Peak Water Quality Concentration)는 강우유 출수내 수질이 가장 높은 농도로 비점오염 관리 기준농도로 극값(Extremal value)을 활용하는 개념이다. 이 방법을 이 용하여 누적강수량(총강수량), 첨두수질농도, 첨두수질농도까지의 누적강수량, 첨두수질농도까지의 시간, 첨두수질농도 까지의 EMC 등의 평가인자를 검토하였고 장기간에 걸친 실측자료를 이용하여 비점오염원 강우유출특성을 분석하였 다. 분석 결과를 통해 비점오염원을 관리하기 위한 적정 모니터링 및 관리방안을 제시하였다.
In this study, rainfall runoff characteristics according to peak concentration were analyzed using the water quality and flow data in the Geumho river, and the direction of nonpoint source management such as monitoring and management period by pollution source was derived. Peak Water Quality Concentration is the concept that utilizes the extreme value as the concentration of non-point pollution control standard with the highest water quality in the rainwater runoff. Using this method, the evaluation factors such as cumulative precipitation(total precipitation), peak water quality concentration, cumulative precipitation up to peak water quality concentration, time to peak water quality concentration, and EMC to peak water quality concentration were examined and long- Rainfall runoff characteristics of nonpoint sources were analyzed. The results of the analysis suggested proper monitoring and management method to manage nonpoint source.
NPS-WET 습지 모델링을 이용한 습지 증설에 따른 수질개선 효과 분석 KCI 등재
한국습지학회 한국습지학회지 제19권 제4호 2017.11 pp.393-402
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4,000원
본 연구는 바이오파크 유역 내 인공습지에 대하여 습지규모와 수질개선효과의 관련성을 분석하여, 최적의 습지규모 설계를 위한 기초 자료를 제공하기 위하여 수행되었다. 본 연구를 통해 인공습지에 대한 합리적인 규모 설계 및 운영에 기여할 것으로 판단되며, 연구결과를 통해 다음과 같은 결론을 얻었다. 인공습지의 0-100 % 증설범위의 설계별 시나리오 분석결과, ‘기존규모 대비 75 % 증설’의 경우, ‘기존규모의 현 상태 운영’ 설계 기준과 비교하여 수질이 BOD5는 66.7 %, TSS는 69.9 %, T-N은 64.7 %, T-P는 85.5 %, Chl-a는 51.8 % 만큼 개선되어 가장 양호한 효과를 보여주었으며, 특히 4계절 중 여름철에 Chl-a를 제외한 수질항목에서 효과가 크게 나타나는 경향이었다. 그리고 설계규모와 수질개선 효과간 정비례관계가 성립되지 않은 것으로 나타났다.
This study was designed to provide basic information for an effective wetland design by analyzing the correlation between wetland size and water quality improvement effect in regard to an artificial wetland inside the Biopark Basin by means of applying the modelling technique. It is expected that this study will contribute to a rational design, operation and management of the artificial wetland in the basin. The following conclusions are obtained through the results and discussion of this study. The results of respective design scenarios that expanded the size of the artificial wetlands in the range of 0-100 % showed that when the wetland is 'expanded 75 % compared with the existing size', water quality improved best compared with the design criteria of 'the current operation of the existing size'. The improved data are: 66.7 % in BOD5 , 69.9 % in TSS, 64.7 % in T-N, 85.5 % in T-P and 51.8 % in Chl-a. In particular, with the exception of Chl-a, water quality improvement stood out in the quality items in summer among the four seasons. And that there in no direct relationship between facility scale and water quality improvement.
LID 시설로서 도로에 적용 가능한 수목여과시설 개발 KCI 등재
한국습지학회 한국습지학회지 제15권 제3호 2013.08 pp.407-412
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4,000원
본 연구는 Low Impact Development (LID) 시설로서 도로에 적용 가능한 수목여과시설을 개발 하고자 수행되었다. 수목여 과시설의 적용가능성 및 효과 검증을 위해 Test-bed 규모의 시설을 조성하여 총 17개월(2011년 6월 ~ 2012년 11월)동안 모니터링을 수행하였다. 모니터링 결과, 누적강우량 2 mm 이하의 강우시 발생되는 강우유출량은 시설내 전량 저류 되며 20 mm 이상일 경우 유입유량의 최소 20%가 시설내 저류 되는 것으로 분석되었다. 강우량에 따른 오염물질별 저감효과 를 분석한 결과, Total Pb는 70% 이상의 저감효율을 보여 오염물질 중에서 저감효과가 가장 뛰어난 것으로 나타났으며 중금속, 입자상 물질, 영양염류 및 유기물 순으로 저감효과가 높은 것으로 조사되었다. 오염물질별 평균 저감효율은 60∼ 73%의 범위로 나타났으며 소규모 강우(10 mm 미만의 강우)시 10 mm 이상의 강우 일 때 보다 오염물질이 함유된 강우 유출수가 시설 내에서 충분히 저류되기에 오염물질 저감에 효과적인 것으로 분석되었다. 본 연구결과를 활용하여 강우량, 오염물질 저감효율과 같은 LID 시설의 설계인자를 도출할 수 있었으며 물순환 효과 및 오염물질의 효율평가를 통하여 향후 본 시설과 유사한 시설의 설계시 활용 가능성이 높은 것으로 판단된다.
The aim of this study was to develop a tree box filter system, an example of Low Impact Development technology, for treating stormwater runoff from road. Monitoring of storm events was performed between June 2011 and November 2012 to evaluate the system performance during wet day. Based on the results, all runoff volume generated by rainfall less than 2 mm was stored in the system. The minimum volume reduction of 20% was observed in the system for rainfall greater than 20 mm. The greatest removal efficiency was exhibited by the system for total heavy metals ranging from 70 to 73% while satisfactory removal efficiency was exhibited by the system for particulate matters, organic matters and nutrients ranging from 60 to 68%. The system showed greater pollutant removal efficiency of 67 to 83% for rainfall less than 10 mm compared to rainfall greater than 10 mm which has 39 to 75% pollutant removal efficiency. The system exhibited less pollutant reduction for rainfall greater than 10 mm due to the decreased retention capacity of the system for increased rainfall. Overall, the system has proved to be an option for stormwater management that can be recommended for on- site application. Similar system may be designed based on several factors such as rainfall depth, facility size and pollutant removal efficiency.
남해 연안해역의 부영양화 1. : 남해 연안 시ㆍ군별 오염부하 발생량과 특성의 상호비교
한국습지학회 한국습지학회지 제3권 제2호 2001.12 pp.91-106
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4,900원
[Kisti 연계] 한국농공학회 한국농공학회논문집 Vol.49 No.3 2007 pp.63-68
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The LRA(Logistic Regression Analysis) conducts a quantitative analysis by collecting a lot of samples and the AHP(Analytic Hierarchy Program) makes use of expert decision influenced by subjective judgment to a certain degree. This study is to suggest a combination method in mapping landslide hazard by giving equal weight for the result of LRA and AHP. Topographic factors(slope, aspect, elevation), soil dram, soil depth and land use were adopted to classify landslide hazard areas. The three methods(LRA, AHP, the combined approach) was applied to a $520km^2$ region located in the middle of South Korea which have occurred 39 landslides during 1999 and 2003. The suggested method showed 58.9% matching rate for the real landslide sites comparing with the classified areas of high-risk landslide While LRA and AHP Showed 46.1% and 48.7% matching rates respectively. Further studies are recommended to find the optimal combining weight of LRA and AHP with more landslide data.
Building a Governance Model to Manage Non-Point Source (NPS) Pollution : a Case Study in Korea
한국환경경영학회 한국환경경영학회 학술대회 Climate Change & Green Growth: Innovating for Sustainability 2010.06 p.139
확률강우량을 이용한 AMC 조건에 따른 비점원 오염량의 변화
[Kisti 연계] 한국농공학회 한국농공학회논문집 Vol.42 No.3 2000 pp.76-88
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AGNPS model is applied in this study to analyze the changes of non-point source pollutant according to AMC condition using probable rainfall. Probable rainfall of H-dam area by Gumber's extreme value distribution is computed through frequency analysis for each return period. 35 coarse grids are subdivided into 134 find grids of finite differential network to analyze peak flow soil loss quantity and nutrients of study area and the modified CN estimation equation shows good result about rainfall events-peak flow relationship. And as the consequence of estimation of soil loss quantity for each rainfall event soil loss quantity shows 120%-170% of actual soil loss quantity Regression analysis for the observed and calculated values of flow T-P AMC has an important effect on nutrients concentration of outflow and it if found that the excessive fertilization under AMC III condition may cause eutrophication by nutrients because the range of increase of outflow concentration appears relatively high.
주민참여형 탁도 모니터링을 활용한 비점오염원 관리 방안 연구
[Kisti 연계] 한국농공학회 한국농공학회논문집 Vol.67 No.3 2025 pp.45-58
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This study evaluated the effectiveness of non-point source pollution management projects and the changes in residents' awareness and capabilities through community-led turbidity monitoring activities. By voluntarily measuring turbidity and monitoring environmental changes, residents were able to complement data collection during periods that are difficult for experts to access. The process significantly improved residents' awareness of water quality improvement and their understanding and practical capabilities regarding non-point source pollution reduction activities. The findings identified key challenges, including the difficulty of changing traditional agricultural practices and a lack of understanding of non-point source pollution reduction measures, highlighting the need for ongoing education and expanded participation programs. Residents showed a strong preference for non-structural Best Management Practices (BMPs), emphasizing the need for support to promote these methods. Despite limitations such as the difficulty of data collection due to regional climate and topographical characteristics and the constraints of short-term research, this study suggests that community-driven non-point source pollution management can contribute to environmental improvement and enhance residents' awareness. It is essential to expand this model to more regions, enabling residents to participate voluntarily in environmental protection and establish sustainable management systems.
[Kisti 연계] 한국농공학회 한국농공학회논문집 Vol.64 No.3 2022 pp.33-43
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South Korea's agricultural nitrogen balance and phosphorus balance rank first and second, respectively, among OECD countries, and proper nutrient management is required to preserve the water quality of rivers and lakes. This study evaluates the effects of furrow mulching on the reduction of non-point source pollution (NPS) load from a sloped upland. The study site was Wanju-gun, Jeollabuk-do, and the survey period was from 2018 to 2019. The slope of the testbed was 13%, and the soil type was sandy loam. The cropping system consisted of maize-autumn Chinese cabbage rotation. The testbed was composed of bare soil (bare), control (Cont.), furrow vegetation mulching (FVM), and furrow nonwoven fabric mulching (FFM) plots. Runoff was collected for each rainfall event with a 1/100 sampler, and the NPS load was calculated by measuring the concentrations of SS, T-N, and T-P. The NPS load was then analyzed for the entire monitoring and crop cultivation periods. During the monitoring period, the effect of reducing the NPS load was 1.5%~44.5% for FVM and 13.1%~55.2% for FFM. During the crop cultivation period, it was 1.2%~80.5% for FVM and 27.0%~65.1% for FFM, indicating that FFM was more effective than FVM. As the NPS load was fairly high during the crop conversion period, an appropriate management method needs to be implemented during this period.
VFSMOD-w 모형을 이용한 청미천 유입 비점오염물 저감효율 연구
[Kisti 연계] 한국콘텐츠학회 한국콘텐츠학회논문지 Vol.16 No.1 2016 pp.140-150
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본 연구는 VFSMOD-w 모형을 이용하여 비점오염물의 관리를 위한 식생대 설치 시 파종 식물의 종류, 식생대의 길이, 강우 조건이 저감 효율에 미치는 영향을 살펴보는 것을 목적으로 수행되었다. 연구를 위한 대상 지역으로 청미천 유역 내 원부교 부근의 나지를 선정하였다. 수정된 Manning의 조도계수가 동일한 값을 가지는 식물체의 경우 토사 저감 효율이 동일하게 계산되는 결과가 도출되었고, 식생대의 길이 및 식물체의 파종 간격이 토사 저감 효율에 가장 지배적인 영향을 미치는 것이 확인되었다. 동일한 강우 조건에서 식생대의 길이가 약 2배 증가할 때 토사 저감 효율이 많은 차이를 나타내지 않았다. 이러한 결과는 식생대의 길이가 증가할수록 토사 저감 효율이 증가하나, 특정 길이 이상일 경우 대부분의 토사가 포착되는 것을 의미한다. 따라서 식생대의 설치는 식생대 설치지역의 강우 특성을 고려하여 적절한 식물체의 파종 간격 및 식생대 길이를 결정지어야 한다고 판단된다.
This study aims to investigate the effect of vegetation type, length of vegetative filter strip, and rainfall on trapping efficiency of the non-point source water pollution. Numerical experiments are carried out using VFSMOD-w. It is known from this study that the vegetation having the same value of revised Manning roughness coefficient shows the similar trapping efficiency in VFSMOD-w. When the length of vegetative filter strip increases twice, the trapping efficiency increases negligibly small under the same condition of rainfall. From this finding, it is also known that most of sediment are removed within a certain length of vegetative filter strips. It is concluded that the installation of vegetative filter strip is determined under the consideration of the rainfall characteristics, space of vegetation, and length of vegetative filter strip.
[Kisti 연계] 한국농공학회 한국농공학회논문집 Vol.56 No.6 2014 pp.11-18
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Vulnerable areas by non-point source pollution and prioritizing control areas were researched using hydrological and geomorphological data, non-point source loads, and water quality data. Using overlay analysis, vulnerable areas were graded with various scenarios. Vulnerable areas were selected near the metro city with impermeable landuse because non-point source loads and water quality data had influence on overlay analysis to rank vulnerable area. Analysis scenarios and weighted values can be changed under regional characteristics and given conditions.
농촌유역의 비점원 오염 수질관리를 위한 인공습지 설계모형
[Kisti 연계] 한국농공학회 한국농공학회논문집 Vol.44 No.5 2002 pp.96-105
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As an useful water purification system for non-point source pollution in rural watersheds, interests in constructed wetlands are growing at home and abroad. It is well known that constructed wetlands are easily installed, no special managemental needs, and more flexible at fluctuating influent loads. They have a capacity for purification against nutrient materials such as phosphorus and nitrogen causing eutrophication of lentic water bodies. The Constructed Wetland Design Model (CWDM), developed through this study is consisted mainly of Database System, Runoff-discharge Prediction Submodel, Water Quality Prediction Submodel, and Area Assessment Submodel. The Database System includes data of watershed, discharge, water quality, pollution source, and design factors for the constructed wetland. It supplies data when predicting water quality and calculating the required areas of constructed wetlands. For the assessment of design flow, the GWLF (Generalized Watershed Loading Function) is used, and for water quality prediction in streams estimating influent pollutant load, Water Quality Prediction Submodel, that is a submodel of DSS-WQMRA model developed by previous works is amended. The calculation of the required areas of constructed wetlands is achieved using effluent target concentrations and area calculation equations that developed from the monitoring results in the United States. The CWDM is applied to Bokha watershed to appraise its application by assessing design flow and predicting water quality. Its application is performed through two calculations: one is to achieve each target effluent concentrations of BOD, SS, T-N and T-P, the other is to achieve overall target effluent concentrations. To prove the validity of the model, a comparison of unit removal rates between the calculated one from this study and the monitoring result from existing wetlands in Korea, Japan and United States was made. As a result, the CWDM could be very useful design tool for the constructed wetland in rural watersheds and for the non-point source pollution management.
경사밭 고랑 식생 및 PAM (Polyacrylamide) 멀칭에 따른 영농기 비점오염 저감효과 분석
[Kisti 연계] 한국농공학회 한국농공학회논문집 Vol.65 No.4 2023 pp.1-10
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As a result of climate change, non-point source pollution (NPS) from farmland with the steep slope during the rainy season is expected to have a significant impact on the water system. This study aimed to evaluate the effect of furrow mulching using alfalfa and PAM (Polyacrylamide) materials for each rainfall event, while considering the load characteristics of NPS. The study was conducted in Wanju-gun, Jeollabuk-do, in 2022, with a testbed that had a slope of 13%, sandy loam soil, and maize crops. The testbed was composed of four plots: bare soil (Bare), No mulching (Cont.), Vegetation mulching (VM), and PAM mulching (PM). Runoff was collected from each rainfall event using a 1/40 sampler and the NPS load was calculated by measuring the concentrations of SS, T-N, T-P, and TOC. During farming season, the reduction efficiency of NPS load was 37.1~59.5% for VM and 38.2~75.7% for PM. The analysis found that VM had a linear regression correlation (R<sup>2</sup>=0.28~0.86, P-value=0.01~0.1) with elapsed time of application, while PM had a quadratic regression correlation (R<sup>2</sup>=0.35~0.80, P-value=0.1). These results suggest that the selection of furrow mulch materials and the appropriate application method play a crucial role in reducing non-point pollution in farmland. Therefore, further studies on the time-series reduction effect based on the application method are recommended to develop more effective preemptive reduction technologies.
논 비점오염 저감을 위한 담수위 관리와 배출수 여과의 효과 분석
[Kisti 연계] 한국농공학회 한국농공학회논문집 Vol.57 No.6 2015 pp.125-130
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Field study was carried out to assess the effect of automatic inlet and filtration outlet to reduce non-point source discharge and save agricultural irrigation water from paddy. The comparison of control and treated plots showed that irrigation water was saved up to 58 mm and discharge water was reduced up to 110 mm. The filtration outlet improved the discharge water quality for SS, COD, TN and TP up to 60.1 %, 0.1 %, 4.5 %, and 26.0 %, respectively. Overall, the findings of this study indicated that non-point source pollution discharged from paddy fields where automatic inlet and filtration outlet were installed could be reduced 266.3 kg/ha/yr in SS, 10.3 kg/ha/yr in COD, 1.22 kg/ha/yr in TN, and 0.10 kg/ha/yr in TP, respectively. This clearly showed that the automatic inlet and filtration outlet are effective management method for saving of agricultural water and protecting water environment.
분산형 빗물 저류조용 모래 여과층을 적용한 도심지 비점오염원의 TSS와 COD 정화효율에 대한 실험적 연구
[Kisti 연계] 대한토목학회 대한토목학회논문집 Vol.34 No.5 2014 pp.1477-1488
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도심지 불투수성 포장의 증가로 지하수위 저하, 생활용수 부족 등의 물과 관련된 다양한 환경문제가 점차 심화되고 있으며, 이를 해결하기 위해 빗물 저류조가 설치되어지고 있다. 빗물 저류조는 지반 저류층에 강우 유출수를 저장하여 향후 갈수기에 이용할 수 있어 도심지의 원활한 물순환에 도움이 된다. 그러나 도심지의 초기 강우는 다량의 비점오염물질을 포함하고 있으므로, 초기 강우를 빗물 저류조에 저류하기 전에 빗물에 포함된 오염물질을 정화하기 위한 시스템이 필요하다. 본 연구에서는 초기 강우의 오염물질 정화를 위해 경제성과 비점오염물질 제거효율 측면에서 우수한 토양여과기술을 적용한 빗물 저류조의 전처리시설인 모래 여과층에 대한 정화효율 및 적용성을 실내 시험과 현장 시험을 통해 평가하였다. 실내 시험은 $20cm{\times}30cm{\times}60cm$의 규격으로 제작된 챔버에 3종류의 각기 다른 모래 여과층을 조성한 후 인공 강우를 유입하는 과정으로 진행되었으며, 유출된 오염수의 TSS (총 부유물질)와 COD (화학적 산소요구량)를 측정하여 모래 여과층의 정화효율을 평가하였다. 또한 폐색 현상으로 인한 모래 여과층의 투수계수 변화를 간접적으로 평가하였다. 실내 시험을 통하여 비점오염물질 정화에 적합한 여과층을 제시하였으며, 이를 현장 빗물 저류조에 시험 시공하여 선정된 여과층의 적용성을 검증하였다.
Prevalent construction of impermeable pavements in urban areas causes diverse water-related environmental issues, such as lowering ground water levels and shortage of water supply for the living. In order to resolve such problems, a rainwater reservoir can be an effective and useful solution. The rainwater reservoir facilitates the hydrologic cycle in urban areas by temporarily retaining precipitation-runoff within a shallow subsurface layer for later use in a dry season. However, in order to use the stored water of precipitation-runoff, non-point source pollutants mostly retained in initial rainfall should be removed before being stored in the reservoir. Therefore, the purification system to filter out the non-point source pollutants is essential for the rainwater reservoir. The conventional soil filtration technology is well known to be able to capture non-point source pollutants in a economical and efficient way. This study adopted a sand filter layer (SFL) as a non-point source pollutant removal system in the rainwater reservoir, and conducted a series of lab-scale chamber tests and field tests to evaluate the pollutant removal efficiency and applicability of SFL. During the laboratory chamber experiments, three types of SFL with the different grain size characteristics were compared in the chamber with a dimension of $20cm{\times}30cm{\times}60cm$. To evaluate performance of the reservoir systems, the concentration of the polluted water in terms of TSS (Total Suspended Solids) and COD (Chemical Oxygen Demand) were measured and compared. In addition, a reduction in hydraulic conductivity of SFL due to pollutant clogging was indirectly estimated. The optimum SFL selected through the laboratory chamber experiments was verified on the in-situ rainwater reservoir for field applicability.
4,000원
비점오염원은 유역 및 지역의 토지이용 형태별로 강우유출수의 유출특성이 다양하고, 강우시 지표면의 각 종 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 초기세척현상 이 발생하였으며, 초기우수의 제어가 필요하였다. 향후 장기적인 강우사상 및 수질조사 자료의 축척, GIS를 이용 한 토지이용형태, 지형 및 지질특성의 자료 축척 등 지속적인 연구가 필요할 것으로 판단된다.
Non-point source pollutant is exerting a serious influence on the water quality, since the characteristics of stormwater runoff is varied by the land usage pattern of an area and a basin, and all sorts of pollutants on the earth in rainfall flow into the urban stream. This study estimated EMC of each pollutant to investigate the characteristics of stormwater runoff by separating the urban area as the housing area and industrial area. As a result of the analysis, the first flush effect occurred in the non-point source pollutant of housing area and industrial area, as the runoff concentration gradually reduces after it rapidly increases in the initial rainfall, and in case of the non-point source pollutant the control of first stage rain-water. It is considered to require the continuous follow-up study such as the scale of long-term rainfall event and water quality data, land usage pattern by GIS method, database of topography and geological features, and so forth.
철도 교량 강우유출수를 대상으로 한 비점오염원 저감시설의 성능평가 KCI 등재
한국습지학회 한국습지학회지 제27권 제2호 2025.06 pp.216-221
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4,000원
철도 교량과 같은 콘크리트 포장 구조물은 불투수성이 높아, 강우 시 건기 동안 축적된 비점오염물질이 단시간 내 대량 유출되는 특성을 가진다. 특히 철도 인프라에서는 이러한 유출수가 적절히 처리되지 않을 경우, 인근 수계로 직접 유입되어 수질 오염을 유발할 수 있다. 그럼에도 불구하고 철도 교량을 대상으로 한 비점오염 저감시설의 성능 분석 연구는 미흡한 실정이다. 본 연구는 수도권 내 철도(지하철) 교량을 대상으로, 초기우수처리시설을 통한 오염물질 저감 효과를 정량적으로 평가하고자 수행되었다. 총 3회의 강우사상에 대해 유입수와 유출수의 유량가중평균농도(EMC)를 산정하고, BOD, COD, TOC, TSS, TN, TP 항목의 처리효율을 분석하였다. 그 결과 COD와 TP는 최대 100%, BOD와 TOC는 각각 최대 64.8%, 71.0%의 처리효율을 나타냈으며, TSS는 최소 10.4%로 편차가 크게 나타났다. 본 연구는 철도 교량에서의 비점오염 저감시설 설치 필요성을 실증적으로 제시하며, 향후 관련 정책 수립 및 지속적인 성능 모니터링의 기반자료로 활용될 수 있다.
Concrete-paved railway bridges exhibit high imperviousness, causing the rapid discharge of accumulated non-point source pollutants during rainfall events. Without proper treatment, these pollutants are often directly discharged into nearby water bodies, raising concerns about water quality degradation. Despite this, few studies have assessed the pollutant removal performance of treatment facilities installed at railway infrastructure. This study aims to quantitatively evaluate the removal efficiency of non-point source pollutants using BMP(Best management Practice) facility installed at a subway bridge in the metropolitan area. Three rainfall events were monitored to calculate the event mean concentration (EMC) of influent and effluent, focusing on BOD, COD, TOC, TSS, TN, and TP. The results showed removal efficiencies up to 100% for COD and TP, and up to 64.8% and 71.0% for BOD and TOC, respectively. However, TSS exhibited a wide range of removal efficiencies, from 10.4% to 57.8%, indicating the facility has sensitivity to rainfall characteristics. This study provides empirical evidence supporting the need for runoff treatment systems at railway bridges and offers foundational data for future policy development and long-term performance monitoring.
서낙동강 유역 해반천의 수질 개선을 위한 비점오염관리대책 효과 분석 KCI 등재
한국습지학회 한국습지학회지 제26권 제1호 2024.02 pp.1-9
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4,000원
이 연구에서는 서낙동강을 구성하는 소유역 중 대지면적 비율이 크고 인구밀도가 높은 해반천 유역의 유출 및 수질을 모의하기 위한 HSPF(Hydrological Simulation Program-FORTRAN)모형을 개발하였다. 유역에서 발생하는 비점오 염 부하량을 관리하기 위한 세 가지 시나리오가 개발되어 모형에 적용되었고, 오염부하량의 감소와 부하지속곡선에 대비한 수질 기준 초과율이 분석되었다. 시나리오는 비점오염의 발생을 줄이기 위한 도로 청소, 다양한 저영향 개발 기법을 고려한 유출 저감 조치, 그리고 강으로 들어가는 비점오염원을 완화하기 위한 유입 저감 조치로 구성되었다. 첫 번째 시나리오에서는 김해시의 도로 청소 차량 수와 같은 실제 조건이 고려되었으며, 두 번째와 세 번째 시나리오 에서는 적용 가능한 토지 이용별 면적의 50%에 저영향 개발 기법을 적용하는 것으로 적용되었다. 모든 세 가지 조치 를 적용한 결과, BOD 오염 물질 부하가 58.28%, T-N은 58.49%, T-P는 51.56% 감소할 수 있는 것으로 도출되었 다. 또한, 5년간 누적된 수질 측정의 60번째 백분위수를 목표 수질로 설정하고 구축된 유량지속곡선에 의한 초과율 분석 결과, 결과적으로, BOD의 경우 조치 적용 전 41.57%의 초과율이 조치 후 16.32%로 감소하여, 초과율이 25.25% 감소하였다. T-N의 경우 조치 전 40.31%에서 조치 후 22.84%로, T-P의 경우 62.43%에서 27.22%로 감소 하였다.
In this study, a HSPF model was developed to simulate runoff and water quality in the Haebancheon watershed, which has a high land area ratio and population density among the West Nakdong River watersheds. Various non-point source pollution control strategies were applied, and the reduction in pollutant loads and the exceedance rate of water quality standards were analyzed. The scenarios included basic road cleaning for reducing pollutant loads, runoff reduction measures considering extensive low-impact development techniques, and inflow reduction measures to mitigate non-point source pollution entering the river. In the first step, practical conditions such as the number of vehicles for road cleaning in Kimhae City were considered, while for the second and third steps, it was assumed that 50% of the applicable land use area was used to be applicable for the LID techniques. As a result of applying all three measures, it was analyzed that the BOD pollutant load could be reduced by 58.28%, T-N by 58.49%, and T-P by 51.56%. Furthermore, the 60th percentile of water quality measurements accumulated over 5 years was set as the target water quality, and a flow-duration curve was constructed. The exceedance rate of the flow-duration curve before and after applying non-point source pollution reduction measures was analyzed. As a result, for BOD, the exceedance rate decreased from 41.57% before applying the measures to 16.32% after, showing a 25.25% reduction in the exceedance rate. For T-N, the exceedance rate decreased significantly from 40.31% before the measures to 22.84% after, and for T-P, it decreased significantly from 62.43% to 27.22%.
연안지역 포장면 비점오염물질 유출 및 최적관리방안 시설의 선정을 위한 가이던스에 관한 연구 KCI 등재
한국습지학회 한국습지학회지 제15권 제4호 2013.11 pp.543-553
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4,200원
우리나라에서는 유역 특성별 비점오염물질 유출특성을 파악하고 최적관리방안을 도모하기 위해 2000년 이후 다양한 형태 의 실험실 규모 또는 실증 규모 최적관리방안(Best Management Practices, BMP) 시설에 대해 연구가 진행되고 있으나 유 역 특성상 자정작용의 기회가 주어지지 않는 연안지역에서의 비점오염물질 유출특성 및 관리방안에 대한 연구는 미비한 상태이다. 최근 연안지역 개발에 따른 불투수층 비율은 지속적으로 증가하고 있으나, 초기우수의 직접유출을 방지하기 위 한 완충 시설 및 최적관리방안 시설은 전무한 상태이다. 본 논문에서는 충남 보령시 대천항 주차장을 중심으로 연안 지 역의 비점오염물질 유출특성을 파악하고, 이를 저감하기 위한 최적관리방안을 설정하여 연안지역 비점오염원 관리에 대 한 기초자료를 제공하였다. 연안지역은 지역특성상 해안과 접하고 있기 때문에 지하수위가 낮고 경사차가 크지 않은 평 탄한 지형을 이루고 있다. 즉, 최적관리방안을 선정하는데 있어 유출입구의 수두확보문제와 굴착 깊이에 제한을 받으며, 인공습지 및 저류지와 같은 대규모 저류형 시설의 입지조건으로는 부적합하다. 또한, 연안지역은 강우유출 특성상 염분의 함량이 높기 때문에 식물 생장에 미치는 영향이 커 식생을 이용한 자연형 최적관리방안 시설을 적용하는데도 제약을 받 는다. 연안지역 비점오염원 유출 특성과 연안지역 지리·지형적 조건을 고려하여 선정된 최적관리방안 시설의 주관평가 결 과 시공시 굴착 깊이가 적고, 식생의 이용이 제한적인 침투수로 형태의 시설이 적합한 것으로 사료되며 유지관리 측면에 서도 유리하다.
In Korea, there have been many studies and progresses on various types of pilot scale or commercialized field scale Best Management Practices(BMP) during the last 10 years. Runoff characteristics of diffuse pollutants from different land uses are well identified and documented. However, for the coastal area connected directly with shoreline, runoff patterns and management schemes of non-point pollution were not fully studied. Recently, coastal area is emerging as a new development axis especially in west coast side of Korea such as Incheon city and Chungnam province, thus urbanized area rapidly increased but there are no buffer zones and BMP facilities to aim at preventing direct discharge of the first flush into coastal sea and beaches. In this study, parking area in Deacheon harbor, Boryeong City in Chungnam Province was selected and rainfall runoff was monitored for two year period in order to examine run-off features from which proper type of BMP suitable for coastal area is proposed. Coastal area usually has a low ground water level and consists of plain land, so that large scale BMP such as storm water retention pond and wetland requiring great excavation works is not best management plan. In addition, monitoring study shows that storm water from the paved parking area has a high salinity compared with those in storm water from the inland. High salinity is detrimental for the vegetation. Therefore, BMP employing least vegetative cover and also in terms of maintenance is a good option such as infiltration trench and porous pavement.
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