• 제목/요약/키워드: EMC(Event mean concentration)

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산정방법에 따른 논 원단위 비교 (Comparison of Unit Load from Paddy Field by Various Estimation Methods)

  • 최동호;정재운;윤광식;최우정;조소현;범진아;유승화
    • 환경영향평가
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    • 제24권5호
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    • pp.407-419
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    • 2015
  • 본 연구는 영산강 수계 1지점과 섬진강 수계 1지점의 논 유출수 4년간 유량과 수질 모니터링 자료를 이용하여 원단위 산정방법에 따른 원단위 차이를 비교하였다. 원단위 산정방법은 실측부하량을 이용한 방법, 국립환경과학원의 새로운 원단위 산정 방법(NIER 방법), EMC 확률분포모형 중앙값을 이용한 방법, 산술평균 EMC와 산술평균 유출율을 이용한 방법을 활용하였다. 원단위 산정방법별 차이를 살펴본 결과 실측부하량을 이용한 방법과 NIER 방법의 원단위는 서로 비슷한 값을 보였지만, 확률분포모형(Lognormal, Gamma)을 이용한 원단위는 상대적으로 작게 나타났다. 한편 산술평균 EMC와 유출율을 이용하여 산정된 원단위는 NIER 방법보다 원단위가 크게 산정되는 것으로 나타났다. 또한 NIER 방법의 원단위는 1995에 조사된 환경부 원단위에 비해 BOD, COD, SS는 큰 값을 T-N은 작은값을, T-P는 비슷한 값을 산정되는 것으로 나타났다.

EMC 방법적용을 위한 논 대표 유출률 산정 (Estimation of Representative Runoff Ratio from Paddy Field for the Application of EMC Method)

  • 최동호;정재운;윤광식;진소현;최우영;최우정;김상돈;임병진;최유진
    • 한국물환경학회지
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    • 제26권6호
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    • pp.943-947
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    • 2010
  • Runoff ratio of paddy fields for the application of Event Mean Concentration (EMC) method was studied. To measure actual runoff ratio of paddy fields, a field monitoring was conducted for 2008 ~ 2009 period. Long-term rainfall data of four cities in major river basins were analyzed and weighting factors were developed to consider temporal and spatial variation of rainfall distribution of Korean peninsula. The observed runoff ratio ranged 0.00 ~ 1.20 and arithmetic mean were 0.25, respectively. However, the representative runoff ratio for paddy fields was determined as 0.41 according to the method suggested by National Institute of Environmental Research (NIER).

산림과 밭 지역 강우 유출수의 EMC 및 원단위 산정 (Determination of EMC and Unit Loading of Rainfall Runoff from Forestry-Crops Field)

  • 원철희;최용훈;서지연;김기철;신민환;최중대
    • 한국물환경학회지
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    • 제25권4호
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    • pp.615-623
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    • 2009
  • The research of the determination of event mean concentration (EMC) was focussed combined sewer overflows and highway runoff in korea. But those of non-urban areas are few. In this study, EMC and unit loading on land use types in Nogok watershed were estimated by runoff loading of non-point source (NPS) on non-urban area. Two monitoring sites were equipped with an automatic velocity meter, flow meter, and water sampler. Monitoring was conducted at two monitering site during the rainy season. The results show that the EMC ranges in forest land use are 1.3~2.6 mg/L for BOD, 2.0~16.1 mg/L for SS, 0.1~2.1 mg/L for TN, and 0.12~0.49 mg/L for TP. The unit loading of NPS in this study was difficult to compare directly with that used conventionally because of the difference of field investigation. In near future, it needs to conduct more systematic and long-term research about NPS within the watershed. The results of this research can be used to estimate the total pollution load management system (TPLMS) program in korea.

도암호 유역의 강우시 비점오염물질 유출 특성 (Characteristics of Non-point Pollution Discharge on Stormwater Runoff from Lake Doam Watershed)

  • 곽성진;발데브;김은정;이창근;이형진;허우명
    • 생태와환경
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    • 제45권1호
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    • pp.62-71
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    • 2012
  • Lake Doam watershed was surveyed to evaluate non-point source discharge characteristics and discharge load including several water quality parameters in Song Stream from July 2009 to July 2011. Concentrations of water pollutants were high during the rainfall period, especially, SS, TP and COD showed increasing tendencies toward cumulative water discharge but TN did not show much difference. SS, TP and COD had an initial flush effect of over 50 mm rainfall event but there was no clear tendency for rainfalls below that level. Event mean concentration (EMC) regarding the rainy and dry period showed large differences. Especially rainy season EMC (SS, TP, COD) demonstrated an increasingly high tendency. EMCs of COD, SS, TN and TP measured for twelve rain events were as high as 26.1, 866.0, 4.68 and 0.605 mg $L^{-1}$, respectively. COD, SS, TN and TP loadings from the highland agricultural region of the Song Stream watershed were 34,263, 1,250,254, 2,673 and 933 kg $yr^{-1}\;km^{-2}$, respectively, which were relatively higher than the results of other stream systems. Therefore, it is strongly recommended that long-term monitoring and non-point pollution reduction programs for the highland agricultural area to continue. Furthermore, this non-point source pollution loading research acquired from the highland agricultural area could be the base for reassessment.

포장지역내 강우유출수의 EMCs 및 부하량 산정 (Determination of Pollutant EMCs and Loadings of Runoff in Paved Areas)

  • 길경익;위승경;박무종
    • 한국방재학회 논문집
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    • 제8권4호
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    • pp.119-122
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    • 2008
  • 도로나 교량과 같은 불투수율이 높은 포장지역의 경우 차량의 통행으로 건기기간 동안 축적되어 있던 다양한 비점오염원이 강우 지속시간 동안 인근 하천에 유입되어 심각한 영향을 미치고 있다. 따라서 본 연구는 2년 동안 모니터링을 실시하여 각 오염물질별 유량가중평균농도 및 오염 부하량을 산정하였다. 모니터링 결과 TSS EMC는 11.60$\sim$230.90 mg/L의 범위, BOD EMC는 4.58$\sim$31.90 mg/L의 범위, TN과 TP의 EMC는 각각 1.86$\sim$9.20 mg/L, 0.14$\sim$1.55 mg/L의 범위로 산정되었다. 또한 오염 부하량은 TSS는 0.78$\sim$18.01 kg/day의 범위, BOD는 0.47$\sim$1.17 kg/day의 범위로 산정되었고, Pb은 0.00$\sim$0.01 kg/day의 범위, Zn은 0.01$\sim$0.06 kg/day의 범위로 산정되었다.

강우시 인공 초지의 비점오염물질 유출특성 및 상관성 (Washoff Characteristics of NPS Pollutants from Artificial Grassland)

  • 이정용;;최지연;이재운;김이형
    • 한국습지학회지
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    • 제11권3호
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    • pp.145-151
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    • 2009
  • 현재까지 국내의 수질관리 정책은 점오염원 관리를 우선시 하고 있다. 그러나 계속되는 점오염원의 관리에도 불구하고 호소수의 수질은 악화되고 있다. 비점오염원은 강우 시 발생하는 오염원으로 토지이용에 따라 발생하는 오염물질의 종류와 양이 달라 불확실성이 큰 오염원이므로 점오염원과 함께 비점오염원의 관리가 필요한 실정이다. 다양한 토지이용 중에서 인공초지(공원 묘지) 지점이 차지하는 비율이 낮기 때문에 원단위를 산정하는데 필요한 기초 데이터에 대한 연구가 전무한 상태이다. 따라서 본 연구는 인공초지(공원 묘지) 지점으로부터 강우 시 유출수와 함께 발생하는 비점오염물질의 유출특성 및 상관성을 파악하였다. 그 결과 강우 초기에 오염물질의 농도는 비교적 높게 유출되는 현상을 나타냈으며, 강우가 지속될수록 오염물질의 농도는 감소하는 것으로 나타났다. 그러나 첨두유량이 발생하면서 유출농도는 증가하였다. 또한 통계분석을 실시한 결과 오염물질별 상관성이 거의 없는 것으로 나타났다. 이러한 결과는 향후 부하량과 원단위 산정에 필요한 기초자료로 활용될 수 있을 것으로 기대된다.

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강우시 영농기와 비영농기의 광역논에서의 부유물질 (SS)과 COD의 유출특성 (SS and COD Runoff from a Rice Field Watershed during Storm Events in the Growing and Non-growing Seasons)

  • 이정범;이재용;김진수
    • 한국농공학회논문집
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    • 제59권2호
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    • pp.91-99
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    • 2017
  • The objective of this research was to investigate runoff characteristics of suspended solid (SS) and chemical oxygen demand (COD) from a paddy field watershed during storm events in the growing and non-growing seasons. Average of event mean concentration (EMC) of pollutants were 56.9 mg/L for SS and 23.9 mg/L for COD in the non-growing season and 50.3 mg/L for SS and 11.9 mg/L for COD in the growing season. The average EMC of SS in the study area was much lower than that in the uplands irrespective of cultivation, suggesting that paddy fields control soil erosion. This may be because flooding and wet soil in the growing season, and rice straw residue and stubble on the topsoil in the non-growing season reduce soil erosion. The changing tillage practice from fall tillage to spring tillage avoids soil erosion due to shortening of the tilled fallow period. However, the average EMC of COD in the non-growing season was about twice as much that in the growing season likely due to the runoff of organics like rice straw residues. The relationship between SS and COD loads and stormwater runoff volume was expressed by power function. The exponent for SS was higher than that for COD, suggesting that SS load increased with stormflow runoff more than COD load did. The mean SS and COD loads per storm during the non-growing season were much lower than those in the growing season, and therefore non-point source pollution in the growing season should be managed well.

활엽수림, 침엽수림 및 혼효림 지역의 강우시 비점오염물질 유출특성 (Runoff Characteristics of Non-point Source Pollutants from Different Forest Types During Rainfall Events)

  • 신민환;신동석;이재운;최재완;원철희;서지연;최용훈;최중대
    • 한국물환경학회지
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    • 제26권3호
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    • pp.507-517
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    • 2010
  • Long-term monitoring was conducted to identify the runoff characteristics of non-point source according to the three forest types (deciduous forest, coniferous forest and mixed forest) in this study. Rainfall events of each deciduous forest, coniferous forest, and mixed forest were 10, 8, 12, respectively. Average runoff depth and coefficients of each forest type were founded to be coniferous forest and were followed by others in turns : deciduous forest, and mixed forest because various conditions (i.e., rainfall property, Antecedent Precipitation Index (API), soil property, slope, and forest management) could change runoff characteristics. In the analysis of the first flush phenomenon, it showed that SS and T-P were sensitive for the first flush phenomenon. The first flush phenomenon of them were showed differently by rainfall intensity, rainfall duration, and amount of rainfall. The research results indicated that range of the Event Mean Concentration (EMC) values in deciduous forest were 0.8~2.4 mg/L for $BOD_5$, 2.0~13.4 mg/L for $COD_{Mn}$, 1.3~2.9 mg/L for DOC, 1.150~3.913 mg/L for T-N, 0.010~0.350 mg/L for T-P and 3.1~291.8 mg/L for SS and in coniferous forest were 0.8~2.2 mg/L for $BOD_5$, 1.9~3.6 mg/L for $COD_{Mn}$, 1.0~2.0 mg/L for DOC, 1.025~2.957 mg/L for T-N, 0.002~0.084 mg/L for T-P and 0.8~5.4 mg/L for SS. Also, range of the EMC values in mixed forest were 1.3~2.3 mg/L for $BOD_5$, 2.4~4.8 mg/L for $COD_{Mn}$, 1.1~2.1 mg/L for DOC, 0.385~2.703 mg/L for T-N, 0.016~0.080 mg/L for T-P and 2.3~30.0 mg/L for SS.

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.

강우강도와 토지이용을 고려한 비점오염물질 부하량 산정에 관한 연구 (Estimation of Pollutants Loading from Non-Point Sources Based on Rainfall Event and Land use Characteristics)

  • 이혜원;최남희;이용석;최정현
    • 대한환경공학회지
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    • 제33권8호
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    • pp.572-577
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    • 2011
  • 비점오염부하량 산정을 위해 사용되는 원단위는 쉽게 이용 가능하지만, 지역의 토지이용 특성과 강우강도의 시간적인 변이를 고려하지 못하는 단점이 있다. 본 연구에서는 간편하면서도 강우량에 따른 부하량 변화를 고려한 보다 정확한 비점부하량 산정방법을 개발 및 적용하였다. 경기도 경안천 유역에 위치한 두 개의 비점오염저감시설을 대상으로 2010년 6월부터 11월까지 모니터링을 수행하여 강우강도, 유출 특성, 오염부하 등에 관한 분석을 진행하였다. 비점오염원 유출수의 특성을 나타내는 유량가중평균농도(Event Mean Concentration; EMC)의 경우에는 도시 지역인 경기도 광주시 경안동이 산과 밭으로 이루어진 용인시 모현면에 비해 높거나 비슷한 값을 보였으나, TP (Total Phosphorus)의 경우 유역 내 농경지에 사용된 퇴비나 비료에 포함된 인의 영향으로 모현면이 경안동보다 더 높게 나타났다. 강우량과 오염물질 배출부하량과의 관계는 3차원 다항식에 의해 가장 잘 설명되었으며, 0.33~0.81 범위의 결정계수를 나타내고 있다. 산정된 유출율 및 부하량 함수의 기울기가 EMC 결과와 반대되는 경향을 보이는 것으로부터, 비점오염원은 토지이용 이외에도 지형, 토성, 수리 수문현상 등에 따라 배출특성이 달라짐을 알 수 있다. 따라서 비점오염물질의 유출 특성을 정확히 파악하기 위해서는 장기모니터링을 통한자료의 수집을 바탕으로 강우량에 따른 부하량 변화를 고려한 비점부하량 산정함수를 구하는 것이 필요하다.