• 제목/요약/키워드: water quality characteristics

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금강유역 14개 관측점의 수질자료를 이용한 수질의 다변량분석 (Multivariate Analysis of Water Quality Data at 14 Stations in the Geum-River Watershed)

  • 임창수
    • 한국환경과학회지
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    • 제8권3호
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    • pp.331-336
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    • 1999
  • The monthly water quality data measured at 14 stations located in the Geum-River watershed were clustered into 2 to 7 clusters. Furthermore, factor analyses were conducted on Gabcheon and Yugucheon to characterize the water qualtiy, based on the information obtained from the results of culster analysis. The results of cluster analysis show that the water quality charactersitic of main stream of the Geum-River is somewhat different from that of substream of the Geum-River. Furthermore, the water quality characteristic of Gabcheon which is expected to have the most serious water quality problems in the Geum-River watershed shows the most different water quality characteristic from Yugucheon. Based ont he factor loadings in each factor, Gabcheon and Yugucheon have their own water quality characteristics. This is mainly because of composite factors such as different population density, industrial activities, and land use conditions in Gabcheon and Yugucheon subwatersheds.

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군산시 호소수에서의 수질특성과 THMs 생성에 관한 연구 (A Study on Water Quality and THMs Formation in Lake-Waters at Kunsan)

  • 황갑수;김강주;이영남;여성구;김진남
    • 한국환경보건학회지
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    • 제27권1호
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    • pp.44-50
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    • 2001
  • This study was carried out to investigate characteristics of water quality and THMs formation in lake-waters at kunsan. Of the parameters examined for water quality, pH, alkalinity, SO$_4$$^{-2}$ and Co- reflected the characteristics according to the origin, geography and water source of lakes while COD, SS, T-P, T-N and chlorophyll-a corelatively reflected well the influence of pollution factors around factors around lakes. The result of water quality analysis showed that most lakes in Kunsan area have the severe eutropnication problem, especially in summer. In lake-waters, THMFP overally continued to increase until 48 hour with the reaction time and THMs formation was largely achieved within 24 hour of the reaction time. The average formation ratio were 68.2% for CHCl$_3$, 23.6% for CHCl$_2$Br, 7.6% for CHClBr$_3$ and 0.6% for CHBr$_3$respectively and much difference depending on the reaction time was not shown. Overally, 96h-THEFP levels in lakes were high during June~September and showed higher tencency in lakes where could be regarded more contaminated on the whole. These results suggest that THMFP may be available for the management of lake-water quality as one if the useful parameters for the general evaluation of contamination. 96h-THEMFP failed to show the strong corelation individually with pH, TOC, COD and chlorphyll-a.

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우리나라 축산용 천층지하수 수질 특성 (Characteristics of ground water quality for livestock purpose in Korea)

  • 김진호;이경도;이종식;류종수;권순국
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2003년도 학술발표논문집
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    • pp.303-306
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    • 2003
  • This survey was carried out to investigate the chemical characteristics of ground water for livestock purpose and to estimate the influence of ground water quality by livestock farming. Water samples were collected three times in 2000, and analyzed for theirs chemical compositions using Korean Standard Methods for Water Quality. The EC of ground water was from 0.214 to 0.474 dS/m. $NO_3-N$ contamination range was from 3.56 to 11.81. The $SO_4{^{2-}}$ was $4.31{\sim}69.37mg/L$ and CI was $12.75{\sim}41.46mg/L$. The data of ground water quality indicated suitable quality for livestock. Also, the concentration of heavy metals in the sample could not make damage to the animals. The $NO_3-N$ concentration of the water by times are as follows: October (8.19 mg/L) > July (7.65 mg/L) > April (4.04 mg/L) with no significant differences during the livestock farming period. The average quality of groundwater for livestock is good for its purpose, and it was showed there was few influence by livestock farming.

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대청댐 저수지 퇴적물의 용출특성과 수질에 미치는 영향에 관한 연구 (A Study on Release Characteristics of Sediment and its Impacts on Water Quality in Daecheong Dam Reservoir)

  • 이요상;이경식
    • 환경영향평가
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    • 제9권2호
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    • pp.99-107
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    • 2000
  • In order to solve water quality problem of domestic dam reservoir, many projects have been performed in a point of view to restoration of water quality. This study was carried out to evaluate the effect of release from sediment on water quality and release characteristics. Daecheong dam reservoir was investigated for two years, from 1998 to 1999. The nutrient release rates of Daecheong reservoir is less than foreign eutrophic reservoir at anoxic condition. For the evaluation of the effect of nutrient release on water quality, internal and external loading was calculated at Daecheong reservoir. As total phosphorus loading from sediment is calculated 9.3 ton/yr and inflow loading from Daecheong reservoir watershed 118 ton/yr, internal loading shows the portion of 7.88% to external loading. At this study, because sampling point was choosed at the point where much sediment is accumulated, experimental result is more than average release rates. Because Daecheong reservoir shows complete thermal stratification and anoxic condition below 30m from water surface in summer seasons, released phosphorus from sediment can not transfer to epilimnion and eventually resettles. Therefore sediment has insignificant impacts on water quality on Daecheong dam reservoir.

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건축물내 급수설비의 수질변화 특성과 영향력 평가 (Assessment of Variable Characteristics in Water Quality of the Supply Systems in the Building)

  • 이현동;황재운;배철호;김상진
    • 한국물환경학회지
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    • 제20권4호
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    • pp.313-320
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    • 2004
  • In this study, variable characteristics of drinking water and the influences on underground water reservoirs, rooftop water tanks, and service water pipes in the building were assessed. The influence of underground water reservoir material and water capacity on water quality also were assessed. The results are the following as; First of all, the drinking water passing through underground water reservoirs or service water pipes in the building, averagely metal component concentration more increased from percent of 41.3 to percent of 74.2 totally than other items of water quality. On the other hand, both residual chlorine and total solid highly decreased 65.6 percent and 35.3 percent, respectively. Therefore, it was thought that water quality could be getting worse for microorganism re-growth by residual chlorine reduction, and total solid also could be a cause for extraneous matters accumulated in water reservoir. Secondly, the variations on water quality of each stage for water supply system in the building were higher in water service pipes connected from rooftop water tanks to the tap than in underground water reservoirs. In addition to, among of twelve items on water quality, ten items on water quality except dissolved oxygen and residual chlorine increased. Therefore, it was thought that the influence of water service pipes connected from rooftop water tanks to the tap on water quality were higher than other stages of water supply system in the building. Thirdly, in case of materials of underground water reservoir, it was likely that the variation on water quality by stainless steel and concrete materials got some similar. In case of water capacity, the variations on water quality of underground water reservoirs over $1,000m^3$ higher than those under $1,000m^3$. That reasons was likely that the retention time(49.72 hours averagely) of underground water reservoirs over $1,000m^3$ was two times longer than it of those under $1,000m^3$(23.37 hours). Therefore, it was thought that the influence on water quality by materials were some similar, but in case of water capacity, the influence of underground water reservoirs were higher.

우리나라 저수지의 용도에 따른 호안 식물상 차이 (Difference in Shoreline Flora According to the Usage of Reservoirs in Korea)

  • 조현석;조강현
    • 한국습지학회지
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    • 제17권4호
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    • pp.339-347
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    • 2015
  • 저수지의 이용목적에 따라서 수력발전용, 농업용수용, 생활 공업용수용 및 홍수조절용으로 구분한 우리나라 35개 저수지의 호안에서 출현하는 관속식물 종류와 지형, 수문, 물 및 토양 환경을 조사하여 이용목적에 따른 호안 환경과 식물상 특성의 차이를 규명하고자 하였다. 호안의 식물상은 저수지의 용도에 따라서 종수, 종류 및 식물종 특성에서 차이를 나타내었다. 단계별 변수선택법 결과에 의하면 저수지 호안의 출현종수는 중앙수위에서 범람빈도가 높고 호안의 연평균노출기간이 길수록 증가하였다. 주좌표분석과 집괴분석의 결과에서 저수지 호안의 식물상은 이용목적에 따라서 크게 3가지 유형, 홍수조절용과 생활 공업용수용, 농업용 및 발전용 저수지로 구분이 되었다. 식물상의 특성에 영향을 미치는 주요한 환경 요인은 연간 수위변동폭, 중앙수위 연범람빈도, LQI 지수 및 연평균노출기간이었다. 수위가 안정적으로 유지되고 수질이 중영양으로 유지되는 발전용 저수지에서는 종풍부도가 높고 침수식물종을 비롯한 수생식물종이 풍부한 연안대가 발달하였다. 수위변동이 심하고 수질이 빈영양 혹은 중영양인 홍수조절용과 생활 공업용수용 저수지 식물상은 수위변동역에서 단명의 교란지식물이 분포하였다. 수위변동이 중간 정도이고 중영양 또는 부영양인 농업용 저수지에서는 부엽식물과 부유식물과 같은 수면을 덮는 식물종이 특징적으로 분포하였다. 결론적으로 저수지 호안의 식물상 특성은 이용목적에 따라서 수위변동, 수질 등의 환경요인이 차이가 나타나고 이에 따라서 식물상의 구조와 종풍부도가 다르게 나타났다.

북한산국립공원(北漢山國立公園) 북동사면(北東斜面) 일대(一帶) 계류수질(溪流水質) 특성(特性) (Characteristics of Stream Water Quality in the Northeastern Part of Puk'ansan National Park)

  • 박재현
    • 한국산림과학회지
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    • 제88권1호
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    • pp.101-110
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    • 1999
  • 북한산국립공원(北漢山國立公園) 북동사면(北東斜面) 일대(一帶) 계류수(溪流水)의 수질특성(水質特性)을 파악함으로써 국립공원내(國立公園內) 계류슈질(溪流水質) 보전(保全)을 위한 과학적 기초 자료를 제공하기 위하여 1998년 7월부터 11월까지 5개월간 매월 4개 지점의 계류수질을 분석한 결과, 이 지역 계류수의 평균pH는 6.56, 평균용존산소량은 $10.22mg/{\ell}$로 하천수질환경기준에 의한 상수원수 1급수의 범위 내였다. 또한, 이 지역 계류수는 연수(軟水)이었으며, 물속에 용존된 양이온과 음이온은 평형관계(平衡關係)를 나타내었다. 전기전도도(電氣傳導度)는 pH와 1% 수준에서 유의한 부(負)의 상관관계(相關關係)를, 이온총량과는 1% 수준에서 유의한 정(正)의 상관관계(相關關係)를 나타내었으며, 탐방객수(探訪客數)와는 5% 수준에서 유의한 정(正)의 상관관계(相關關係)를 나타내어 계류수질오염에 탐방객수(探訪客數)가 영향하는 것으로 분석되었다. 한편, 다중회귀분석결과, 전기전도도의 설명에 유의한 영향을 미치는 인자는 pH, Zn, $Mg^{2+}$ 등 3개 인자(因子)이었다.

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활성탄 흡착공정에서의 요오드계 트리할로메탄 흡착 특성 (Adsorption Characteristics of Iodo-Trihalomethanes (I-THMs) in Granular Activated Carbon (GAC) Adsorption Process)

  • 손희종;염훈식;김경아;송미정;류동춘
    • 한국환경과학회지
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    • 제24권1호
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    • pp.65-71
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    • 2015
  • This study accessed the adsorption characteristics of the 9 trihalomethanes (THMs) on coal-based granular activated carbon (GAC). The breakthrough appeared first for $CHCl_3$ and sequentially for $CHBr_2Cl$, $CHBr_3$, $CHCl_2I$, CHBrClI, $CHBr_2I$, $CHClI_2$, $CHBrI_2$, and $CHI_3$. The maximum adsorption capacity (X/M) for the 9 THMs with apparent breakthrough points ranged from $1,175{\mu}g/g$ (for $CHCl_3$) to $11,087{\mu}g/g$ (for $CHI_3$). Carbon usage rate (CUR) for $CHCl_3$ was 0.149 g/day, 5.5 times higher than for $CHCl_3$ (0.027 g/day).

유입지천을 고려한 낙동강 본류구간의 공간적 수질특성 분석 (Spatial Water Quality Analysis of Main Stream of Nakdong River Considering the Inflow of Tributaries)

  • 김소래;김상민
    • 한국물환경학회지
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    • 제33권6호
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    • pp.640-649
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    • 2017
  • The purpose of this study is the analysis of the water quality spatial characteristics for the main stream of Nakdong River in consideration of the tributary inflow. The flow and water quality (BOD, TOC, TP) data for 32 monitoring stations located in the main stream and the tributaries of Nakdong River were collected from 2003 to 2016. From the results of the flow and water quality analyses for each site, a status map of the flow and the water quality for Nakdong River was produced. The water quality of each river section was classified according to seven river-environment standards. The water quality changes in the main stream before and after the confluence were analyzed spatially. As a result, the water quality of Kumho River, in particular the Kumho B to Kumho C section, is the worst among the tributaries. In addition, the water quality grades of the lower streams such as Nam River and Miryang are worse than that of the upper streams of the Nakdong River. In the case of the main stream, the water quality grades of the sections between the Wicheon and Nam River confluences and the section from Nakbon L to Nakbon N are relatively poor.

수분오염에 따른 경유의 연료적 특성 (The Fuel Characteristics of Diesel by Water Contamination)

  • 임영관;원기요;강병석;박소휘;박장민;강대혁
    • Tribology and Lubricants
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    • 제36권6호
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    • pp.385-390
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    • 2020
  • It rains heavily, such as long rain and typhoons, during a typical rainy season in Korea. In this season, several fuel contamination accidents by water and vehicular problems caused by water contaminated fuel occur. Many research groups have studied the effects of water contaminated fuel on vehicles and environment. However the characteristics of water contaminated fuel have not been studied. In this study, we prepared diesel samples with a constant ratio of water (0~30 volume %) using an emulsifier. Then, we analyzed these diesel samples for their representative fuel properties. In the analytical results, diesel with 30% water showed an increase in fuel properties such as density (823→883 kg/㎥), kinematic viscosity (2.601→6.345 ㎟/s), flash point (47→56℃), pour point (-22→2℃), CFPP (cold filter plugging point) (-17→20℃) and copper corrosion number (1a→2a). The low temperature characteristics, such as low pour point and CFPP, blocks the fuel filter in the cold season. In addition, water contaminated diesel decreases lubricity (190→410 ㎛) under high frequency reciprocating rig (HFRR) and derived cetane number (54.81→34.25). The low lubricity of fuel causes vehicle problem such as pump and injector damage owing to severe friction. In addition, the low cetane diesel fuel increases exhaust gases such as NOx and particulate matters (PM) owing to incomplete combustion. This study can be used to identify the problems caused by water contamination to vehicle and fuel facilities.