• 제목/요약/키워드: groundwater-rock interaction

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화강암지역 지하수 수질의 특징과 불소원인에 관한 물-암석반응 연구 (Geochemical Aspects of Groundwater in Granite Area and the Origin of Fluoride with Emphasis on the Water-Rock Interaction)

  • 추창오;김종태;정일문;김남원;정교철
    • 지질공학
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    • 제18권1호
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    • pp.103-115
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    • 2008
  • 이 연구의 목적은 경남 북서부 화강암 분포지역 지하수의 지구화학적 특징 및 불소의 원인을 물-암석반응으로 이해하는 데 있다. 이를 위하여 지하수의 수질과 모암인 화강암의 주요 성분간의 부화경향성을 검토하였으며, 변질된 암석내 광물의 미세조직을 전자현미경으로 관찰하고 화학성분을 분석함으로써 물-암석반응에 따른 지하수내 불소의 용존 원인을 해석하였다. 불소함량과 경도를 비교한 결과 이들 간에는 뚜렷한 상관성은 나타나지 않는다. 그러나 불소함량과 pH는 대체로 서로 비례하는 경향을 보이며, 공의 심도가 깊어질수록 불소함량도 증가한다. 흑운모의 변질작용은 벽개를 따라 일어나거나, 결정의 가장자리 부분에서 가장 우세하게 일어난다. 물-암석반응에 의하여 흑운모가 쉽게 변질되므로 본 연구지역의 지하수내 불소의 주공급원이 될 가능성이 가장 높다.

지하수 수질과 지질의 통계학적 상관성 분석 (Analysis on Statistical Relationship between Groundwater Quality and Geology)

  • 김종태;박상주;강미아;추창오;정교철
    • 지질공학
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    • 제17권3호
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    • pp.445-453
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    • 2007
  • 이 연구는 거창, 합천, 창녕지역 지하수를 대상으로 물-암석 반응에 따른 수질특성을 해석하고, 지질과 수질간의 통계학적 분석을 통하여 상관성을 규명하는 데 그 목적을 두고 있으며 수질변화를 결정하는 물-암석반응 메커니즘을 해석하였다. 이들 암종과 수질과의 상관성을 분석한 결과 불소의 경우 섬록암류에서는 철과 알루미늄, 안산암류에서는 염소와 질산성질소와의 상관성이 높게 나타난다. 경도, 증발잔류물, 황산이온 등은 화강암을 포함한 모든 암종에서 서로 높은 상관성을 나타내며 특히, 퇴적암에서 더욱 밀접한 관계를 나타낸다. 암반지하수 수질은 심도가 깊어짐에 따라 물-암석과의 반응을 많이 거치면서 TDS(불소, 경도, 증발잔류물, 황산이온 등)가 증가한다고 인식되어 왔으나, 본 연구결과 개발심도와 수질결과와의 상관성은 미약한 것으로 나타났다. 이는 본 지역 대수층의 수리지질학적 요소가 복잡하거나, 심도에 따른 물-암석반응의 경로에 일관성이 결여되었기 때문인 것으로 보인다.

제주도 지하수 내 바나듐의 산출 특성 (Occurrence of Vanadium in Groundwater of Jeju Island, Korea)

  • 현익현;윤성택;김호림;감상규
    • 한국환경과학회지
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    • 제25권11호
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    • pp.1563-1573
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    • 2016
  • The aim of this study was to evaluate the occurrence of vanadium in Jeju Island groundwater, focusing on the spatio-temporal patterns and geochemical controlling factors of vanadium. For this, we collected two sets of groundwater data: 1) concentrations of major constituents of 2,595 groundwater samples between 2008 and 2014 and 2) 258 groundwater samples between December 2006 and June 2008. The concentrations of groundwater vanadium were in the range of $0.2{\sim}71.0{\mu}g/L$ (average, $12.0{\mu}g/L$) and showed local enrichments without temporal/seasonal variation. This indicated that vanadium distribution was controlled by 1) the geochemical/mineralogical composition and dissolution processes of original materials (i.e., volcanic rock) and 2) the flow and chemical properties of groundwater. Vanadium concentration was significantly positively correlated with that of major ions ($Cl^-$, $Na^+$, and $K^+$) and trace metals (As, Cr, and Al), and with pH, but was negatively correlated with $NO_3-N$ concentration. The high concentrations of vanadium (>$15{\mu}g/L$) occurred in typically alkaline groundwater with high pH (${\geq}8.0$), indicating that a higher degree of water-rock interaction resulted in vanadium enrichment. Thus, higher concentrations of vanadium occurred in groundwater of $Na-Ca-HCO_3$, $Na-Mg-HCO_3$ and $Na-HCO_3$ types and were remarkably lower in groundwater of $Na-Ca-NO_3$(Cl) type that represented the influences from anthropogenic pollution.

Distribution of Rare Earth Elements and Their Applications as Tracers for Groundwater Geochemistry - A Review

  • Hwang, Heejin;Nyamgerel, Yalalt;Lee, Jeonghoon
    • 한국지구과학회지
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    • 제42권4호
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    • pp.383-389
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    • 2021
  • Several studies investigating the behavior and environmental distribution of rare earth elements (REEs) have been reviewed to determine the geochemical processes that may affect their concentrations and fractionation patterns in groundwater and whether these elements can be used as tracers for groundwater-rock interactions and groundwater flow paths in small catchments. Inductively coupled plasma-mass spectrometry (ICP-MS), equipped with an ultrasonic nebulizer and active-film multiplier detector, is routinely used as an analytical technique to measure REEs in groundwater, facilitating the analysis of dissolved REE geochemistry. This review focuses on the distribution of REEs in groundwater and their application as tracers for groundwater geochemistry. Our review of existing literature suggests that REEs in ice cores can be used as effective tracers for atmospheric particles, aiding the identification of source regions.

문경지역 심부지하수의 수리화학 및 환경동위원소 연구 (Hydrochemistry and Environmental Isotope Studies of the Deep Groundwater in the Munkyeong Area)

  • 고용권;김천수;배대석;이동익
    • 자원환경지질
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    • 제33권6호
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    • pp.469-489
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    • 2000
  • The hydrogeochemical and isotopic studies on deep groundwater (below a 550 m depth from the ground surface) in the Munkyeong area, Kyeongbuk province were carried out. Two types of deep groundwater (${CO_2}$-rich groundwater and alkali groundwater) occur together in the Munkywong area. ${CO_2}$-rich groundwater (Ca-${HCO_3}$ type) is characterized by low pH (5.8~6.5) and high TDS (up to 2,682 mg/L.), while alkali groundwater (Na-${HCO_3}$ type) shows a high pH (9.1~10.4) and relatively low TDS (72~116 mg/L). ${CO_2}$-rich water may have evolved by ${CO_2}$ added at depth during groundwater circulation. This process leads to the dissolution of surrounding rocks and Ca, Na, Mg, K and ${HCO_3}$ concentrations are eniched. The low $Pco_2$ ($10^{-6.4}$atm) of alkali groundwaters seems to result from the dissolution of silicate minerals without a supply of ${CO_2}$. The ${\delta}^{18}O$ and ${\delta}^D$values and tritium data indicate that two types of deep groundwater were both derived from pre-thermonuclear meteoric water and have evolved through prolonged water-rock interaction. The carbon isotope data show that dissolved carbon in the ${CO_2}$-rich water was possibly derived from deep-seated ${CO_2}$ gas, although further studies are needed. The ${\delta}^{34}S$ values of dissolved sulfate show that sulfate reduction occurred at great depths. The application of various chemical geothermometers on ${CO_2}$-rich groundwater shows that the calculated deep reservoir temperature is about 130~$l75^{\circ}C$. Based on the geological setting, water chemistry and environmental isotope data, each of the two types of deep groundwater represent distinct hydrologic and hydrogeochemical evolution at depth and their movement is controlled by the local fracture system.

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여수 북동부 화산암 지역 시추공 지하수의 지화학 특성 (Geochemistuy of the Borehole Groundwater from Volcanic Rocks in the Northeastern Part of Yeosu Area)

  • 고용권;김경수;배대석;김천수;한경원
    • 자원환경지질
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    • 제34권3호
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    • pp.255-269
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    • 2001
  • 여수 북동부 화산암지역에서 다중패커 시스템(Multi-packer system)을 이용하여 구간별로 시료 채취를 수행하고, 시추공 지하수에 대한 지화학 특성 연구를 수행하였다. MP system에 의해 구간별로 격리된 지하수의 pH(up to 9.6)는 기존 시료채취방법에 의해 측정된 pH(7.0~7.9)보다도 매우 높은 값을 보여준다. 시추공 지하수의 수리화학자료는 구간별로 특징적인 화학조성을 나타낸다. 이는 지하수의 지화학적 특성이 단열체계특성에 의해 지배를 받는 지하수 유동로를 따라 진행되는 물-암석 반응에 의해 진화되었음을 지시한다. 특징적으로 시추공 K1 하부구간(심도138~175m)의 지하수는 높은 Ca 함량(up to 160mg/L)과 Cl 함량(up to 293mg/L)을 보이는 Ca-Cl$_2$유형을 보여주며, Na 함량(up to 67mg/L) 과 SO$_4$함량(105mg/L) 역시 기타 구간에 비해 높은 값을 보여준다. 이러한 지하수의 지화학적 특성은 해수혼합, 양이온교환반응 및 황철석의 산화반응 등에 의해 진화된 것으로 해석할 수 있다.

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포화된 암반체에 위치한 공동의 발파충격해석 (The Impulsive Analysis of the Cavern in Saturated Rock Mass)

  • 김대홍;이경진;황신일;김진웅
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 1994년도 가을 학술발표회 논문집
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    • pp.201-208
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    • 1994
  • To secure long-term structural safety of underground openings for radioactive waste disposal, the proper structural safety analyses are required. Especially, the structural analysis for underground openings should consider the effects of groundwater pressure. The objective of this study is to develop the structural analysis method for saturated rock masses. In this study, the interaction between groundwater distribution and structural behavior of rock masses are carried out to develop the structural analysis method of saturated rock masses. Then, a 3-Dimensional Multi-Phase Dynamic Analysis Program (MPDAP-3D) has been developed by modifying the existing MPDAP which is based on the concept of 2-dimensional two-phase media.

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Water chemistry controlled by drainage basin: Case study in the Han River, South Korea

  • 류종식;이광식;신형선;안규홍;장호완
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2005년도 총회 및 춘계학술발표회
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    • pp.405-407
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    • 2005
  • To evaluate the main hydrogeochemical characteristics, river waters are investigated using element리 and isotopic compositions in South Korea. In this area, the chemical compositions are mostly classified into three groups; $Ca^{2+}-{HCO_3}^-$ type, $Ca^{2+}-Cl^{-}-{NO_3}^-$ type and $Ca^{2+}-{HCO_3}^{-}-Cl^{-}-{NO_3}^-$ type. These types are affected by two major factors: water-rock interaction and anthropogenic inputs such as sewage and fertilizers. Based on the values of ${\delta}^{18}O$ and ${\delta}D$, most of waters are originated from precipitation except two samples contaminated. The lithology and geography of basins mainly control the water chemistry. Elemental and isotopic compositions show that water chemistry are mainly controlled by three end members, especially by carbonate dissolution, and suggest that anthropogenic input affect the water chemistry. Also, three weathering sources are identified: silicates, dolomite and limestone.

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Characterization of Groundwater Chemistry and Fluoride in Groundwater Quality Monitoring Network of Korea

  • Han, Jiwon
    • 한국지구과학회지
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    • 제42권5호
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    • pp.556-570
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    • 2021
  • This study presents the data analysis results of groundwater chemistry and the occurrence of fluoride in groundwater obtained from the groundwater quality monitoring network of Korea. The groundwater data were collected from the National Groundwater Information Center and censored for erratic values and charge balance (±10%). From the geochemical graphs and various ionic ratios, it was observed that the Ca-HCO3 type was predominant in Korean groundwater. In addition, water-rock interaction was identified as a key chemical process controlling groundwater chemistry, while precipitation and evaporation were found to be less important. According to a non-parametric trend test, at p=0.05, the concentration of fluoride in groundwater did not increase significantly and only 4.3% of the total groundwater exceeded the Korean drinking water standard of 1.5 mg/L. However, student t-tests revealed that the fluoride concentrations were closely associated with the lithologies of tuff, granite porphyry, and metamorphic rocks showing distinctively high levels. This study enhances our understanding of groundwater chemical composition and major controlling factors of fluoride occurrence and distribution in Korean groundwater.

암반지층 굴착벽체 작용토압에 대한 암반조건의 영향: 수치해석적 조사 (Effect of Rock Mass Condition on the Earth Pressure Against an Excavation Wall in Rock Mass: Numerical Investigation)

  • 손무락
    • 한국지반공학회논문집
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    • 제33권11호
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    • pp.83-95
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    • 2017
  • 본 연구는 절리가 형성된 암반지층에서 암석종류, 절리경사각, 토압계수 및 지하수조건을 달리할 때 굴착벽체에 발생하는 토압의 크기 및 분포에 대해서 조사하였다. 모형실험(Son and Park, 2014)에 근거하여 확장연구를 수행하였으며, 이 때 암반-구조 상호작용과 암반의 절리특성을 고려하기 위하여 개별요소법을 이용한 수치해석을 수행하였다. 본 연구로부터 굴착벽체에 작용하는 토압은 암석종류, 절리경사각 및 토압계수 뿐만 아니라 지하수조건에 의해서 크게 영향을 받는다는 것을 파악하였다. 이와 더불어 본 연구로부터 조사된 토압을 토사지반에 적용되는 Peck의 경험토압과 비교하였으며, 이를 통해 절리형성 암반지층 굴착벽체에 발생하는 토압은 토사지반에서 발생하는 토압과 크게 다를 수 있다는 것을 확인하였다.