• 제목/요약/키워드: Groundwaters

검색결과 151건 처리시간 0.022초

한반도 지열수의 지화학적 연구: 환경동위원소 및 수문화학적 특성 II. 중원 및 문경 지역 (Geochemistry of Geothermal Waters in Korea: Environmental Isotope and Hydrochemical Characteristics II. Jungwon and Munkyeong Areas)

  • 윤성택;고용권;최현수;염승준;소칠섭
    • 자원환경지질
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    • 제31권3호
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    • pp.201-213
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    • 1998
  • 탄산염형 지하수가 특징적으로 산출되고 있는 중원 및 문경 지역에서 유형별 자연수 (심부 지하수, 천부지하수, 지표수)를 채취하고 (기간: 1996-1997년) 수문지구화학 및 환경동위원소(황산염의 황, 물의 산소 및 수소, 삼중수소) 연구를 수행하였다. 연구지역에는 지구화학적으로 뚜렷g히 구분되는 두 유형의 자연수, 즉 탄산염형 및 알칼리형이 함께 산출된다. 탄산염형의 지하수는 수문화학적으로 $Ca(-Na)-HCO_{3}(-S0_{4})$ 유형의 특성을 보이지만, 알칼리형 지하수는 $Na-HCO_3$ 유형의 특성을 나타낸다. 탄산염형 지하수는 특징적으로 보다 낮은 pH와 높은 Eh 및 높은 용존이온 (특히, Ca, Na, Mg, $HCO_3$, $SO_4$) 함량을 갖는다. 두 유형의 지하수는 모두 방해석에 대하여 포화 또는 과포화 상태에 있다. 두 유형의 심부 지하수는 모두 핵실험 이전 (적어도 40년전)에 충진된 강우로부터 기원하여 오랜 수-암 반응에 의하여 진화하였다. 심부 지하수는 보다 젊은 시기에 충진된 물 (즉 천부 지하수 및 지표수)에 비하여 낮은 산소 및 수소 동위원소비를 갖는다. 그러나 지질 특성, 물의 화학성 및 환경동위원소 자료를 종합하여 보면, 두 유형의 심부 지하수는 각기 독특한 수문학적 및 수문지화학적 진화를 하였음을 알 수 있다. 탄산영형 지하수는 지역적으로 부화된 황화광물 (주로 황철석)의 용해에 의해 생성된 산성수의 혼합 결과로 형성되었는데, 황철석은 열수 광맥내 (중원 지역의 경우) 또는 무연탄종내 (문경 지역의 경우)에 존재하였다. 심부 순환하는 강우가 순환과정중 황철석을 만나지 않았다면 알칼리형 지하수 만이 생성되었을 것이다. 이와 같은 수문학적 및 수문지화학적 모델은 한반도에 부존하는 기타 탄산염형 지하수에도 성공적으로 적용될 수 있을 것으로 사료된다.

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전남 고금도 지역 지하수의 수리지구화학 (Hydrogeochemistry of Groundwaters at the Gogum island area in Jeonnam, Korea)

  • 박천영;안건상;정연중;신인현
    • 한국지구과학회지
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    • 제23권6호
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    • pp.474-485
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    • 2002
  • 본 연구의 목적은 전라남도 완도군 고금도 지역 지하수의 수리지구화학과 수소-산소동위원소를 파악하여 해수침투경로와 오염여부를 규명하는데 있다. 연구지역 지하수의 물리적인 특성은 중성과 전이환경에 속하며, 해수와 지표수의 영향을 받은 것으로 나타났다. 화학적인 특성에서도 해수의 침투, 육상의 오 ${\cdot}$ 폐수 및 농약이나 폐기물에 의해 오염이 진행되고 있다. 특히 지하수 중 여섯 지역에서 Cl은 먹는 샘물 기준치를 초과하는 것으로 나타났다. 파이퍼도에서 GG-4와 14지역은 해수의 침투로 오염되었으며, 수질유형을 구분하여 보면 GG-3, 7 및 13지역은 Na와 HCO$_{3}$가 지배적이고, GG-14지역은 해수와 같이 Na와 Cl이 지배적으로 나타났다. 수리지구화학적인 모델링 분석결과 해수의 방해석과 백운석 포화지수는 과포화상태이며, GG-3, 14 및 18지역에서 포화영역에 접근하고 있다. 수소-산소동위원소비에서 본 역 지하수의 기원은 순환수이며, GG-1, 5 및 14지역의 높은 산소동위원소는 지표수의 유입과 해수 침투에 의한 것이다. 본 연구결과 GG-14지역의 지하수는 해수의 침투에 의해 오염되어 있으며, GG-3, 7 및 13지역을 제외한 지하수들은 해수의 침투 및 인위적인 오염원에 의해 오염이 진행되고 있다.

심부 처분장 주변 지하수-암석 반응 생성물의 열역학적 예측 (Thermodynamic Prediction of Groundwater-Rock Interaction Products around Underground Disposal Sites)

  • 이종운
    • 자원환경지질
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    • 제48권2호
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    • pp.131-145
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    • 2015
  • 심부 처분장 주변 지하수에 의한 대수층 광물의 풍화 산물을 열역학적으로 예측하고자 하였다. 화강암질암 대수층의 지하수 화학조성을 이용하여 카올리나이트와 스멕타이트 간의 용해도 상수를 구한 결과, 심부에 위치하는 지하수에서 이들 간의 반응이 평형상태에 있음을 관찰하였으며 평형상태일 때의 용해도 상수의 대수값은 카올리나이트와 Ca-, Mg-, Na-스멕타이트의 반응에 대해 각각 약 -14.56, -15.73, -7.76을 나타내었다. 상안정도 상에서 대부분의 화강암질암 심부지하수는 카올리나이트-스멕타이트 평형 경계에 위치하거나 스멕타이트와 일라이트에 대하여 안정한 것으로 나타났다. 염기성암 대수층의 천부지하수를 분석한 결과, 화강암질암 대수층의 심부지하수와 유사한 안정 영역 상에 도시되어 스멕타이트와 일라이트를 형성하는 것으로 나타났으며, 이는 대수층을 구성하는 일차광물의 광물학적 조성이 풍화산물 형성에 큰 영향을 미칠 수 있음을 나타낸다.

공주시 유구읍 명곡리지역 천부 및 심부지하수의 지화학적 수질특성과 오염 (Geochemical Water Quality and Contamination of Shallow and Deep Groundwaters in Myunggok-ri, Kongju)

  • 정찬호;황정;박충화
    • 자원환경지질
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    • 제31권6호
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    • pp.485-498
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    • 1998
  • The water-rock interaction and anthropogenic contamination affecting to geochemical composition of shallow and deep groundwaters were investigated in the agricultural area of Myunggok-ri, Kongju. The shallow groundwater is classified into the chemical types of $Ca-HCO_3$ and $Ca-Cl(SO_4)$ and shows weak acid having an average pH 6.2. Deep groundwater shows the uncontaminated composition of the chemical types of $Na-HCO_3$ and Na $(Ca)-HCO_3$ with pH of 8.4~8.8. The grouping approach of chemical data of waters shows the distinguished trend between water composition influenced anthrophogenic input and water composition mainly determined by natural process such as water-rock interaction. The main anthropogenic inputs affecting chemical composition of shallow groundwater are the contaminants such as $K^+$, $NO_3{^-}$, $Cl^-$ having average values of 4.4 mg/l, 22 mg/l, 13.7 mg/l, respectively. The contaminants were probably derived from fertilizer, sweage, septic tank, and stable, etc. The hydrogen and oxygen isotopic compositions indicate that five deep groundwaters were recharged from different altitudes, and that shallow and deep groundwaters were originated from meteoric water. Tritium contents of waters suggest that deep groundwater was recharged before or just after 1950s, and that shallow groundwater is much younger than deep groundwater. The results of this study may serve as a basic data for the future study of shallow groundwater as a drinking water in agricultural area, in Korea.

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울산 울주지역 소규모 수도시설 지하수의 수리지화학적 특성 연구 (Hydrogeochemical Characteristics of Groundwater in the Small Waterworks at Ulju Region, Ulsan)

  • 김동수;김문수;조성진;김익현;이헌민;황종연;박선화;조훈제;김태승;김현구
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제22권5호
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    • pp.71-81
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    • 2017
  • The hydrogeochemical characteristics of groundwater in the small waterworks are examined with 81 groundwater samples in Ulju region, Ulsan. The pH ranged in 6.3-8.2 and did not exceed the drinking water standards. Electrical conductivity ranged from $50{\mu}S/cm$ to $1,719{\mu}S/cm$. It indicated that the electrical conductivities in groundwaters at the study area are relatively low, compared with other groundwaters in Ulsan area. The calcium concentrations in groundwaters ranged from 3.55 to 113.01 mg/L, and sodium concentrations ranged from 2.02 to 65.50 mg/L. Nitrate concentrations ranged from 0 to 100.56 mg/L and potassium concentrations ranged from N.D (not detected) to 2.50 mg/L. Major cations and anions were mainly derived from the water-rock interaction involving feldspar, gypsum and calcite. The groundwaters were mainly the $Ca-(Na)-HCO_3$ type, classified as the early stage of groundwater evolutions. The correlation between electrical conductivities and Ca concentrations in groundwaters was relatively high ($R^2=0.74$). In the correlations between ions, the correlation coefficient between $SO_4$ and Ca was 0.65 and between Mg and $HCO_3$ was 0.65.

Beneficial effects of natural Jeju groundwaters on lipid metabolism in high-fat diet-induced hyperlipidemic rats

  • Wang, Yan-Chao;Lu, Jin-Miao;Jin, Hui-Zi;Ma, Ai-Niu;Zhang, Jin-Yang;Gong, Nian;Xiao, Qi;Zhu, Bin;Lv, Ying-Fang;Yu, Na;Zhang, Wei-Dong;Wang, Yong-Xiang
    • Nutrition Research and Practice
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    • 제8권2호
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    • pp.165-171
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    • 2014
  • BACKGROUND: Groundwater is believed to possess many beneficial effects due to its natural source of various minerals. In this study, we examined the effects of natural Jeju groundwater S1 (Samdasoo$^{TM}$), S2 and S3 pumped up from different locations of Jeju Island, Korea, along with local tap water, on body weight gain, serum lipids and lipoproteins, and liver histopathology in high-fat diet-induced hyperlipidemic rats. MATERIALS/METHODS: Rats were randomly and equally divided into 6 groups. Different water samples were supplied to the hyperlipidemic rats as their daily drinking water and the widely-used anti-hyperlipidemic drug simvastatin was used as a positive control. Body weight, serum lipids and lipoproteins were measured weekly. Liver weight, liver index and liver histopathology were examined after the execution of the rats. RESULTS: After drinking Jeju groundwaters for two months, S2 but not S3 significantly reduced weight growth and serum triglycerides levels and increased high density lipoprotein-C (HDL-C) without affecting total cholesterol or LDL-C. S1 and particularly S2 significantly reduced the severity of liver hypertrophy and steatosis. All Groundwaters had much higher contents of vanadium (S3>S2>S1>>tap water) whereas S1 and S2 but not S3 markedly blocked autoxidation of ferrous ions. CONCLUSION: Jeju Groundwater S1 and particularly S2 exhibit protective effects against hyperlipidemia and fatty liver and hypothesize that the beneficial effect of Jeju Groundwaters may be contributed from blockade of autoxidation of ferrous ions rather than their high contents of vanadium.

Hydrogeochemical study of a watershed in Pocheon area: controls of water chemistry

  • Kim, Kyoung-Ho;Yun, Seong-Taek;Chae, Soo-Ho;Jean, Jong-Wook;Lee, Jeong-Ho;Kweon, Hae-Woo
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2004년도 임시총회 및 추계학술발표회
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    • pp.121-121
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    • 2004
  • The groundwater in the Pocheon area occurs from both a fractured bedrock aquifer in igneous and metamorphic rocks and an alluvial aquifer with a thickness of <50 m, and forms a major source of domestic and agricultural water supply. In this study, we performed a hydrogeochemical study in order to identify the control of geochemical processes on groundwater quality. For this study, groundwater level and physicochemical parameters (EC, Eh, pH, alkalinity) were monitored once a month from a total of 150 groundwater wells between June 2003 to August 2004. A total of 153 water samples (13 surface water, 66 alluvial groundwater, 74 bedrock groundwater) were also collected and analyzed in February 2004. Groundwater chemistry in the study area is very complex, depending on a number of major factors such as geology, degree of chemical weathering, and quality of recharge water. Hydrochemical reactions such as the leaching of surficial and near-solace soil salts, dissolution of calcite, cation exchange, and weathering of silicate minerals are proposed to explain the chemistry of natural groundwater. Alluvial groundwaters locally have very high TDS concentrations, which are characterized by their chloride(nitrate)-sulfate-bicabonate facies and low Na/Cl ratio. Their grondwater levels are highly fluctuated according to rainfall event. We suggest that high nitrate content and salinity in such alluvial groundwaters originates from the local recharge of sewage effluents and/or fertilizers. Likewise, high concentrations of nitrate were also locally observed in some bedrock groundwaters, suggesting their effect of anthropogenic contamination. This is possibly due to the bypass flow taking place through macropores. Tile degree of the weathering of silicate minerals seems to be a major control of the distribution of major cations (sodium, calcium, magnesium, potassium) in bedrock groundwaters, which show a general increase with increasing depth of wells. Thermodynamic interpretation of groundwater chemistry shows that the groundwater in the study area is in chemical equilibrium with kaolinite and Na-montmorillonite, which indicates that weathering of plagioclase to those minerals is a major control of hydrochemistry of bedrock groundwater. The interpretation of the molar ratios among major ions, as well as the mass balance calculation, also indicates the role of both dissolution/precipitation of calcite and Ca-Na cationic exchange as bedrock groundwaters evolves progressively.

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서해 연안지역 천부지하수의 수리지구화학 : 연안 대수층의 해수 혼입에 관한 연구 (Hydrogeochemistry of shallow groundwaters in western coastal area of Korea : A study on seawater mixing in coastal aquifers)

  • 박세창;윤성택;채기탁;이상규
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제7권1호
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    • pp.63-77
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    • 2002
  • Salinization is an important environmental problem encountered in coastal aquifers. In order to evaluate the salinization problem in the western coastal area of Korea, we have performed a regional hydrochemical study on shallow well groundwaters (N=229) collected within 10 km away from the coastline. The concentrations of analyzed solutes are very wide in range, suggesting that the hydrochemistry is controlled by several processes such as water-rock interaction, seawater mixing, and anthropogenic contamination. Based on the graphical interpretation of cumulative frequency curves for some hydrochemical parameters (esp., $Cl^{-}$ and ${NO_3}^-$), the collected water samples were grouped into two major populations (1) a background population whose chemistry is predominantly affected by water-rock interaction, and (2) an anomalous population which records the potential influences by either seawater mixing or anthropogenic pollution. The threshold values obtained are 34.7 mg/l for $Cl^{-}$ and 37.2 mg/l for ${NO_3}^-$, Using these two constituents, groundwaters were further grouped into four water types as follows (the numbers in parenthesis indicate the percentage of each type water) : (1) type 1 waters (38%) that are relatively poor in $Cl^{-}$ and ${NO_3}^-$, which may represent their relatively little contamination due to seawater mixing and anthropogenic pollution; (2) type 2 waters (21%) which are enriched in $Cl^{-}$, Indicating the considerable influence by seawater mixing; (3) ${NO_3}^-$-rich, type 3 waters (11%) which record significant anthropogenic pollution; and (4) type 4 waters (30%) enriched in both $Cl^{-}$ and ${NO_3}^-$, reflecting the effects of both seawater mixing and anthropogenic contamination. The results of the water type classification correspond well with the grouping on a Piper's diagram. On a Br x $10^4$versus Cl molar ratio diagram, most of type 2 waters are also plotted along or near the seawater mixing line. The discriminant analysis of hydrochemical data also shows that the classification of waters into four types are so realistic to adequately reflect the major process(es) proposed for the hydrochemical evolution of each water type. As a tool for evaluating the degree of seawater mixing, we propose a parameter called 'Seawater Mixing Index (S.M.I.)’ which is based on the concentrations of Na, Mg, Cl, and $SO_4$. All the type 1 and 3 waters have the S.M.I. values smaller than one, while type 2 and type 4 waters mostly have the values greater than 1. In the western coastal area of Korea, more than 21% of shallow groundwaters appear to be more or less affected by salinization process.

심부지하수 수질 보호를 위한 천부포획정 공법

  • 김강주;박성민;염병우
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2003년도 추계학술발표회
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    • pp.511-514
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    • 2003
  • Nowadays, wells tapping the deep aquifers become general because water quality of the shallow groundwater has been gradually degraded over the last 30 years as a result of rapid industrialization and intensive agricultural activities. However, many of the deep wells also suffer problems of water-quality degradation in several years after the well installation, nevertheless those were properly completed and managed. It is believed that the heavy pumping from deep wells causes the doward movement of the contaminated, shallow groundwaters and introduces them into the deep aquifers. In this study, we introduces a shallow capture well system, which could effectively prevent the shallow groundwaters of poor water duality from moving into the deep aquifers by pumping of deep production wells. Even though additional costs are required to apply this system, we believe that this method could be appropriate for the deep wells that are important for the public health.

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Heavy metals and VOCs contamination of urban Broundwaters in Seoul, Korea

  • Park, Seong-Sook;Yun, Seong-Taek;Park, Byoung-Young;Yu, Soon-Young
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2002년도 추계학술발표회
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    • pp.291-295
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    • 2002
  • We measured the concentrations of heavy metals and VOCs in groundwaters (N=38) in Seoul. The comparison of our data with U.S. Environmental Protection Agency's Maximum Contaminant Levels for Drinking Water and with the Korean Drinking Water Standards shows that most of the metals except for Fe and Mn do not exceed the levels. However, the concentrations of most heavy metals (esp., Zn, Cu, Cr, Ni) tend to increase in residential and industrialized areas. The examination of the metal speciation using Anodic Stripping Voltammetry (ASV) and TOC analyzer Indicates that large amounts of Zn occur as labile metal fraction, whereas Cu occurs as non- labile forms at many sites, possibly due to its tendency to be adsorbed onto inorganic colloidal particles to form electroinactive species in groundwater. The most frequently existed VOCs in Seoul groundwaters are trichloroethylene and tetrachloroethylene, especially in agricultural, industrial, and high traffic areas.

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