• 제목/요약/키워드: geochemical index

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한반도 남서해안 상부조간대의 퇴적상 및 지구화학적 특성 (Sedimentary Facies and Geochemical Characteristics of Upper Intertidal Zone, Southwestern Coast, Korea)

  • 강석범;고영구;박배영;윤석태;김주용;오강호;신상은
    • 한국지구과학회지
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    • 제23권8호
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    • pp.722-735
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    • 2002
  • 우리 나라 남서해안의 상부조간대에 분포하는 퇴적물의 퇴적상과 지구화학적 특성을 살펴보기 위하여, 이들 시료를 대상으로 퇴적물의 입도별 분포와 금속원소의 함량에 대한 분석을 실시하였다. 퇴적물의 입도는 잔자갈에서 니질크기로 불규칙한 분포특성을 가진다. 퇴적물의 분급도는 매우 양호한 분급에서 매우 불량한 분급으로 다양하게 나타났으며, 왜도는 대체로 양의 왜도가 우세하였다. 퇴적물 내에 함유된 금속원소들의 지구화학적 거동은 퇴적물 입도에 대한 의존도가 일부 영향을 주기는 하였으나, 복잡한 해저지형과 심한 변화를 보이는 조류 및 주변지질의 환경적 변화에 의해 많은 영향을 받은 것으로 보인다. 퇴적물에 함유된 금속원소들의 농축을 알아보기 위한 농집지수는 Co와 Cr이 보통 내지 심한 오염으로, Cu와 Ni가 보통 오염에 해당하였으나 특별한 집중 경향이 인지되지는 않았다. 따라서, 남서해안 퇴적물의 입도와 금속원소들의 함량분포는 복잡한 해저지형과 이에 따른 조류 유형의 심한 변화 그리고 주변지질 등이 복합적으로 영향을 미치는 해역으로 해석된다.

장흥지역 1차수계 하상퇴적물의 지질집단별 지구화학적 특성과 하천수에 대한 연구 (Geochemical characteristics on the petrological groups of stream sediments and water in primary channels of the Jangheung area, Korea)

  • 박영석;김종균;한민수;김용준;장우석;신성천
    • 자원환경지질
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    • 제35권6호
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    • pp.509-521
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    • 2002
  • 본 연구는 지화학적 재해를 평가하는 좋은 지시자인 하상퇴적물에 대하여 지질집단별 지구화학적 특성과 하천수의 특성을 장흥지역 1차 수계를 중심으로 밝히고자 한다. 암석의 생성시기와 지질학적 환경에 따라 풍화에 영향을 받은 정도에 차이가 많은 점을 고려하여 연구지역의 지질을 화강암류지역, 화강암질편마암류(일부 변성퇴적암류포함)지역, 응회암류지역으로 나누어 주성분원소, 미량원소, 희토류원소, 독성원소 등의 분포특성에 대하여 기술하였다. 하천수에 대한 온도, pH. 전기전도도 등의 물리화학적 특성은 1999년과 2001년에 현장에서 측정하였고, 하상퇴적물 시료는 1999년 4월과 5월에 걸쳐 채취하였으며, XRF ICP-AES, NAA를 이용하여 화학분석을 실시하였다. 주성분원소의 함량은 지질집단에 관계없이 비슷한 함량비를 나타냈으며, 희토류원소는 화강암질편마암류(일부 변성퇴적암류 포함)지역에서 다른 두 지역에 비해 낮게 나타났고, 독성원소 중 Zn과 Cu가 비교적 높은 함량을 나타내었다. 부화계수와 부화지수를 도출한 결과 주성분 원소에서는 $Fe_2O_3$, MgO, $TiO_2$, MnO가, 희토류원소에서는 응회암류지역의 시료들 중 Eu. Yb가, 독성원소에서는 Co, Cr, Zn에서 약간의 부화경향을 나타냈다.

탐진강 및 도암만 지역 퇴적물의 퇴적지구화학적 특성과 환경영향 (Sedimentary Geochemical Characteristics and Environmental Impact of Sediments in Tamjin River and Doam Bay)

  • 홍진택;나범수;김주용;고영구;윤석태;신상은;김해경;문병찬;오강호
    • 환경영향평가
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    • 제16권6호
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    • pp.393-405
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    • 2007
  • To examine the sedimentary geochemical characteristics of sediment in the Tamjin River and Doam bay, the analysis was conducted, using the sample obtained in February 2000, on the grain size and the contents of metallic elements and organic carbon. The factors that influence the geochemical behavior of metallic elements in the surface sediment are grain size, organism, surrounding soil and $CaCO_3$. To find out the pollution level of metallic elements, the enrichment factor (EF) and the index of geoaccumulation ($I_{geo}$) were researched. The majority of metallic elements sustain their values in natural state. The elements such as K, Ba, Zr, etc. appear to be rich in some places. The EF and $I_{geo}$ of P, Cu, Zn, and Pb, which belong to toxic heavy metals, are partly related with man-made pollution. P and Cu have a high EF, Pb has a high $I_{geo}$ and Zn is high in both EF and $I_{geo}$. The low contents of P and Cu are not likely to be related with the pollution of water environment. However, given the development of relative pollution, the research and the management regarding the pollutants are needed. Because Pb, naturally enriched by geological characteristics, has a large influence on water environment along with Zn, the adequate measures against man-made pollution should be worked out.

Hydrograph Separation using Geochemical tracers by Three-Component Mixing Model for the Coniferous Forested Catchment in Gwangneung Gyeonggido, Republic of Korea

  • Kim, Kyongha;Yoo, Jae-Yun
    • 한국산림과학회지
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    • 제96권5호
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    • pp.561-566
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    • 2007
  • This study was conducted to clarify runoff production processes in forested catchment through hydrograph separation using three-component mixing model based on the End Member Mixing Analysis (EMMA) model. The study area is located in the coniferous-forested experimental catchment, Gwangneung Gyeonggido near Seoul, Korea (N 37 45', E 127 09'). This catchment is covered by Pinus Korainensis and Abies holophylla planted at stocking rate of 3,000 trees $ha^{-1}$ in 1976. Thinning and pruning were carried out two times in the spring of 1996 and 2004 respectively. We monitored 8 successive events during the periods from June 15 to September 15, 2005. Throughfall, soil water and groundwater were sampled by the bulk sampler. Stream water was sampled every 2-hour through ISCO automatic sampler for 48 hours. The geochemical tracers were determined in the result of principal components analysis. The concentrations of $SO_4{^{2-}$ and $Na^+$ for stream water almost were distributed within the bivariate plot of the end members; throughfall, soil water and groundwater. Average contributions of throughfall, soil water and groundwater on producing stream flow for 8 events were 17%, 25% and 58% respectively. The amount of antecedent precipitation (AAP) plays an important role in determining which end members prevail during the event. It was found that ground water contributed more to produce storm runoff in the event of a small AAP compared with the event of a large AAP. On the other hand, rain water showed opposite tendency to ground water. Rain water in storm runoff may be produced by saturation overland flow occurring in the areas where soil moisture content is near saturation. AAP controls the producing mechanism for storm runoff whether surface or subsurface flow prevails.

울산화강암 및 인접 사문암 중 주/미량 원소의 거동에 관한 지화학적 연구 (A Geochemical Study on the Behaviors of Major and Trace Elements in the Ulsan Granite and Its Contact Serpentinite)

  • 이재영;이인호
    • 자원환경지질
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    • 제28권1호
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    • pp.53-67
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    • 1995
  • Geochemical characteristics of iron-related Ulsan granite was studied in comparison with the Cretaceous granitoids from the metallogenic provinces of copper, lead-zinc and lead-zinc/molybdenum in the Gyeongsang Basin, and the variation of cheminal compositions at the Ulsan granite/serpentinite contact was investigated. Ulsan granite is plotted in the regions of granite and granodiorite of Streckeisen's diagram. It shows differentiation trend of calc-alkali magma, and the magmatic evolution from granodiorite to granite is consistant with the general crystallization path of the Cretaceous the granitoids in Gyeongsang Basin. Differentiation index(D.I.) of Ulsan granite is 86~95, which is higher than those of Jindong granites (D.I.=45~70) and Onjongri granites (D.I.=67~84), and there are differences in the content of some major and trace elements between Ulsan granite and other Cretaceous granitoids. At the Ulsan granite/serpentinite contact $SiO_2$, $K_2O$, $Na_2O$, $Al_2O_3$, Rb, Sr, Ba which are abundant in Ulsan granite decrease toward serpentinite, while T.Fe, MgO, Ni, Cr which are abundant in serpentinite decrease toward Ulsan granite. Therefore, the geochemical characteristics of Ulsan granite is applicable to distinguish iron province from different metallogenic provinces where other Cretaceous granitoids occur in the Gyeongsang Basin, and it is possible to find serpentinite which was intruded by granite on the basis of chemical variations.

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낙동강 하구 표층 퇴적물의 지화학적 특성 및 오염도 평가 (Geochemical Characteristics and Pollution Assessment of Surface Sediments in the Nakdong River Estuary)

  • 전혜린;이혜윤;양득석;김신
    • 한국환경과학회지
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    • 제30권6호
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    • pp.487-500
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    • 2021
  • To evaluate the geochemical characteristics and assess the pollution in surface sediments of the Nakdong River estuary, two sites adjacent to the estuary bank (Hh1 and Hh2) and one site at the upper part of the estuary bank (Hh3) were investigated. The surface sediments were analyzed for their contents of metals (Cu, Pb, Ni, Cr, Zn, and Al), organic matter (IL, COD, TOC, and TN), and grain size from 2018 to 2020. As a result of the pollution assessment, there was little anthropogenic contamination by most of the metals. The surface sediments in Hh2 had comparatively abundant silt and clay, whereas the other sites were mainly composed of sand. The organic index and contents of organic matter were highest at Hh2. Multivariate statistical analyses (cluster analysis and Pearson correlation analysis) showed that the contents of organic matter and pollution were associated with fine sediment. These results suggest that the geochemical characteristics were changed by the estuary bank built in the research area and that the increase in fine sediment attributable to the low-energy environment resulted in an increase in organic matter pollution.

경상북도(慶尙北道) 일원(一圓)에 부존(賦存)하고 있는 금속지하자원(金屬地下資源)의 지질광상학적(地質鑛床學的) 연구(硏究) (Study on the Metal Ore Deposits of Gyeongsang buk-do Area)

  • 김영기;이재영;김상욱;고인석
    • 자원환경지질
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    • 제9권3호
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    • pp.143-156
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    • 1976
  • The Cretaceous metal ore deposits in the Gyeongsang basin of Gyeongsangbuk-do are characterized by the formation of metallogenic provinces which show zonal distribution pattern around Yeonil province where pneumatolytic type is dominated and hydrothermal type are distributed in the order of decreasing temperature type outward. Some Cretaceous granitic rocks include zoned alkali feldspars which reflect rapid variation of $H_2O$ during emplacement and crystallization of the water-saturated granitic magma. The ore deposits are considered to be originated from upward transportation of ore solution from the excess of water exhausted from uprising magma, which seems to be intimately related to the fact that the majority of the ore deposits in Daegu area are cummulated around the granites including zoned alkali feldspars. In order to collect geochemical data necessary for geochemical exploration in the study area, certain trace elements were chosen as pathfinders from monzonite and soil in the vicinity of Dalsung Tungsten Mine by studying the dispersion patterns of trace elements: Ba and Sr show trends to decrease toward ore deposit while Cu, Pb, and Mo increase. Around mining area there are distributed apparently Equisetum arvense Linne and Mentha sachinensis Kudo which may be used as index plants. In the viewpoint of geologic structure, the trends of the ore veins in contact aureole around the Palgongsan granite body correspond with the pre- and syn- plutonism joint pattern in hornfels in the area.

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대구지역에 분포하는 약수의 지구화학적 특성 (Geochemical Characteristics of the Mineral Water in Taegu Area.)

  • 김종근;이재영
    • 한국환경보건학회지
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    • 제23권3호
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    • pp.56-65
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    • 1997
  • Chemical analysis, statistical analysis and geochemical study were carried out to investigate the influence of the geology on the chemical characferistics of the mineral water in Taegu area. A simple comparision between the chemical components of the mineral water and their bedrocks indicates that the bedrock types in the catchmerit area control the chemical characteristics of the surface water. However more objective evidences for the mineral water-bedrock relationship come from the statistical analyses(cluster analysis and factor analysis). The results of the statistical analyses suggest that the bedrock type factor explains the data variation seven times as much as pollution does, which evidently indicates that the bedrock in the study area mainly control the mineral water chemistries. The results of comparision of the statistical analyses results with the mineral weathering reactions and mineral stability diagrams can be summarized as follows: 1. Plagioclase weathering to kaolinite provides SiO$_2$ , Ca$^{2+}$ and Na$^+$, and muscovite weathering to kaolinite provides K$^+$, and amphibole and mica minerals weathering to kaolinite provides F to the mineral water. Most of Ca$^{2+}$ and Mg$^{2+}$ in the mineral water are the products of carbonate mineral dissolution. SO$_4^{2-}$ may be the byproduct of sulfide oxidation. 2. The weatering of silicate mineral produces Ca-rich smectite and kaolinite, but Ca-rich smectite is unstable and will be transformed to more stable kaolinite because of the continuous dilution of the mineral water by precipitation. By Hashimoto's Mineral Balance Index, S-10 and S-12 mineral spring water were evaluated tasty and healthy water, S-9 and S-11 mineral spring water were evaluated tasty water and S-7, S-8 and S-13 mineral spring water were evaluated healthy water.

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Sedimentary Excess Barium from a Core of the Northwest Pacific Ocean: Geochemical Proxy

  • Suk, Bong-Chool;Park, Chan-Hong;Taira, Asahiko;Hyun, Sang-Min
    • Journal of the korean society of oceanography
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    • 제35권2호
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    • pp.98-108
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    • 2000
  • A geochemical study on a hemipelagic core sediment taken from the northwest Pacific Ocean (eastern edge of the Shikoku Basin) was conducted to use of excess barium (Ba(ex)) for evaluate the paleoceano-graphic changes. Also, the excursion of sedimentary Ba(ex) was compared with those of biogenic opal, carbonate and organic carbon content in the sediment during the last glacial and interglacial periods. The calculated Ba(ex) derived from the major and minor element shows a distinctive glacial-interglacial variations, and the mass accumulation rate (MAR) of Ba(ex) shows coincident variations with the MARs of biogenic fractions. Especially, strong positive correlation (r$^2$=0.85) between the MAR of Ba(ex) and the MAR of biogenic carbonate is recognized. Based on the strong positive correlation(r$^2$=0.85) between the MAR of Ba(ex) and the MAR of carbonate content, we estimated the degree of carbonate dissolution rate during the glacial and interglacial periods. Assuming the proportional variation and the refractory nature of barium exist between two factors, the variation of index Ca/Ba ratio in sediment indicates the degree of carbonate dissolution. Sedimentary Ca/Ba ratios index clearly show a striking fluctuation between the glacial and interglacial periods with higher positive correlation during glacial and lower correlation during interglacial. This fact indicates enhanced carbonate dissolution during interglacial period. Thus, the sedimentary Ca/Ba ratio in sedimentary records can be used as one of the useful tools for estimation of the relative degree of carbonate dissolution. The excursion of Ba(ex) and the sedimentary Ca/Ba ratio follows the typical pacific carbonate dissolution type(enhanced dissolution during interglacial and reduced dissolution during glacial time) as suggested by previous work (e.g., Wu et al., 1990). Variation in sedimentary Ca/Ba ratio thus strongly supports that glacial-interglacial fluctuation in carbonate dissolution has been prevailed in the northwest Pacific Ocean.

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지화학적 평가기법을 이용한 전남 서해 도서갯벌 퇴적물내 중금속 오염도 평가 (Evaluation of Heavy Metal Contamination in Intertidal Surface Sediments of Coastal Islands in the Western Part of Jeollanam Province Using Geochemical Assessment Techniques)

  • 황동운;김성길
    • 한국수산과학회지
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    • 제44권6호
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    • pp.772-784
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    • 2011
  • We measured grain size, organic matter, and metallic elements (Fe, Cu, Pb, Zn, Cd, Cr, Mn, Hg, and As) in intertidal sediments collected from six islands in the western part of Jellanam Province in order to evaluate heavy metal contamination in the tidal flat sediments of coastal islands. The evaluation of metal contamination was carried out using geochemical assessment techniques such as sediment quality guidelines (SQGs), enrichment factor (EF), and geoaccumulation index ($I_{geo}$). Surface sediments were classified into four sedimentary facies: sand, gravelly muddy sand, slightly gravelly mud, and silt. The concentrations of heavy metals in intertidal sediments from Jaeun, Amtae, Biguem, and Docho islands showed good positive correlations with mean grain size and ignition loss, indicating that the concentrations of metallic elements in these sediments were dependent on grain size and the organic matter content. The concentrations of heavy metals in sediments from almost all of the stations were lower than two criterion values proposed by the National Oceanic and Atmospheric Administration (NOAA) in the United States. Based on the EF and $I_{geo}$ results, surface sediments were a little polluted for Cr and were moderately polluted for As. Our results suggest that more intensive studies are necessary in the future in order to determine the major source of As in intertidal sediment and to evaluate the As pollution level in macrobenthos.