• 제목/요약/키워드: pollutant loads

검색결과 360건 처리시간 0.134초

영농방법에 따른 논에서의 배출부하량 모의 (Comparing Farming Methods in Pollutant runoff loads from Paddy Fields using the CREAMS-PADDY Model)

  • 송정헌;강문성;송인홍;장정렬
    • 한국환경농학회지
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    • 제31권4호
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    • pp.318-327
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    • 2012
  • 논은 지역이나 토양, 기후 특성, 오염원 종류, 관개 및 시비 등의 경작방법에 따라 배출 양상이 다양하다. 특히, 시비방법 개선, 효율적인 물관리 등 영농방법 개선을 통한 비점부하 저감이 중요하다. 본 연구에서는 담수논을 대상으로 물꼬높이, 시비량, 관개수 수질에 따른 배출부하량 저감효과를 평가하기 위해, 시험포장의 물수지 및 물질수지 분석자료를 이용하여 CREAMS-PADDY 모형을 보정과 검정을 하고, 영농관리 시나리오를 적용하여 그 결과를 평가하였다. 영농관리 시나리오는 선행연구를 조사하여 배출부하량 저감을 만족하는 동시에 벼의 수확량 저하를 초래하지 않도록 4개의 시나리오로 개발하였고, 대조군은 관행농업을 반영하여 구성하였다. CREAMS-PADDY 모형과 HOMWRS 모형을 연계하고, 과거 기상자료를 이용하여 1981~2010년 영농기의 배출부하량 모의가 가능하도록 모형을 구축하였다. 모형의 보정 및 검정을 위하여 서울대학교 이동저수지 관개논 시험포장에의 물수지 및 물질수지 분석 자료를 이용하였고, 보정 결과 논물 총질소 및 총인의 결정계수는 0.95, 0.84, 모형의 효율지수는 0.95, 0.73으로, 검정 결과 논물 총질소 및 총인의 결정계수는 0.97, 0.85, 모형의 효율지수는 0.91, 0.84로 비교적 높게 나타났다. 영농관리 시나리오 적용 결과 중간낙수 이후 물꼬를 50 mm 증가시켰을 때 배출부하량은 대조군 대비 T-N 1~34%, T-P 5~21% 저감되는 것으로 나타났고, 100 mm 증가시켰을 때 대조군 대비 T-N 5~62%, T-P 8~37% 저감되는 것으로 나타났다. 관행시비량에서 표준시비량으로 시비량을 삭감시 배출부하량은 대조군 대비 T-N 0~16%, T-P 0~9% 저감되는 것으로 나타났으며, 배출부하량 저감양상은 시비직후 강우의 발생유무에 따라 크게 달라지는 것으로 나타났다. 관개수 수질을 호소수 수질환경기준인 4등급을 초과하는 수준으로 관개하는 경우 배출부하량은 대조군 대비 T-N 9~65%, T-P는 9~47% 증가하는 것으로 나타났다. 영양물질의 농도가 높은 관개수가 유입될 경우 논은 수질을 정화하는 경향을 보였다. 시나리오를 종합하면 영농초기의 물꼬높이를 낮게 유지하고, 중간낙수 이후 물꼬를 높게 유지하며, 비료는 강우가 발생하지 않는 시기에 표준시비량으로 시비하고, 호소수 수질환경기준인 4등급을 만족하는 관개수를 이용하였을 경우 논에서의 비점오염 관리에 가장 효과적인 것으로 나타났다. 하지만 고농도의 영양물질이 함유된 관개수를 농업용수로 이용할 경우 수계 전체의 배출부하량에 저감에 있어 효과적인 것으로 나타났다. 본 연구는 현장 실험 이전의 기초 자료로 사용될 수 있을 것으로 사료된다.

LID/BMPs 효과분석을 위한 LIDMOD2 개발 (LIDMOD2 Development for Evaluation of LID/BMPs)

  • 전지홍;최동혁;나은혜;박찬기;김태동
    • 한국물환경학회지
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    • 제26권3호
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    • pp.432-438
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    • 2010
  • LIDMOD2 was developed for evaluation of low impact development (LID) and best management practice (BMP) by modification of Site Evaluation Tool (SET). The modification includes employment of SCS-CN method for annual runoff simulation, unit load method for annual pollutant loads simulation, and the method proposed by Korean TMDL for calculating pollutant reduction by BMPs. The CN values were updated with regionalized parameters within Nack-Dong River basin because these are important parameters for simulating hydrology. LIDMOD2 was tested by applying to Andong Bus terminal. As a simulation results, pollutant loads and surface runoff will be significantly increased by post-development without LID compared with those from pre-development. LID technique was simulated to efficiently reduce surface runoff and pollutant load and increase infiltration. LIDMOD2 is screening level tool and easy to use because LIDMOD2 is based on spread sheet and most of parameters are regionalized. LIDMOD2 was illustrate that it could evaluate LID well by summarizing and graphing annual hydrology, annual pollutant loading, and hydrograph for event storm. The calculation methods related with pollutant loads are employed from the guideline of Korean TMDL and it can be useful tool for Korean TMDL to evaluate the effect of LID/BMP on developing area.

경안천지역의 도로 및 주차장에 대한 강우유출수의 특성분석과 원단위 산정 (Characterization of Stormwater Pollutants and Estimation of Unit Loads for Road and Parking Lot in Gyeongan Stream Watershed)

  • 고성훈;쉬라즈 아메드 메몬;이창희
    • 한국물환경학회지
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    • 제25권5호
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    • pp.689-696
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    • 2009
  • Unit load approach has been used to estimate the non-point pollutant load in Total Water Pollution Load Management System (TWPLMS). In this study, locally applicable unit loads for road and parking lot were developed based on the measurements of 9 rainfall events from 2007 to 2008 in Yongin city of Gyeongan stream watershed. Observations showed that stormwater runoff began at low precipitation (>1 mm) and peak pollutant concentration occurred at the beginning of the runoff because of impervious nature of the sites. Averaged event mean concentrations (EMCs) of road (parking lot) were estimated as COD 105.36(62.69) mg/L, BOD 15.94(13.20) mg/L, TSS 183.45(66.52) mg/L, T-N 4.63(3.28) mg/L, T-P 0.45(0.39) mg/L. Higher EMCs at the road than parking lot may reflect heavier traffic. Unit loads Estimated from the EMCs and 10 year average rainfall data were COD $331.17kg/km^2{\cdot}day$, BOD $50.20kg/km^2{\cdot}day$, TSS $580.13kg/km^2{\cdot}day$, T-N $14.68kg/km^2{\cdot}day$, T-P $1.43kg/km^2{\cdot}day$ in the road and COD $186.59kg/km^2{\cdot}day$, BOD $39.22kg/km^2{\cdot}day$, TSS $199.15kg/km^2{\cdot}day$, T-N $9.70kg/km^2{\cdot}day$, T-P $1.16kg/km^2{\cdot}day$ in the parking lot. The estimated unit loads are not so comparable to the ones listed in TWPLMS technical guideline and published data that locally developed unit loads should be used to estimate non-point pollutant loads.

Assessment of Non-Point Source Pollutant Loads and Priority Management Areas using an HSPF Model in Sejong City, South Korea

  • Lim, Dohun;Lee, Yoonjin
    • 한국환경과학회지
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    • 제26권8호
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    • pp.881-891
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    • 2017
  • In this study, the discharge loads of non-point pollution sources were analyzed using a Hydrologic Simulation Program-Fortran (HSPF) model for 46 sub-watersheds in order to guide the management plan for water and streams passing through the city. The results using HSPF showed good applicability in comparison to point measurements, which were based on BOD, TP, and TN. The mean value of the BOD loads was $4.08kg/km^2$ per day, and the highest level of BOD was $17.75kg/km^2$ per day at Namri. Three potential areas of high priority for the installment of constructed wetlands were selected in order to reduce non-point pollution sources based on BOD loads and on environmental and economic conditions. The results for these scenarios indicated a maximum rate of reduction in BOD of 39.12% within the proposed constructed wetlands.

INTEGRATED WATER RESOURCES AND QUALITY MANAGEMENT SYSTEM USING GIS/RS TECHNOLOGIES

  • Shim, Kyu-Cheoul;Shim, Soon-Bo;Lee, Yo-Sang
    • Water Engineering Research
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    • 제3권2호
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    • pp.85-92
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    • 2002
  • There has been continuous efforts to manage water resources for the required water quality criterion at river channel in Korea. However, we could obtain the partial improvement only for the point sources such as, waste waters from urban and factory site through the water quality management. Therefore, it is strongly needed that the best management practice throughout the river basin fur water quality management including non-point sources pollutant loads. This problem should be resolved by recognizing the non-point sources pollutant loads from the upstream river basin to the outlet of the basin depends on the landuse and soil type characteristics of the river basin using the computer simulation by a distributed model based on the detailed investigation and application of Geographic Information System (GIS). The purpose of this study is consisted of the three major distributions, which are the investigation of spread non-point sources pollutants throughout the river basin, development of the base maps to represent and interpret the input and outputs of the distributed simulation model, and prediction of non-point sources pollutant loads at the outlet of a up-stream river basin using Agricultural Non-Point Sources Model (AGNPS). For the validation purpose, the Seom-Jin River basin was selected with two flood events in 1998. The results of this application showed that the use of combined a distributed model and an application of GIS was very effective fur the best water resources and quality management practice throughout the river basin

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산림논복합 소유역에서의 비점부하 강우유출 특성 및 EMC 산정 (Characteristics and EMCs of NPS Pollutants Runoff from a Forest-Paddy Composite Watershed)

  • 송인홍;강문성;황순호;송정헌
    • 한국농공학회논문집
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    • 제54권4호
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    • pp.9-17
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    • 2012
  • This study was aimed to characterize non-point source (NPS) pollutant runoff and estimate event mean concentrations (EMCs) from a small rural watershed located at the headwater area of the Gyeongan stream. The study watershed consists of the two major landuse, forest (72 %) and paddy field (28 %). The nine rainfall events ranging from 18.5 to 192.6 mm in amount were monitored in this study. Stream flow was measured at the watershed outlet using a water level gauge, while a number of water samples for each event were collected and analysed for water quality. Event pollutant loads varied greatly depending on rainfall events varying from 22.6 to 3,134.2 mg/L, 0.32 to 24.56 mg/L, 0.090 to 1.320 mg/L, and 2.3 to 149.8 mg/L for SS, TN, TP, and COD, correspondently. The respective mean EMCs were estimated by 104.2, 1.00, 0.168, and 7.9 mg/L. The Pearson correlation analysis showed that COD EMC was significantly correlated with those of SS, TN, and TP. Rainfall runoff ratio appeared to be negatively correlated with EMCs of SS, TP, and COD, although not statistically significant. The event loads from the largest rainfall was greater than the sum of those from the remaining eight events. The study results suggest that the appropriate management of intensified storm events are of greater importance in curbing NPS loads, while the estimated EMCs provide base data for the unit pollutant loads determination for the forest-paddy composite upstream watershed.

고랭지 밭 유역의 융설에 의한 수질특성 (Characteristics of Water Quality in Basin of Alpine Field during the Snowmelt Season)

  • 최용훈;원철희;박운지;신민환;신재영;이수인;최중대
    • 한국물환경학회지
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    • 제28권3호
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    • pp.453-459
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    • 2012
  • In this study, Song-Cheon river Basin located at Dae-kwan-lyong Meyn in Kang-Won Province was monitored to analyze characteristics of non-point source pollution during the snowmelt period. The characteristics of NPS pollution such as runoff, change in water quality and pollutant loads by snowmelt were investigated from 23th February 2010 to 27th April 2010. The results showed that The climate change effects flow, turbidity and concentration of SS and COD with showing similar trend of fluctuation. Daily pollutant loads per unit area were SS 74.43 kg/ha/day, COD 1.25 kg/ha/day, BOD 0.21 kg/ha/day, TN 0.717 kg/ha/day, TP 0.141 kg/ha/day and the flow weight mean concentration has been SS 985.97 mg/L, COD 16.28 mg/L, BOD 2.67 mg/L, TN 9.302 mg/L, TP 1.834 mg/L, respectively. The flow and pollutant loads both of SS and of COD significantly increased during the snowmelt period. Because structurally loosen soil by freezing and thawing deteriorates water quality, research and management measures will be needed.

수질오염총량관리 단위유역내 토양 양분 및 수질오염 부하량 상관관계 비교 (Correlation between Soil Nutrient Contents and Water Pollutant Loads in Hydrologic Unit Watersheds: Implication on the Total Maximum Daily Loads (TMDLs))

  • 조경식;이호식
    • 한국물환경학회지
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    • 제27권4호
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    • pp.509-515
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    • 2011
  • For this study the 4 sub-watersheds Okdong A, Hankang B, Jecheon A and Hankang C which are the main streams of the Han River within the mid-level region of Chungju Dam are selected and the analysis of soils has been carried out through the soil basic survey. When it comes to the soil erosion amount the soil nutrient load has been calculated by utilizing the RUSLE erosion equation. In case of the data related to the measurement of water flow and quality the information available from the "Water Information System" one of the websites run by the Ministry of Environment has been used to calculate the water pollution load. The correlation between the soil nutrient load and the water pollutant load has been analyzed through making comparison. According to the results related to the soil nutrient load of each sub-watershed the Hankang C shows the highest values TOC 29,986.92 ton/yr, TN 3,860.33 ton/yr and TP 973.97 ton/yr respectively. Even when it comes to the loads related to water quality the Hankang C shows also comparatively high values TOC 6,625.64 ton/yr, TN 7,335.01 ton/yrand TP 145.49 ton/yr respectively. The soil nutrient loads of the sub-watersheds are shown to increase towards the lower stream meaning the load increases in the order of Hankang CHankang B and Okdong A. When it comes to the water pollutant load the value goes up along down the water system meaning the load gets higher in the order of Hankang C, Hankang B and Okdong A while utilizing the mainstream within the mid-level region of Chungju Dam as the basis. The correlation study showed that the nutrient content of soil is proportional to the pollutant load in water with the strongest positive correlation with TOC.

지속가능한 도시개발을 위한 LID평가모델(LIDMOD)개발과 수질오염총량제에 대한 적용성 평가 (LIDMOD Development for Evaluating Low Impact Development and Its Applicability to Total Maximum Daily Loads)

  • 전지홍;최동혁;김태동
    • 한국물환경학회지
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    • 제25권1호
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    • pp.58-68
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    • 2009
  • Low impact development (LID) technique is relatively new concept to reduce surface runoff and pollutant loading from land cover by attempting to match predevelopment condition with various integrated management practices (IMPs). In this study, computational model for designing and evaluating LID, named LIDMOD, was developed based on SCS-CN method and applied at Andong bus terminal to evaluate LID applicapability and design retention/detention area for volume or peak flow control. LIDMOD simulated with 21 years simulation period that yearly surface runoff by post-development without LID was significantly higher than that with LID showing about 2.8 times and LID could reduce efficiently yearly surface runoff with 75% reduction of increased runoff by conventional post development. LIDMOD designed detention area for volume/peak flow control with 20.2% of total area by hybrid design. LID can also efficiently reduce pollutant load from land cover. Pollutant loads from post-development without LID was much higher than those from pre-development with showing 37 times for BOD, 2 times for TN, and 9 times for TP. Pollutant loads from post-development with LID represented about 57% of those without LID. Increasing groundwater recharge reducing cooling and heating fee, creating green refuge at building area can be considered as additional benefits of LID. At the point of reducing runoff and pollutant load, LID might be important technique for Korean TMDL and LIDMOD can be useful tool to calculate unit load for the case of LID application.

SWMM과 WASP5모형을 이용한 간척지 담수호의 수질거동 특성 조사 (Behavior of Water Quality in Freshwater Lake of Tide Reclaimed Area Using SWMM and WASP5 Models)

  • 김선주;김성준;이석호;이준우
    • 한국농공학회지
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    • 제44권2호
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    • pp.148-160
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    • 2002
  • Lake water quality assessment information is useful to anyone involved in lake management, from lakeshore owners to lake associations. 11 provides lake water quality, which can improve how to manage lake resources and how to measure current conditions. It also provides a knowledge base that can be used to protect and restore lakes. SWMM was applied to simulate the discharge and pollutant loads from Boryeong watershed, and WASP5 was applied to analyze the changes of water quality in Boryeong freshwater lake. In each model, the most suitable parameters were calculated through sensitive analysis and some parameters used default data. Simulated in SWMM and measured discharge showed the accuracy of 88.6%. T-N and T-P exceeds the criteria in the simulation of water quality in Boryeong freshwater lake, and control of pollutant loads in the main stream showed the most effective way. Integrated water quality management system was developed to give convenience in the operation of SWMM and WASP5 and data acquisition.