• 제목/요약/키워드: Loading of Nutrients of Pollutant

검색결과 21건 처리시간 0.027초

금강수계 남대천유역의 수질변화와 오염부하량 (Pollutant Loading and Changes of Water Quality at the Namdae-cheon Watershed in Keum river Districts)

  • 최창현;한강완;조재영;전재철;김성조
    • 한국환경농학회지
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    • 제19권1호
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    • pp.26-31
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    • 2000
  • 금강수계 상류에 위치하고 있는 전라북도 무주군 남대천 유역을 대상으로 1995년 7월부터 1998년 4월까지 32개월 동안 4개 지점의 수질시료에 대한 질적변화를 주기적으 로 조사하였다. 또한 남대천 유역의 인구, 가축 그리고 토지이용에 따른 원단위 오염부 하량과 실측 오염부하량을 비교 분석하였다. 수계 환경에 영향을 미칠 수 있는 영양물질을 대상으로 시기별 함량 변화를 조사한 결과, 전질소는 $1.8{\sim}5.8\;mg/L$의 범위로 평균 3.8 mg/L, 전인산은 $0.01{\sim}0.08\;mg/L$의 범위로 평균 0.05 mg/L를 나타내었다. 남대천 유역의 원단위 오염부하량은 질소 550.4 ton/yr, 인산 79.1 ton/yr로 나타났는데, 질소원의 경우 가축사육에 의한 부하량이 358.1 ton/yr로 전체의 65.1 %를, 토지이용에 의한 부하량이 129.3 ton/yr로 전체의 23.5 %를, 인구에 의한 부하량이 63.0 ton/yr로 전체의 11.4 %를 차지하는 것으로 조사되었다. 인산원의 오염부하량은 가축 사육에 의한 오염부하량이 60.6 ton/yr로 전체의 76.6 %를, 인구에 의한 부하량이 13.3 ton/yr 로 전체의 16.8 %를, 토지이용에 의한 부하량이 5.2 ton/yr로 전체의 6.6 %를 차지하였다. 각 조사지점별 질소와 인산의 실측 오염부하량은 질소 452.5 ton/yr, 인산 5.4 ton/yr로 나타 났는데 원단위 오염부하량과 비교시 인산의 경우 상당한 차이를 나타내고 있었다.

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군산 연안 해역에서의 부영양화 제어에 관한 연구 (A study on Eutrophication control in coastal area of Gunsan)

  • 김종구;정태주
    • 한국환경과학회지
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    • 제12권9호
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    • pp.957-966
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    • 2003
  • Gunsan coastal area is one of region increasing pollution problems. To improve water quality, the reduction of these nutrients loads should be indispensible. In this study, the three-dimensional numerical hydrodynamic and ecosystem model were applied to analyze the processes affecting the eutrophication. In field survey, the average concentrations of dissolved inorganic nitrogen (DIN) and dissolved inorganic phosphorus(DIP) at surface waters were found to be 0.43mg/$\ell$ and 0.03mg/$\ell$ respectively, which were exceeding second grade of water quality criteria. In hydrodynamic modelling, the comparison between the simulated and observed tidal ellipses showed fairly good agreement. The ecosystem model was calibrated with the observed data in study area. The simulated results of DIN were fairly good coincided with the observed values within relative error of 32.39%, correlation coefficient(r) of 0.99. In the case of DIP, the simulated results were fairly good coincided with the observed values within relative error of 24.26%, correlation coefficient(r) of 0.82. The simulations of DIN and DIP concentrations using ecosystem model were performed under the conditions of 20∼80% reductions for pollutant loading. At simulation results, concentration of DIN and DIP were reduced to 20∼80% and under 10% in case of the 80% reduction of pollutant loading, respectively.

낙동강 유역의 수질관리를 위한 유역모델링 적용 연구 (Watershed Modeling Application for Receiving Water Quality Management in Nakdong River Basin)

  • 장재호;안종호
    • 한국물환경학회지
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    • 제28권3호
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    • pp.409-417
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    • 2012
  • SWAT model was applied for the Nakdong River Basin to characterize water quality variability and assess the feasibility of using the load duration curve to water quality management. The basin was divided into 67 sub-basins considering various watershed environment, and rainfall runoff and pollutant loading were simulated based on 6 year measurements of meteo-hydrological data, discharge data of treatment plants, and water quality data (SS, T-N and T-P). The results demonstrate that non-point source loads during wet season increase by 80 ~ 95% of total loads. Although the rate of water flow governs the amount of SS that is transported to the main streams, nutrient concentrations are highly elevated during dry season by being concentrated. This phenomenon is more pronounced in the lower basin, receiving large amounts of urban point source discharges such as treated sewages. Also, the load duration curves (LDC) demonstrate dominant source problems based on the load exceedances, showing that SS concentrations are associated with the rainy season and nutrients, such as T-P, may be more concentrated at low flow and more diluted at higher flow. Overall, the LDC method could be used conveniently to assess watershed characteristics and pollutant loads in watershed scale.

보청A유역 유량 및 영양물질 자동보정을 위한 HSPF-PEST 연계적용 (Automatic Calibration of Stream Flow and Nutrients Loads Using HSPF-PEST at the Bochung A Watershed)

  • 전지홍;최동혁;임경재;김태동
    • 한국농공학회논문집
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    • 제52권5호
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    • pp.77-86
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    • 2010
  • Hydrologic Simulation Program-Fortran (HSPF) coupled with PEST which is optimization program was calibrated and validated at Bochung watershed by using monitoring data of water quantities and nutrient loading. Although the calibrated data were limited, model parameters of each land use type were optimized and coefficient of determinations were ranged from 0.94 to 0.99 for runoff, from 0.89 to 1.00 for TN loading, and from 0.92 to 1.00 for TP loading. The optimized hydrological parameters indicated that the forested land could retain rainfall within soil layer with high soil layer depth and infiltration rate compared with other land use type. Hydrological characteristics of paddy rice field are low infiltration rate and coefficient of roughness. The calibrated parameters related to nutrient loading indicated generation of nutrient pollution from agricultural area including upland and paddy rice field higher than other land use type resulting from fertilizer application. Overall PEST program is useful tool to calibrate HSPF automatically without consuming time and efforts.

통계분석 기법을 이용한 錦江水系의 水質評價 (Evaluation of Water Quality in the Keum River using Statistics Analysis)

  • 김종구
    • 한국환경과학회지
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    • 제11권12호
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    • pp.1281-1289
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    • 2002
  • This study was conducted to evaluate water quality in the Keum River using multivariate analysis. The analysis data in Keum river made use of surveyed data by the ministry of environment from January 1994 to December 2001. Thirteen water quality parameter were determined on each sample. The results was summarized as follow; Water quality in the Keum River could be explained up to 71.39% by four factors which were included in loading of organic matter and nutrients by the tributaries (32.88%), seasonal variation (16.09%), loading of pathogenic bacteria by domestic sewage of Gapcheon (13.39%) and internal metabolism in estuary as lakes(9.03%). For spatial variation of factor score, four group was classified by each factor characterization. Station 1 and 2 was influenced by Daechung dam, station 3 was affected by domestic sewage of Gapcheon, station 10~12 was affected by estuary dyke and the rest station. The result of cluster analysis by station was classified into four group that has different water quality characteristics. In monthly cluster analysis, three group was classified according to seasonal characteristic. Also, in yearly cluster analysis, three group was classified. It is necessary to control the pollutant loadings by Gapcheon inflow domestic sewage in Daejeon city for the sake of water quality management of Keum river.

다변량해석기법을 이용한 수계의 수질평가 (The Evaluation of Water Quality in the Mankyung River using Multivariate Analysis)

  • 오연찬;이남도;김종구
    • 한국환경과학회지
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    • 제13권3호
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    • pp.233-244
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    • 2004
  • This study was conducted to evaluate water quality in the Mankyung River using multivariate analysis. The analysis data which was surveyed from January 1996 to December 2002 in Mankyung river was aquired by the ministry of environment. Twelve water quality parameters were determined on each survey. The results were summarized as follow; Water quality in the Mankyung River could be explained up to 74.90% by four factors which were included in loading of organic matter and nutrients by the tributaries(43.28%), seasonal variation(10.40%), loading of pathogenic bacteria by domestic sewage of Gapcheon (12.41%) and internal metabolism in river(8.81%). The result of cluster analysis by station was classified into three group that has different water quality characteristics. Especially, Iksan river was appeared to considerable water quality characteristics against other station. In monthly cluster analysis, three group was classified by seasonal characteristics. Also, in yearly cluster analysis, three group was classified. It is necessary to control the pollutant loadings by domestic sewage and livestock waste for water quality management of Mankyung river.

수생식물(부레옥잠 및 미나리)을 이용한 영양염류 제거에 관한 연구 (Feasibility of Aquatic Plants (Eichhornia crassipes and Water dropwort) for Nutrients Removal)

  • 최돈혁;강호;이미경
    • 대한환경공학회지
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    • 제32권2호
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    • pp.141-148
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    • 2010
  • 본 연구에서는 수생식물 중 부레옥잠(Eichhornia crassipes)과 미나리(Water Dropwort)를 이용하여 유입수의 부하변동에 따른 수처리 효율을 Lab-scale 실험을 통해 평가하고, 부레옥잠을 현장 적용하여 식물생체내 흡수된 질소, 인의 함량을 산정 제시하고자 하였다. 부레옥잠 식물체내 N, P 흡수율은 하수의 1차처리수를 적용하였을때 HRT 4 day에서 가장 높은 흡수율 1.06 g N/$m^2{\cdot}day$과 0.39 g P/$m^2{\cdot}day$으로 각각 나타났다. 부레옥잠의 경우, BOD 부하 185 kg BOD/$ha{\cdot}day$ 이하에서 80% 이상의 높은 효율을 보였으며, 미나리를 적용한 경우에는 80 kg BOD/$ha{\cdot}day$ 이하에서 70~80%의 효율을 나타냈다. 질소와 인의 처리효율 역시 부레옥잠이 미나리 보다 높은 부하에서도 처리 효율이 높은 것으로 나타났다. 부레옥잠을 이용하여 50% 이상의 TN 처리효율을 달성하기 위해서는 HRT 2 day 이상, 10 kg TN/$ha{\cdot}day$ 이하로 부하를 유지해야하고, TP의 경우, 80% 이상의 처리효율을 위해서는 TP 부하를 2.0 kg TP/$ha{\cdot}day$ 이하로 유지해야 하는 것으로 나타났다. 부레옥잠을 이용한 50일 동안의 현장적용 실험 결과로 부터 부레옥잠의 연중생산량은 30.9 $m^3/ha{\cdot}yr$로 나타났으며, 질소와인의 연간 흡수율은 76.7 kg N/$ha{\cdot}yr$, 13.4 kg P/$ha{\cdot}yr$로 높게 나타났다.

생장기와 동절기의 인공습지 오수처리 성능 (Wetland Performance for Wastewater Treatment in Growing and Winter Seasons)

  • 윤춘경
    • 한국농공학회지
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    • 제41권4호
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    • pp.37-46
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    • 1999
  • Field experimnet of constructed wetland for rural wastewater treatment was performed from July 1998 to April 1999 including winter to examine the seasonal effect on the wetland performance. The system worked without freezing even under $-10^{\circ}C$ of air temperature as long as watewater was flowing. BOD removal rates varied in similar pattern as the air temperature, and winter performance was relatively lower than that in the growing season. However, removing performance during winter was still significant, and BOD removal rates were almost the the same as in the growing season. SS removal rate was relativelyless affected by temmperature, but lower decay rate during the winter can result in accumulation of the SS in the system, which releases constituents in the next spring and can affect whole system performance. The winter removal rates of nutrients like T-N and T-P were decreased about half compared to the growing season and low temperature. To maintain stabilized wetland performanced including winter time, supplying minimum heating for plants could be an alternative in field application. Experimental data was compared with NADB(North Americal Wetlands for Water Quality treatment database), and general performance of the system was within the reasonable range. The pollutant loading and effluent concentration of the experimented system were in high margin. Base on the experiment and databases, the required effluent water quality could be achieved if loading rate adjusted as ilulstrated in the database.

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Investigating the Impact of Best Management Practices on Nonpoint Source Pollution from Agricultural Lands

  • 최예환
    • 한국농공학회지
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    • 제32권E호
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    • pp.1-19
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    • 1990
  • Abstract Over the last several decades, crop production in the United States increased largely due to the extensive use of animal waste and fertilizers as plant nutrient supplements, and pesticides for crops pests and weed control. Without the application of animal waste best management, the use of animal waste can result in nonpoint source pollution from agricultural land area. In order to increase nutrient levels and decrease contamination from agricultural lands, nonpoint source pollution is responsible for water quality degradation. Nonpoint source pollutants such as animal waste, ferilizers, and pesticides are transported primarily through runoff from agricultural areas. Nutrients, primarily nitrogen and phosphorus, can be a major water quality problem because they cause eutrophic algae growth. In 1985, it was presented that Watershed/Water Quality Monitoring for Evaluation BMP Effectiveness was implemented for Nomini Creek Watershed, located in Westmoreland County, Virginia. The watershed is predominantly agricultural and has an aerial extent of 1505 ha of land, with 43% under cropland, 54% under woodland, and 3% as homestead and roads. Rainfall data was collected at the watershed from raingages located at sites PNI through PN 7. Streams at stations QN I and QN2 were being measured with V-notch weirs. Water levels at the stream was measured using an FW-l Belfort (Friez FWl). The water quality monitoring system was designed to provide comprehensive assessment of the quality of storm runoff and baseflow as influenced by changes in landuse, agronomic, and cultural practices ill the watershed. As this study was concerned with the Nomini Creek Watershed, the separation of storm runoff and baseflow measured at QNI and QN2 was given by the master depletion curve method, and the loadings of baseflow and storm runoff for TN (Total Nitrogen) and TP (Total Phosphorus) were analyzed from 1987 through 1989. The results were studied for the best management practices to reduce contamination and loss of nutrients, (e.g., total nitrogen and total phosphorus) by nonpoint source pollution from agricultural lands.

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강우시 임하호 유입수 수질변동과 오염물질의 공간적 이동 특성 (Characteristics of Inflow Water Quality Variations and Pollutants Transport in Imha Reservoir during a Rainfall Event)

  • 이흥수;신명종;윤성완;정세웅
    • 한국물환경학회지
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    • 제29권1호
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    • pp.97-106
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    • 2013
  • The temporal and spatial variations of water quality in a stratified reservoir are fully dependent on the characteristics of inflow loading from its watershed and the transport regimes of pollutants after entering the reservoir. Because of the meteorological and hydrological conditions in Korea, the pollutants loading to reservoirs are mostly occur during rainfall events. Therefore it is important to understand the characteristics of pollutants loading from upstream rivers and their spatial propagation through the stratified reservoir during the rainfall events. The objectives of this study were to characterize the water quality variations in upstream rivers of Imha Reservoir during a rainfall event, and the transport and spatial variations of pollutants in the reservoir through extensive field monitoring and laboratory analysis. The results showed that the event mean concentration (EMC) of SS, BOD, $COD_{Mn}$, T-N, T-P, $PO_4-P$ are 8.6 ~ 362.1, 2.5 ~ 5.1, 1.5 ~ 5.1, 1.1 ~ 1.9, 8.3 ~ 57.1, 5.6 ~ 25.7 times greater than the mean concentrations of these parameters during non-rainfall period. The turbidity and SS data showed good linear correlations, but the relationships between flow and SS showed large variations because of hysteresis effect during rising and falling periods of the flood. The ratio of POC to TOC were 12.6 ~ 14.7% during the non-rainfall periods, but increased up to 28.2 ~ 41.7% during the flood event. The turbid flood flow formed underflow and interflow after entering the reservoir, and delivered a great amount of non-point pollutants such as labile and refractory organic matters and nutrients to the metalimnion layer of reservoir, which is just above the thermocline. Spatially, the lateral variations of most water quality parameters were marginal but the vertical variations were significant.