• 제목/요약/키워드: National water quality monitoring sites

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유역시스템 정화력을 고려한 생태위해성평가 사례연구: Lake Texoma Watershed (TX&OK, USA)를 대상으로 (Ecological Risk Assessment based on Watershed System Assimilative Capacity in take Texoma, Texas-Oklahoma, USA)

  • An, Youn-Joo;Donald H. Kampbell;Guy W. Sewell
    • 한국환경독성학회:학술대회논문집
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    • 한국환경독성학회 2003년도 추계국제학술대회
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    • pp.27-27
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    • 2003
  • Lake Texoma is located on the border of southern Oklahoma and northern Texas. It has 93,000 surface acres, and is a focus of the recreation, and farming industries in the region. There are potential stressors around the Lake Texoma watershed that may cause adverse ecological effects in the lake. System assimilative capacity (SAC) is the ability of abiotic and biotic processes to atteuniate the stressors. SAC Exceeded indicates potential of occuring adverse eco-effects. A number of representative chemical release sites and stressor sources in the surrounding watershed were characterized, and several impact sites having stressors sources, such as being near agriculture, landfills, housing areas, oil production fields and heavy use recreational activity, were selected for surface water, sediment, and groundwater monitoring. A paired reference site, having similar physical characteristics as its impact site, was also chosen based on its proximity to the impact site. Lake water samples were collected at locations identified as marina entrance, gasoline filling station, and boat dock at five marinas selected on Lake Texoma from September 1999 to December 2001. Paired water and sediment samples were also collected. Groundwater samples were collected at about 70 producing monitoring wells. Water quality parameters measured were inorganics (nitrate, nitrite, orthophosphate, ammonia, sulfate, and chloride), dissolved methane, total organic carbon (TOC) (or DOC), volatile organic compounds (VOCs) such as methyl tert-butyl ether (MTBE) and BTEX, and a suite of metals. Biotic communities were evaluated at impact and reference sites. Five basic components were measured; two terrestirial components (plants and bird comminitires) and three aquatic components (benthic inverbrates, litteral-zone fishes, ecosystem attribures). Potential impacts to these comminites were evaluated.

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한국형 부영양화지수를 이용한 소옥천 유역의 부영양 특성 분석 (Analysis of the Trophic Characteristics of the SoOak River Watershed Using the Korean Trophic State Index)

  • 박재범;갈병석;이철구;홍선화;최무진;서희승
    • 한국습지학회지
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    • 제20권4호
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    • pp.330-337
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    • 2018
  • 소옥천 유역 내 본류 8개 지점의 수질 모니터링 자료를 이용하여 한국형 부영양화지수($TSI_{ko}$)를 산정하고 COD, T-P, Chl-a에 의해 계산된 인자별 $TSI_{ko}$를 이용하여 하천에 대한 환경특성을 분류하고 평가하였다. 소옥천 유역의 경우 수심이 얕고 강우시 비점오염 유입, 하수처리장 방류수 유입, 체류시간 증가 등으로 조류가 성장하기 좋은 조건을 갖추고 있어 연중 중영양 이상의 영양 상태를 보이고 있다. 특히 대청호 유입 지점인 추소 지점의 경우 수리학적 특성으로 인해 수질이 악화되어 부영양 상태를 나타내고 있었다. 따라서 소옥천에 대한 정밀 모니터링을 통해 원인분석과 이에 따른 수질개선대책 수립이 우선적으로 필요할 것으로 판단된다.

강우시 및 비강우시 수질 모니터링을 통한 도암호 탁수 발생 원인 분석 (Characteristics of Spatial Variability in Water Quality on Stream of Lake Doam Watershed)

  • 권혁준;이재완;임정하;우수민;김종건;임경재;김동진;홍은미
    • 한국농공학회논문집
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    • 제62권6호
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    • pp.43-50
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    • 2020
  • The Doam Lake watershed is one of the non-point source management areas announced by the Ministry of Environment, and is a constant problem for the stream ecosystem dut to Storm water. In this study, a total of 48(rainfall) and 47(non-rainfall) sites were investigated for the entire watershed (Samyangcheon, Chahangcheon, Hoenggyecheon, Yongpyeongcheon, Songcheon, Lake Doam) on August 15, 2019 and on October 18, 2019 to estimate the source of turbid water in the Doam Lake watershed. Subsequently, water quality analysis was performed on Suspended Soild (SS), Turbidity, Total Phosphorus (TP), Total Nitrogen (TN), and Biochemical Oxygen Demands (BOD) and correlation among water quality parameters was analyzed based on the analyzed samples. As a result, most of the turbid water generated during rainfall was in highland fields. During rainfall, Hoengyecheon had the highest average SS concentration among all streams, and during non-rainfall, the average SS concentration was highest in Yongpyeongcheon, so the two stream were selected as vulnerable areas. However, since Yongpyeongcheon may be a temporary phenomenon due to river construction, additional continuous monitoring is required. Therefore, in the Doam Lake watershed, intensive management is required for vulnerable areas.

익산천 수질시료와 저질토의 오염도 평가 (Water Quality and Sediment Contamination in the Iksan Stream)

  • 서영석;조민;오병택
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제18권1호
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    • pp.123-128
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    • 2013
  • Water quality and contamination of sediment is a growing concern in the Iksan stream of Korea. Heavy metal contamination and changes in the physicochemical properties of the stream were evaluated. Water and sediment samples were collected from six sites during the dry and rainy seasons; pH, DO, EC, ORP, turbidity, $PO_4$-P, $NO_3$-N and selected heavy metals (Cu, Pb, Ni, As, Zn, Cd, Hg) were measured. Results showed almost no change in pH between seasons. DO was highest at site 2 (~2.63 mg/L) in the dry season; EC (1,540 ms/m) was greatest at site 1 in both seasons. The ORP gradually increased from the dry to rainy season at most of the sites and was highest at site 5. Turbidity was highest at site 1 and gradually decreased from the dry to rainy season at all sites except site 3. $PO_4$-P ranged from a high of 1,193mg/L at site 1 to in the dry season to a low of ~1.2 mg/L at site 4. In contrast, $NO_3$-N was highest at site 3 in the rainy season (12,531 mg/L). Among the heavy metals measured, Cu and Zn concentrations were highest at all sediment sites. Cu and Zn are added to livestock feed to improve reproductive rates and can be carried to the stream with manure. Transport of sediment and heavy metals during the rainy season is the major source of stream contamination and it is important to continue monitoring and take necessary action in these areas.

바이오순환림의 저농도액비 시용에 따른 토양수 및 지하수 수질 영향 분석 (Effect of Low Concentration Liquid Manure application on Soil Water and Groundwater Quality in Bio-Circulation Experimental Forest)

  • 홍은미;최진용;유승환;남원호;여진기;최인규
    • 한국농공학회논문집
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    • 제52권5호
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    • pp.37-45
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    • 2010
  • Manure recycling as fertilizer is one of solutions for the environmental problem related with livestock manure treatment as well as the ocean dumping ban act prohibiting manure disposal to the ocean. For the manure disposal, forest area can be a candidate place because the area has a wide range of applicable sites. However, the manure application to the forest has a possibility of causing environmental impacts including water quality problems due to nutrient loading. Therefore it is necessary to investigate water quality impact from manure disposal to the forestry plantation. In this study, ground and soil water quality had been monitored in the bio-circulation experimental forest where low concentration liquid manure (LCLM) was applied. Soil and groundwater samples were collected and analyzed weekly from April to October in 2008 and 2009. The mean and variation of NO3-N concentration in soil water of LCLM treatment places showed higher concentration than the reference places declining during growing season. In the case of groundwater from monitoring well in the downstream of disposal site, the $NO_3$-N concentration was 3.59 mg/L in 2008 and 3.26 mg/L in 2009 in average showing higher concentration than the reference well although the concentration was not exceed the national drinking water standard. To investigate the source of nitrate, $\delta^{15}N$ isotope analysis was also implemented. Its result showed that the LCLM application could be the nitrate source requiring further long-term monitoring soil and water quality.

Relationships among a Habitat-Riparian Indexing System (HIS), Water Quality, and Land Coverage: a Case Study in the Main Channel of the Yangsan Stream (South Korea)

  • Jeong, Kwang-Seuk;Kim, Dong-Kyun;Hong, Dong-Kyun;Choi, Jong-Yun;Yoon, Ju-Duk;Joo, Gea-Jae
    • 생태와환경
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    • 제42권4호
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    • pp.502-509
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    • 2009
  • In this study a total of 27 stream sites, at 1 km intervals, were monitored for simple physicochemical water characteristics, land coverage patterns, and stream environment characteristics using the Habitat-riparian Indexing System (HIS), in the Yangsan Stream. The HIS has been tested in previous research, resulting in some identification of advantages in the application to the stream ecosystems data. Even though reliable stream environment characterization was possible using HIS, there was no information about the application of this tool to present continuity of environmental changes in stream systems. Also the necessity was raised to compare the results of HIS application with land coverage information in order to provide useful information in management strategy development. The monitoring results of this study showed that changes of environmental degradation were well represented by HIS. Especially, stream environment degradation due to construction was relatively well reflected in the HIS monitoring results, and the main causality of Yangsan Stream degradation was expansion of the urbanized area. In addition, there were significant relationships between the HIS scores and land coverage information. Therefore, it is necessary to prepare appropriate options in controlling or managing the expansion of the industrialized areas in this stream basin in order to improve the stream environment. For this purpose, ensemble utilization of HIS results, water quality, and geographical information, resulting in integration with remote sensing processes can be possible.

강우시 밭의 비점오염물질 유출 특성 (Runoff Characteristics of NPS Pollution on Field in Rainy Season)

  • 원철희;최용훈;신민환;신동석;강동구;최중대
    • 한국물환경학회지
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    • 제27권5호
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    • pp.572-579
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    • 2011
  • We have examined the runoff characteristics of nonpoint source (NPS) in fields. Two monitoring sites were equipped with an automatic velocity meter and water sampler. Monitoring was conducted at fields 1 and field 2 during the rainfall event. Ten rainfall-runoff events were monitored and analyzed during the study period. The results show that runoff occurred if daily rainfall and intensity were higher than 40 mm and 1.6 mm/hr except a few extreme rainfall events with very high intensity. Runoff of field 1 was approximately twice of that of field 2. Event mean concentrations (EMC) and pollution load of analyzed water quality indices were also higher in field 2 than in field 1. Especially, TN load from field 2 was $75.4 mg/m^2$ and was about 5 times higher than that from field 1. Analysis of Pearson correlation coefficient of water quality parameter indicates that besides of TN all items in fields 1 have tight relationship respectively (p < 0.01). But those of fields 2 have a significant (p < 0.05). Estimating units loading of NPS, we suggested that variable such as soil texture, rainfall amount and intensity and slope were needed to be considered from agricultural landuses. The results of this study can be used as a basic data in the development and implementation of total maximum daily loads (TMDL) in Korea.

한강 주요지천의 지역적 및 계절적 수질변화 (Spatial and Seasonal Water Quality Variations of Han River Tributries)

  • 이영준;박민지;손주연;박진락;김귀다;홍창수;구동회;이중근;노창완;신경용;유순주
    • 환경영향평가
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    • 제26권6호
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    • pp.418-430
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    • 2017
  • 지표수의 수질은 음용수, 공업용수, 농업용수 등과 같이 다양한 용도로 이용하기 위해서 아주 중요하다. 다양한 수질변수들에 대한 정기적인 수질조사가 실시되고 있으며 정확하고 효과적인 분석 및 해석이 수반되어야 한다. 본 연구의 목적은 다변량 분석방법을 이용하여 지역적 및 계절적 수질변화를 평가하는데 있다. 2012년부터 2016까지 5년간 12개 조사지점에 대하여 유량(flow)과 수질항목(water temperature, pH, EC, DO, BOD, COD, SS, TN, TP 및 TOC)을 조사 분석하였다. 계절적 수질변화에서는 봄과 겨울의 BOD, TN, TP 및 TOC 평균농도가 여름 및 가을에 비하여 높게 조사되었다. 유량 및 SS의 평균농도가 다른 계절에 비하여 여름이 높았다. 상관분석에서 EC는 BOD(r=0.857), COD(r=0.854), TN(r=0.899) 및 TOC(r=0.910) 와 높은 상관성을 나타냈다. 주성분분석에서 요인 1은 TP, DO 및 pH을 포함하며 32.0%, 요인 2는 EC 및 TN을 포함하며 26.0%, 요인 3은 SS을 포함하며 18.0%의 기여율을 보였고, 요인 4는 유량을 포함하며 12.0%, 요인 5는 수온을 포함하며 10.0%를 보였다. 5개의 요인은 전체 수질변동 특성의 98.0%를 설명할 수 있었다. 안양천, 왕숙천, 중량천 및 탄천은 유기오염물질의 영향을 받는 것으로 조사되었다. 군집분석에서 조사지점에 대한 계절적 차이를 도출하였으며, 또한 군집분석 결과는 주성분분석 결과 해석을 더 잘 설명하게 되었다.

농촌유역의 강우사상별 농업 비점원오염물질 유출특성 (Characteristics of Agricultural Non-point Source Pollutants by Rainfall Events in Rural Watersheds)

  • 김진호;한국헌;이종식
    • 한국물환경학회지
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    • 제24권1호
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    • pp.69-77
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    • 2008
  • This study was conducted to know the characteristics of agricultural non-point source pollutants runoff by rainfall events at the upper catchment of Goseong reservoir in Gonjy city, Chungnam Province. For this study, the monitoring sites of the research catchment were set nineteen during the research period (between June 2005 and October 2006). Average runoff coefficient were observed 0.51 in 2005, 0.71 in 2006, respectively. The correlation coefficient (r) between the rainfall and peak-flow was investigated 0.787. By rainfall events, the water quality of the sites were shown like this : BOD 0.555~9.60 mg/L, T-N 0.01~13.50 mg/L, T-P 0.002~2.952 mg/L, and SS N.D~820.0 mg/L. The strong rainfall intensity was the most important factor of the soil erosion. The gabs of the arithmetic mean concentrations and the flow weighted mean concentrations were observed as the followings : BOD 0.0~29.2%, T-N 0.1~11.4%, T-P 0.4~95.2%, and SS 1.7~57.0% in 2005, and BOD 1.0~11.9%, T-N 0.7~7.3%, T-P 9.9~36.5%, and SS 6.6~36.5% in 2006, respectively. The BOD pollution load was 2,117 kg (36% of the total BOD loading of survey periods) while, T-N was 3,209.0 kg (27.9% of the total T-N loading of survey periods), T-P was 136.4 kg (37.4% of the total T-P loading of survey periods) and SS was 72,733.8 kg (51.8% of the total SS loading of survey periods) in the year 2005. In case of 2006, BOD load was 1,321.7, T-N was 2,845.8, T-P was 42.9, and SS was 16,275.8 kg, respectively.

도로 유형별 비점오염원 유출특성 분석 (Analysis of Nonpoint Sources Runoff Characteristic by Road Types)

  • 윤영삼;권헌각;이윤정;유재정;이춘식;이재관
    • 한국환경과학회지
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    • 제19권11호
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    • pp.1375-1384
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    • 2010
  • Growth in population and urbanization has progressively increased the loading of pollutants from nonpoint sources as well as point sources. Especially in case of road regions such as city trunk road, national road and highway are rainfall and pollutants runoff intensive landuses since they are impervious and emit a lot of pollutants from vehicle activity. This research was conducted to investigate the nonpoint sources concentration and quantifying stormwater pollutants which are contained in rainfall runoff water. Three different monitoring sites in Jinju and Changwon city were equipped with an automatic rainfall gauge and flow meter for measuring rainfall and the volume of rainfall runoff. In the case of average EMC value, city trunk road was shown the highest value in target water quality items like as BOD, COD, SS, TN and TP. Or the amount of runoff loads by water quality items showed the highest value in city trunk road. And runoff load in city trunk road was 43.8 times high value compared to highway by value of city trunk road $356.7 mg/m^2$, highway $8.150 mg/m^2$, national road $19.99 mg/m^2$ in the case of BOD.