• 제목/요약/키워드: mineralization age

검색결과 102건 처리시간 0.027초

한반도 천안-청양-논산지역 광화대내 금-은 열수광상의 안정동위원소 및 유체포유물 연구 : 청양지역 (Stable Isotope and Fluid Inclusion Studies of Gold-Silver-Bearing Hyarothermal-Vein Deposits, Cheonan-Cheongyang-Nonsan Mining District, Republic of Korea: Cheongyang Area)

  • 소칠섭;;지세정;최상훈
    • 자원환경지질
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    • 제21권2호
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    • pp.149-164
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    • 1988
  • 청양지역 광화대 금-은 광상들은 화강편마암내의 단층대를 충진한 수개조의 함 금-은 열수맥상 광체로 구성된다. 광화작용의 시기는 $127.1{\pm}2.8\;Ma$이고, 열수광화작용은 구조운동에 시기적으로 2회에 걸쳐 진행되었다. 공생광물의 유체포유물 및 안정동위원소 연구에 의하면, 초기 약 $340^{\circ}$의 고온에서 $180^{\circ}$에 이르는 제 I 광화시기에는 일렉트럼 (42.2-66.8mole % Au), 농홍은석, 함은사면동석, 휘은석, 유비철서, 방연석, 황동석 및 섬아연석 $X_{FeS}{\fallingdotseq}0.13$)등이, ${\delta}^{34}S_{{\sum}S}$=2-5%, $fs_2$ < $10^{-9.8}atm$., 1-8wt. % NaCl상당염농도를 갖는 유체로부터 비등현상과 함께 침전되었다. 광화작용시의 압력은 <200-700기압이고, 광화작용의 심도는 약 1.5km였다. 열수 광화유체내 물의 수소(-90~-130‰), 산소(-5.9~+0.1‰)동위원소 값은 광화유체의 기원이 천수임을 뜻하고, 광화유체의 비등현상과 냉각작용은 $340^{\circ}C$이하에서 유체내 금-은 복합체 ($Au\;(HS)^-_2$, $AgCl^-_2$)의 파괴를 초래하여 금-은 광물의 침전을 유도하였다.

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옥천 금-은광상의 생성환경: 광석광물, 유체포유물 및 안정동위원소 연구 (Genesis of the Ogcheon Gold-silver Deposit in Republic of Korea: Ore Minerals, Fluid Inclusion and Stable Isotope Studies)

  • 유봉철
    • 자원환경지질
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    • 제46권2호
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    • pp.153-163
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    • 2013
  • 옥천 금-은광상은 시대미상의 변성퇴적암류내에 발달된 NE 또는 NW 계열의 열극대를 충진한 2개조의 석영맥으로 구성된 열수맥상광상이다. 본 광상의 석영맥은 주로 괴상으로 산출되며 일부 각력상 및 정동구조가 관찰되고 연장성은 최소 50 m, 맥폭은 0.1에서 0.3 m 정도이다. 이들 석영맥에서 산출되는 광물은 황철석, 석영, 견운모, 녹니석 및 점토광물로 구성된 열수변질광물과 황철석, 자류철석, 유비철석, 섬아연석, 황동석 및 방연석으로 구성된 황화광물이 관찰된다. 유체포유물 자료에 의하면, 광화시기 광석광물의 침전과 관련된 균일화온도와 염농도는 각각 $184{\sim}362^{\circ}C$, 0.0~6.6 wt.% NaCl 로서 광화유체가 천수의 혼입에 의한 냉각과 희석작용이 있었음을 지시한다. 황(${\delta}^{34}S$: 0.4~8.4‰)의 기원은 주로 화성기원과 일부 모암내의 황에서 유래된 것으로 해석된다. 산소(${\delta}^{18}O$: 4.9~12.1‰)와 수소(${\delta}D$: -92~74‰) 동위원소값의 자료로 볼 때, 이 광상의 광화유체는 마그마 기원 또는 천수 기원의 유체로 생각되며 광화작용이 진행됨에 따라 기원이 다른 천수의 혼입이 작용한 것으로 해석할 수 있다.

멕시코 자카테카스 주의 지질 및 광화작용 (Geology and Mineralization in Zacatecas State, Mexico)

  • 허철호;오일환
    • 광물과 암석
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    • 제34권1호
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    • pp.69-81
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    • 2021
  • 멕시코 자카테카스 주의 지질은 주로 중생대 퇴적암 및 화산암, 신생대 화산암 및 심성암으로 구성된다. 주 북서쪽의 고생대 변성암은 층서적으로 가장 오래된 암석이다. 이 암석은 층서적으로 카오파스층과 일치하며 이 층하부에는 후기 고생대 로데오층이 놓여있다. 중생대 층서는 후기 삼첩기의 해양성 퇴적층서와 삼첩기-쥐라기 나자스층의 적색층이 대표적이다. 상부 쥐라기 해양성 퇴적층은 나자스층 또는 고생대 변성암 상위에 놓여있다. 백악기층은 북쪽 및 북동쪽에 부존하는 해양성 퇴적암과 중앙 및 남동쪽의 화산성 퇴적암으로 구성된다. 신생대는 화산성 미분화 암석, 산성 및 중성의 조성을 지닌 관입성 화성암 및 증발성 퇴적물을 지닌 대륙성 역암으로 구성된다. 제4기는 현무암, 산록 퇴적물, 충적층, 증발암 및 염류피각을 포함한다. 다양한 유형의 금속 및 비금속광상이 자카테카스 주에 분포한다. 이들 광상을 구성하는 암석들은 다양하며 고생대부터 제3기까지 층들을 포함한다. 광상 생성시기는 90%가 제3기에 해당되며, 광상생성은 주로 후생기원이다.

배양된 치유두 유래세포의 조골활성 및 골기질 형성의 평가 (EVALUATION OF OSTEOGENIC ACTIVITY AND MINERALIZATION OF CULTURED HUMAN DENTAL PAPILLA-DERIVED CELLS)

  • 박봉욱;변준호;최문정;하영술;김덕룡;조영철;성일용;김종렬
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제29권4호
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    • pp.279-288
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    • 2007
  • In the present study, we focused on stem cells in the dental papilla of the tooth germ. The tooth germ, sometimes called the tooth bud, is the primordial structure from which a tooth is formed. The tooth germ consists of the enamel organ, the dental papilla, and the dental follicle. The dental papilla lies below a cellular aggregation of the enamel organ. Mesenchymal cells within the dental papilla are responsible for formation of dentin and pulp of a tooth. Tooth germ disappears as a tooth is formed, but that of a third molar stays in the jawbone of a human until the age of 10 to 16, because third molars grow slowly. Impacted third molar tooth germs from young adults are sometimes extracted for orthodontic treatment. In the present study, we evaluated the osteogenic activity and mineralization of cultured human dental papilla-derived cells. Dental papillas were harvested from mandible during surgical extraction of lower impacted third molar from 3 patients aged 13-15 years. After passage 3, the dental papilla-derived cells were trypsinized and subsequently suspended in the osteogenic induction DMEM medium supplemented with 10% fetal bovine serum, 50 g/ml L-ascorbic acid 2-phosphate, 10 nM dexamethasone and 10 mM -glycerophosphate at a density of $1\;{\times}10^6\;cells/dish$ in a 100-mm culture dish. The dental papilla-derived cells were then cultured for 6 weeks and the medium was changes every 3 days during the incubation period. Dental papilla-derived cells showed positive alkaline phosphatase (ALP) staining during 42 days of culture period. The formation of ALP stain showed its maximal manifestation at day 7 of culture period, then decreased in intensity during the culture period. ALP mRNA level was largely elevated at 1 weeks and gradually decreased with culture time. Osteocalcin mRNA expression appeared at day 14 in culture, after that its expression continuously increased in a time-dependent manner up to day 28. The expression remained constant thereafter. Runx2 expression appeared at day 7 with no detection thereafter. Von Kossa-positive mineralization nodules were first present at day 14 in culture followed by an increased number of positive nodules during the entire duration of the culture period. Osteocalcin secretion was detectable in the culture medium from 1 week. The secretion of osteocalcin from dental papilla-derived cells into the medium greatly increased after 3 weeks although it showed a shallow increase by then. In conclusion, our study showed that cultured human dental papilla-derived cells differentiated into active osteoblastic cells that were involved in synthesis of bone matrix and the subsequent mineralization of the matrix.

신보광산 주변지역에서 변성광물의 성장과 변형작용 사이의 상대적인 시간관계: 우라늄 광화대의 상대적인 광화시기 (Time-relationship between Deformation and Growth of Metamorphic Minerals around the Shinbo Mine, Korea: the Relative Mineralization Time of Uranium Mineralized Zone)

  • 강지훈;이덕선
    • 자원환경지질
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    • 제45권4호
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    • pp.385-396
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    • 2012
  • 옥천변성대의 남서부에 위치하는 전라북도 진안군 신보광산과 그 동부지역에서 고품위 우라늄 지화학 이상대가 보고된 바가 있다. 본 논문은 선캠브리아기 변성퇴적암류(규암, 변성이질암, 변성사질암)와 이를 관입하는 시대미상의 페그마타이트와 백악기 반암류 등이 분포하는 신보광산 동부지역에서 이들 구성암류가 경험한 변형작용과 변성광물의 성장 사이의 상대적인 시간관계에 대한 미구조의 연구결과를 보고하고, 기존 연구결과를 종합하여 광화작용의 상대적인 시기를 고찰하였다. D1 변형작용은 홍주석 반상변정 내에서 주로 신장된 석영, 흑운모, 불투명광물 등으로 정의되는 직선 형태의 내부엽리 Si 를 형성시켰다. Si 엽리를 미습곡시키고 S2 파랑엽리를 형성시키는 D2 변형작용은 전기 파랑습곡작용과 후기 파랑습곡작용으로 구분된다. 전자는 홍주석의 맨틀부에서 곡선 형태의 Si 를 형성시켰다. 후자는 홍주석을 포획하며 그 외부에서 S1-2 복합엽리를 형성시켰다. 홍주석 반상변정은 직선 Si 엽리에 해당하는 S1 엽리가 형성된 이후의 비변형작용 조건하에서 출현하여 후기 파랑습곡작용 이전까지 성장하였다. 시대미상의 페그마타이트는 D2 변형 이후에 관입하여 S1-2 복합엽리를 무질서하게 덮는 섬유상 규선석을 성장시켰다. D3 변형작용은 S1-2 복합 엽리와 D2 파랑습곡 그리고 섬유상 규선석을 미습곡시키는 F3 습곡을 형성시켰다. 이는 섬유상 규선석의 성장과 관련된 페그마타이트의 관입은 D2 변형과 D3 변형 사이의 비변형조건하에서 발생하였음을 지시한다. 흑운모의 녹니석화작용과 홍주석 반상변정 내부에서 S1-2 복합엽리와 F3 습곡축면에 평행한 두 방향의 벽개 라멜라에 의해 인지되는 후퇴변성작용은 각각 D2 후기변형과 D3 변형과 함께 발생하였다. 따라서 우라늄의 초생적 근원암을 페그마타이트로 간주하는 기존 연구결과를 고려해 볼 때, 시대미상의 페그마타이트는 지각이 상승하는 후퇴변성작용 동안에 해당하는 D2 변형과 D3 변형 사이의 비변형조건하에서 관입하여 신보광산 주변지역에 우라늄 광화대를 형성시킨 것으로 고찰된다.

Dietary Calcium and Non-phytin Phosphorus Interaction on Growth, Bone Mineralization and Mineral Retention in Broiler Starter Chicks

  • Rao, S.V. Rama;Raju, M.V.L.N.;Reddy, M.R.;Pavani, P.;Sunder, G. Shyam;Sharma, R.P.
    • Asian-Australasian Journal of Animal Sciences
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    • 제16권5호
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    • pp.719-725
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    • 2003
  • An experiment was conducted to study the requirement of calcium (Ca) and non-phytin phosphorus (NPP) in commercial broilers during starter phase. Seven hundred and twenty day-old Vencob male broiler chicks were randomly distributed into 144 stainless steel battery brooders, 5 birds in each. Four levels each of Ca (6, 7, 8, and 9 g/kg) and NPP (3, 3.5, 4, and 4.5 g/kg diet) were fed in a factorial design in a corn-soya basal diet. Levels of dicalcium phosphate and oyster shell grit were adjusted to obtain the desired levels of Ca and NPP. Each diet was fed ad libidum to chicks in 9 battery brooders from one d to 21 d of age. Body weight gain and feed intake were depressed (p<0.01) by increasing the dietary Ca level (8 and 9 g/kg) at lower levels of NPP (3 and 3.5 g/kg diet). The growth depression observed at lower NPP level was alleviated by reducing the Ca content to 6 g/kg diet. The tibia ash content and tibia breaking strength increased with increase in both Ca (>6 g/kg) and NPP (>3 g/kg) levels. The leg abnormality score decreased (p<0.01) with increase in NPP content in the diet at all levels of Ca tested. The serum Ca and inorganic P levels were increased with increase in the level of the respective mineral in the diet, but the serum concentration of Ca and P were inversely related to the level of NPP and Ca, respectively /kg diet. In general, the excretion of macro minerals (Ca, and P), and micro minerals {zinc (Zn), manganese (Mn), iron (Fe), and copper (Cu)} was significantly lower at lower levels of Ca and NPP tested (6 and 3 g/kg diet, respectively). The mineral excretion increased with increase in dietary Ca and NPP levels, more conspicuously at the disproportionate ratio of these minerals (>2:1, Ca and NPP). Similarly, the retention of Zn, Mn, and Fe in liver was significantly higher (p<0.01) at lower levels of Ca and NPP tested. Results from this study indicate that the commercial broilers do not require more than 3 g NPP and 6g Ca/kg diet during starter phase (up to 21 d of age) for optimum weight gain, feed efficiency and utilization of Ca, P, Zn, Mn, Fe and Cu. However, the requirements of these minerals for optimum bone mineralization were higher than the levels suggested above.

한국 금-은광화작용과 천열수 광상의 성인모텔 : 탐사에의 적용

  • 최선규;박상준;김창성
    • 한국광물학회:학술대회논문집
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    • 한국광물학회.대한자원환경지질학회.대한광업진흥공사 2002년도 추계 공동 심포지엄 논문집: 국내 자원의 현황과 전망
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    • pp.119-136
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    • 2002
  • Contrasts in the style of the gold-silver mineralization in geologic and tectonic settings in Korea, together with radiometric age data, reflect the genetically different nature of hydrothermal activities, coinciding with the emplacement age and depth of Mesozoic magmatic activities. It represents a clear distinction between the plutonic settings of the Jurassic Daebo orogeny and the subvolcanic environments of the Cretaceous Bulgugsa igneous activities. During the Daebo igneous activities (c.a. 200-150 (?) Ma) coincident with orogenic time, gold mineralization took place between c.a. 195 and 135 (127 ?) Ma. The Jurassic Au deposits commonly show several characteristics; prominent association with pegmatites, low Ag/hu ratios in the ore-concentrating parts, massive vein morphology and a distinctively simple mineralogy including Fe-rich sphalerite, galena, chalcopyrite, arsenopyrite, Au-rich electrum, pyrrhotite and/or pyrite. During the Bulgugsa igneous activities $(110\~50Ma)$, the precious-metal deposits are generally characterized by such features as complex vein morphology, medium to high AE/AU ratios in the ore concentrates, and diversity of ore minerals including base-metal sulfides, pyrite, arsenopyrite, Ag-rich electrum and native silver nth Ag sulfides, Ag-Sb-As sulfosalts and Ag tellurides. Vein morphology, mineralogical, fluid inclusion and stable isotope results indicate the diverse genetic natures of hydrothermal systems in Korea. The Jurassic Au-dominant deposits (orogenic type) were formed at the relatively high temperature $(about\;300^{\circ}\;to\;450^{\circ}C)$ and deep-crustal level $(4.0{\pm}1.5\;kb)$ from the hydrothermal fluids containing more amounts of magmatic waters $(\delta\;^{18}O_{H2O}\;5\~10\%_{\circ})$. It can. It can be explained by the dominant ore-depositing mechanisms as $CO_2$ boiling and sulfidation, suggestive of hypo- to mesothermal environments. In contrast, the Cretaceous Au-dominant $(l13\~68\;Ma),\;Au-Ag \;(108\~47\;Ma)$ and Ag-dominant $(103\~45\;Ma)$ deposits, which correspond to volcanic-plutonic-related type, occurred at relatively low temperature $(about\;200^{\circ}\;to\;350^{\circ}C)$ and shallow-crustal level $(1.0\{pm}0.5\;kb)$ from the ore-forming fluids containing more amounts of less-evolved meteoric waters$(\delta\;^{18}O_{H2O}\;-10\~5\%_{\circ})$. These characteristics of the Cretaceous precious-metal deposits can be attributed to the complexities in the ore-precipitating mechanisms (mixing, boiling, cooling), suggestive of epi- to mesothermal environments. Therefore, the differences of the emplacement depth between the Daebo and the Bulgugsa igneous activities directly influence the unique temporal and spatial association of the deposit styles.

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소연평도 함티타늄 자철광상의 암석지구화학적 연구 (Petrochemistry of the Soyeonpyeong titaniferous iron ore deposits, South Korea)

  • 김규한;이정은
    • 자원환경지질
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    • 제27권4호
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    • pp.345-361
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    • 1994
  • Lens shaped titanomagnetite ore bodies in the Soyeonpyeong iron mine are embedded in amphibolites, which were intruded into Precambrian metasediments such as garnet-mica schist, marble, mica schist, and quartz schist. Mineral chemistry, K-Ar dating and hydrogen and oxygen stable isotopic analysis for the amphibolites and titanomagnetite ores were conducted to interpret petrogenesis of amphibolite and ore genesis of titanomagnetite iron ore deposits. Amphibolites of igneous origin have unusually high content of $TiO_2$, ranging from 0.94 to 6.39 wt.% with an average value of 4.05 wt.%. REE patterns of the different lithology of the amphibolite show the similar trend with an enrichment of LREE. Amphiboles of amphibolites are consist mainly of calcic amphiboles such as ferro-hornblende, tschermakite, ferroan pargasite, and ferroan pargasitic hornblende. K-Ar ages of hornblende from amphibolite and gneissic amphibolite were determined as $440.04{\pm}6.39Ma$ and $351.03{\pm}5.21Ma$, respectively. This indicates two metamorphic events of Paleozoic age in the Korean peninsula which are correlated with Altin orogeny in China. The titanomagnetite mineralization seems to have occurred before Cambrian age based on occurrence of orebodies and ages of host amphibolites. The Soyeonpyeong iron ores are composed mainly of titanomagnetite, ilmenite, and secondary minerals such as ilmenite and hercynite exsolved in titanomagnetite. The temperature and the oxygen fugacity estimated by the titanomagnetite-ilmenite geothermometer are $500{\sim}600^{\circ}C$ (ave. $550^{\circ}C$) and about $2{\pm}10^{-23}bar$, respectively. Hornblendes from ores and amphibolites which responsible for magnetite ore mineralization, have a relatively homogeneous isotopic composition ranging from +0.8 to +3.9 ‰ in ${\delta}^{18}O$ and from -87.8 to -113.3 ‰ in ${\delta}D$. The calculated oxygen and hydrogen isotopic compositions of the fluids which were in equilibrium with hornblende at $550^{\circ}C$, range from 2.8 to 5.9‰ in ${\delta}^{18}O_{H2O}$ and from -60.41 to -81.31 ‰ in ${\delta}D_{H2O}$. The ${\delta}^{18}O_{H2O}$ value of magnetite ore fluids are in between +6.4 to + 7.9 ‰. All of these values fall in the range of primary magmatic water. A slight oxygen shift means that $^{18}O$-depleted meteoric water be acted with basic fluids during immiscible processes between silicate and titaniferous oxide melt. Mineral chemistry, isotopic compositions, and occurences of amphibolites and orebodies, suggest that the titanomagnetite melt be separated immisciblely from the titaniferous basic magma.

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한국 금-은광화작용과 천열수 광상의 성인모델: 탐사에의 적용

  • 최선규;박상준;김창성
    • 대한자원환경지질학회:학술대회논문집
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    • 대한자원환경지질학회 2002년도 추계 공동 심포지엄 논문집
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    • pp.119-136
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    • 2002
  • Contrasts in the style of the gold-silver mineralization in geologic and tectonic settings in Korea, together with radiometric age data, reflect the genetically different nature of hydrothermal activities, coinciding with the emplacement age and depth of Mesozoic magmatic activities. It represents a clear distinction between the plutonic settings of the Jurassic Daebo orogeny and the subvolcanic environments of the Cretaceous Bulgugsa igneous activities. Dunng the Daebo igneous activities (c.a. 200~150 (\ulcorner) Ma) coincident with orogenic time, gold mineralization took place between c.a. 195 and 135 (127 \ulcorner) Ma. The Jurassic Au deposits commonly show several characteristics; prominent association with pegmatites, low Ag/Au ratios In the ore-concentrating parts, massive vein morphology and a distinctively simple mineralogy including Fe-rich sphalerite, galena, chalcopyrite, arsenopyrite, Au-rich electrum, pyrrhotite and/or pyrite. During the Bulgugsa igneous activities (110~50 Ma), the precious-metal deposits are generally characterized by such features as complex vein morphology, medium to high Ag/Au ratios in the ore concentrates, and diversity of ore minerals including base-metal sulfides, pyrite, arsenopyrite, Ag-rich eletrum and native silver with Ag sulfides, Ag-Sb-As sulfosalts and he tellurides. Vein morphology, mineralogical, fluid inclusion and stable isotope results indicate the diverse genetic natures of hydrothermal systems in Korea. The Jurassic Au-dominant deposits (orogenic type) were formed at the relatively high temperature (about 300$^{\circ}$ to 45$0^{\circ}C$) and deep-crustal level (4.0$\pm$1.5 kb) from the hydrothermal fluids containing more amounts of magmatic waters ($\delta$$^{18}$ $O_{H2O}$; 5~10$\textperthousand$). It can be explained by the dominant ore-depositing mechanisms as $CO_2$ boiling and sulfidation, suggestive of hypo- to mesothermal environments. In contrast, the Cretaceous Au-dominant (l13~68 Ma), Au-Ag (108~47 Ma) and AE-dominant (103~45 Ma) deposits, which correspond to volcanic-plutonic-related type, occurred at relatively low temperature (about 200$^{\circ}$ to 35$0^{\circ}C$) and shallow-crustal level (1.0$\pm$0.5 kb) from the ore-forming fluids containing more amounts of less-evolved meteonc waters ($\delta$$^{18}$ $O_{H2O}$;-10~5$\textperthousand$). These characteristics of the Cretaceous precious-metal deposits can be attributed to the complekities in the ore-precipitating mechanisms (mixing, boiling, cooling), suggestive of epi- to mesothermal environments. Therefore, the differences of the emplacement depth between the Daebo and the Bulgugsa igneous activities directly influence the unique temporal and spatial association of the deposit styles.les.

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연천 함티타늄 자철광상의 성인 (Ore Genesis of the Yonchon Titaniferous Iron Ore Deposits, South Korea)

  • 김규한;이현주;전효택
    • 자원환경지질
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    • 제27권2호
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    • pp.117-130
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    • 1994
  • Titanomagnetite ore bodies in the Yonchon iron mine are closely associated with alkali gabbroic rocks of middle Proterozoic age which intruded Precambrian metasedimentary rocks. The orebodies can be divided into massive ores in gabbroic rock, skarn ores in calcareous xenoliths and banded ores in gneissic gabbro. Gabbroic rocks from the Yonchon iron mine have unusually high content of $TiO_2$ with an average values of 3.46 wt%. Iron ores are ilmenite (42.25~51.56 wt% in $TiO_2$) and titanomagnetite (1.29~6.57 wt% in $TiO_2$) and the former is dominant Small amount of magnetite, hematite, sphene and sulfide minerals are included in the ores. Grandite garnet, titanoaugite and tschermakite are in iron skarn ores. Hornblendes from ores and gabbroic rocks have a relatively homogeneous isotopic composition with ${\delta}D$ between -110.0 and -133.9‰, and ${\delta}^{18}O$ of +4.5 to +6.5‰, and calculated to have formed in fluids with ${\delta}O_{H_2O}$ of + 6.7 to +8.7‰. and ${\delta}_{H_2O}$ of -87.9 to -111.8‰, which has a similar isotopic value of primary magmatic water. Based on intrusive age, occurrence, mineral chemistry and isotopic compositions of magnetite ores and gabroic rocks, it will be concluded that the gabbroic rocks are responsible for the titanomagnetite mineralization. The titaniferous magnetite melt was immiscibly separated from the high titaniferous gabbroic melts of Proterozoic age.

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