• 제목/요약/키워드: Quartz vein

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광양금광상(光陽金鑛床), 고흥동광상(高興銅鑛床)의 광상생성(鑛床生成)과 암석학적(岩石學的) 연구(硏究) (Metallogenesis and Petrology of the Gwangyang Gold Deposits and Goheung Copper Deposits)

  • 박영석;신병우
    • 자원환경지질
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    • 제17권2호
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    • pp.91-100
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    • 1984
  • The Gwangyang gold deposits geologically consist of granitic gneiss, metatectic gneiss and porphyroblastic gneiss which correspond to Jirisan gneiss complex. The formations of Gyeongsang system lies unconformably on these gneisses and are intruded by diorite, porphyritic andesite and Bulgugsa granites. Goheung districts are composed of quartz schist, andesitic rock, tuff and granite. The Gwangyang gold deposits are gold bearing fissure filling veins. The vein thickness varies from 15cm to 40cm and they consist of 7-10 layers in parallel. The Goheung copper deposits are sulphide bearing quartz veln which filled the fracture in andesitic rock and biotite granite. The contact zone of these rocks is partially altered. The mineral paragenesis of the Gwangyang and Goheung districts is pyrite, arsenopyrite, pyrrhotite, chalcopyrite, sphalerite, galena, sericite, quartz and calcite. The variation trends of FMA and A'KF triangular diagrams and the differentiation index (norm, Q + Or + Ab) versus oxides diagrams is similar to the Gyeonsang basin igneous rocks. From the trace element analysis of 10 samples of country rocks, wall rocks and veins, the distribution of copper and lead contents display a correlative distribution pattern in relation to gold and silver. Homogenization temperature of fluid inclusions range from $200^{\circ}C$ to $270^{\circ}C$ in quartz from the Gwangyang gold vein and the size of fluid inclusion range from 0.01mm to 0.04mm. The fluid inclusions are mainly one or two phase and the filling degree of the inclusions varies from 85 to 95.

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통영(統營) 금광상(金鑛床)의 광석(鑛石)과 유체포유물(流體包有物) (Ore and Fluid Inclusions of the Tongyeong Gold-Silver Deposits)

  • 박희인
    • 자원환경지질
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    • 제16권4호
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    • pp.245-251
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    • 1983
  • The Tongyeong gold-silver deposits is located in Chungmu City, the southern end of Korean peninsula. The ore deposits is epithermal gold-silver vein emplaced in late Cretaceous andesite, andesitic pyroclastics and quartz porphyry. Ore is composed of pyrite, chalcopyrite, sphalerite, galena, electrum, argentian tetrahedrite, Cu-Ag-sulfides, quartz and rhodochrosite. Filling temperature of fluid inclusions in quartz ranges from 134 to $223^{\circ}C$ and salinity ranges from 1.2 to 3.8 weight % equivalent to NaCl.

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인성(仁成) 금(金)·은(銀) 광상(鑛床)에서 산출(産出)되는 광석광물(鑛石鑛物)과, 물리화학적(物理化學的) 생성환경(生成環境) (Ore Minerals and the Physicochemical Environments of the Inseong Gold-Silver Deposits, Republic of Korea)

  • 이현구;문희수
    • 자원환경지질
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    • 제22권3호
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    • pp.237-252
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    • 1989
  • The Inseong gold-silver mine is located 3Km northwest of Suanbo, Choongcheongbugdo, Republic of Korea. The mine occurs in the shear zone formed by tension fractures within the Hwanggangri Formation of the Ogcheon metamorphic belt. Ore minerals found in the gold-silver bearing hydrothermal quartz vein composed mainly of pyrite, arsenopyrite, sphalerite, galena and minor amount of chalcopyrite, pyrrhotite, stannite, bismuthininte, native bismuth, chalcocite, electrum and tellurian canfieldite(?). The gangue minerals are quartz, calcite, chlorite and rhodochrocite. Wallrock alterations such as chloritization, silicitication, pyritization, carbonitization and sericitization can be observed in or around the quartz vein. According to the paragenetic sequence, quartz vein structure and mineral assemnlages, three different stages of ore formation can be recognized. The physico-chemical environment of ore formation in this deposit shows slight variation from stage to stage, but the condition of main ore deposition can be summarized as follows. Fluid inclusion, S-istope geothermometry and geothermometry based on mineral chemistry by use of arsenopyrite and chlorite show the ore was formed at temperature between 399 and $210^{\circ}C$ from fluids with salinities of 3.3-5.8 wt.% equivalent NaCl. It indicates that pressure during the mineralization is less than 0.6 Kb corresponding to a depth not greater than 1Km. S-isotope data suggests that thermal fluid may have magmatic origin wit some degree of mixing with meteoric water. In coclusion, the Inseong gold-silver deposit was formed at shallow depth and relatively high-temperature possibly with steep geothermal gradient under xenothermal condition.

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영암 광화대의 지질구조와 광화작용 (Geological Structures and Mineralization in the Yeongam Mineralized Zone, Korea)

  • 류충렬;박성원;이한
    • 암석학회지
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    • 제23권1호
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    • pp.1-15
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    • 2014
  • 한반도 남서단부의 영암광화대에는 상은과 은적 그리고 바람재 광산이 발달하고 있다. 이 지역은 목포-해남-영암 지역에 걸쳐 확인되는 대규모 화산성 환상구조의 북동부에 해당한다. 조사지역인 상은-은적-바람재 지역에서 확인된 13개소의 석영맥과 광화대는 유문암질 용결응회암을 모암으로 하고 있으며, 주로 남-북 내지는 북북서 방향의 주향에 서측으로 고각도를 이루고 있다. 상은, 은적, 바람재 지역에 발달하는 석영맥은 단일맥인 경우도 있으나, 주로 폭 1-5 cm의 맥들로 다발을 이루는 특징을 보인다. 석영맥과 평행하게 발달하는 단층면의 발달로 보아 석영맥의 관입과 광화작용의 전후에 단층운동이 존재했음을 지시한다. 또한 이들 석영맥과 광화대는 광화작용 후기에 작용한 북서 방향의 좌향이동 단층에 의해 변위된 양상을 보인다. 북서 방향의 단층은 불치와 상은광산 부근에서 잘 관찰되며, 장동리와 장천리 일대의 석영맥의 분포나 선상구조에 의해서도 이 단층과 평행한 단층들이 발달할 것으로 판단된다. 조사지역의 서측인 상은적산 남측에서 서측으로 북서 주향의 석영맥이 관찰된다. 은적-상은 광상 주변에서 확인된 12개 석영맥의 현장조사 및 금, 은 품위의 분석 결과에 의하면, 남측으로 가면서 석영맥의 발달 양상이 미약해 지고 있다. 바람재 부근 광상의 경우 북북서-남남동 방향의 석영맥이 약 20 m 연장되고 있다. 섬아연석, 방연석 등 유화광물은 함유하고 있으나 금-은의 발달은 미약하다. 금품위가 평균 <0.1 g/t, 은품위가 평균 5.7 g/t으로 은적광산(금; 12.3 g/t, 은; 1,380.0 g/t)과 상은광산(금; 2.7 g/t, 은; 23.5 g/t)에 비해 남측으로 가면서 금, 은의 품위는 현저히 떨어지는 반면, 그 외 연, 아연 등 유화광물 함량은 증가하는 양상을 보인다.

파주(波州) 산성화성암체(酸性火成岩體)의 암석학적(岩石學的) 연구(硏究) (Petrology and Petrochemistry of Pajoo Acidic Igneous pluton)

  • 오민수
    • 자원환경지질
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    • 제11권1호
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    • pp.1-9
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    • 1978
  • The study is on petrology and petrochemistry of Pajoo Acidic Igneous pluton which intruded into Precambrian metasediments of basement of the area. The geologic sequence of studied area was shown in table 1 and 10 modal analyses and 7 chemical analyses on the rock samples taken from the body. Pajoo Acidic Igneous rock consist of hypersthene-quartz-diorite and porphyritic adamellite which based on the classification of the subcommision on systematics of igneous rocks of IUGS. And porphyritic adamellite which occured as a small stock was intruded into hypersthene quartz diorite. The rock forming minerals of hypersthene quartz diorite are composed of plagioclase, perthite, quartz, hypersthene, hornblende, biotite and porphyritic adamellite is composed of perthite, quartz, plagioclase and biotite. And the former is hypidiomorphic granular texture and later is porphyritic texture with microcline phenocrysts. In silica-oxides variation diagram, the Pajoo acidic igneous rocks are similar to the trend of Daly's average composition and equivalent to the calc-alkalic rock series. In AMF diagram, these rocks are stock of fissure filling vein type by cooling in magmatic differentiation.

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월유광산산(月留鑛山産) 금(金)-은(銀)광물(鑛物)과 광상(鑛床)의 생성환경(生成環境) (Au-Ag Minerals and Geneses of Weolyu Gold-Silver Deposits, Chungcheongbukdo, Republic of Korea)

  • 이현구;유봉철;정광영;김기현
    • 자원환경지질
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    • 제27권6호
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    • pp.537-548
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    • 1994
  • The Weolyu gold-silver deposits at Hwanggan, Chungcheongbukdo, is of a late Cretaceous $(74.24{\pm}1.63Ma)$ epithermal vein-type, and is hosted in the quartz porphyry of late Cretaceous age. Based on mineral paragenetic sequence interpreted from vein structure and mineral assemblages, three stages mineralization were distinguished. A variety of ore minerals occurs including pyrite, sphalerite, chalcopyrite, galena with small amount of electrum, native silver, argentite, pearceite, sb-pearceite, argyrotite. The gangue minerals are quartz, rutile, calcite, apatite, fluorite and rhodochrocite. Wall-rock alteration such as pyritization, chloritization, sericitization, silicification is observed near the quartz veins. Au-Ag minerals were crystallized at middle and late stage of the two mineralization sequences. Results from the analysis of fluid inclusion and thermodynamic calculation indicate that Au-Ag mineral deposits were formed primarily by cooling and dilution of hydrothermal fluids($165{\sim}313^{\circ}C$, 0.4~2.4wt.% equivalent NaCl) with some degree mixing of meteoric water.

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대화(大華) 및 돈산(敦山) 중석(重石)·모리브덴 광상(鑛床)의 광석(鑛石)과 광물공생관계(鑛物共生關係) (Ore and Mineral Paragenesis of Daehwa and Donsan Tungsten-Molybdenum Deposits)

  • 박희인;최석원;김덕래
    • 자원환경지질
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    • 제18권1호
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    • pp.11-22
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    • 1985
  • The Daehwa and Donsan tungsten-molybdenum deposits are composed of numerous fissure-filling veins developed in Precambrian gneiss and Cretaceous granite and quartz porphyry. K-Ar age of biotite in granite and that of muscovite in ore veins are $105{\pm}5\;Ma$ and 88.2~88.6 Ma respectively. Occurrence of ore deposits shows that relevant igneous rock is possibly quartz porphyry rather than above mentioned granite in temporal view point. Vein structure and mineralogy suggest that ore veins were formed by continuous vein filling, not by repeated mineralization. Three distinct depositional stages with decreasing age can be devided on the basis of mineral paragenesis and fluid inclusion studies: Stage I, deposition of oxides and silicates; stage II, deposition of base-metal sulfides and sulfosalts with carbonates; stage III, deposition of barren calcite and fluorite. Tungsten, molybdenum and tin mineralization occurred in stage I.

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옥방중석광상(玉房重石鑛床)의 성인(成因)에 관(關)하여 (On the Genesis of Ogbang Scheelite Deposit)

  • 김옥준
    • 자원환경지질
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    • 제2권2호
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    • pp.73-75
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    • 1969
  • Ogbang scheelite deposit imbedded in amphibolite of unknown age was believed, by the previous workers, to be of pegmatite vein. The vein material is composed mainly of plagioclase (albite and oligoclase) and minor amount (less than 5 to 10% each) of hornblende, biotite and quartz. Orthoclose and tourmaline are accompanied in few places and scheelite and minor amount of fluorite, are the ore minerals. On the basis of mineralogical constituents of the vein, vein structures, mode of occurrence of the vein and gradational contact between veins and amphibolite, the present writer conclude that the deposit was formed by segregation from the parent basic igneous rock of amphibolite. The main portions of the deposit were formed by intrusion of ore solution into already solidified amphibolite after being segregated in deeper horizone, whereas the minor portion by segregation of ore solution in situ.

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전남 화원면 주광리일대 석영맥의 산상 및 생성환경 (Occurrence and Genetic Environments of Quartz Veins from the Jukwangri area, Hwawon-myeon, Jeollanamdo, Republic of Korea)

  • 유봉철;이현구;최동호
    • 자원환경지질
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    • 제39권6호
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    • pp.653-662
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    • 2006
  • 화원면 주광리 일대의 석영맥은 선캠브리아기의 변성퇴적암류 내에 발달된 NW 또는 NE방향의 단층대를 충진한 천열수성 석영맥이다. 이들 석영맥의 연장성과 품위를 기초로, 1호 석영맥은 연장성이 200 m이며 폭은 0.1에서 3 m 정도이다. 1호 석영맥의 광화작용은 심성시기와 천성시기로 구분된다. 심성시기는 일라이트, 견운모를 수반하는 필릭대와 점토대로 구성되며 황화광물은 황철석, 유비철석, 섬아연석, 황동석, 방연석 및 함은사면동석 등이 관찰된다 천성시기는 철-망간 산화광물, 아연-철 산화광물 및 연 산화광물 등이 관찰된다. 유체포유물 자료에 의하면, 심성시기의 균일화온도와 염농도는 각각 $187{\sim}306^{\circ}C,\;0.0{\sim}6.2wt.%$로써 광화유체가 계속적인 순환수의 유입에 의한 혼입에 의해 냉각 및 희석작용이 있었음을 시사한다. 산소($-4.1{\sim}4.1%o$), 수소($-107{\sim}-88%o$)동위원소 값을 볼 때 광화유체는 순환수 기윈의 유체가 주종을 이룬 것으로 보이며 광화작용이 진행됨에 따라 계속적인 순환수의 혼입이 크게 작용한 것으로 해석할 수 있다.

무극 함금석영맥광상 화강암질모암에서의 원소들의 분산형태와 분산범위 (Primary Dispersion Patterns and Widths of Elements in Altered Granitic Wallrock around the Gold-bearing Quartz Veins at the Mugeug Mine)

  • 황인호;전효택
    • 자원환경지질
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    • 제27권5호
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    • pp.451-458
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    • 1994
  • Geochemical studies on gold-bearing quartz veins and granitic wallrocks from the Mugeug mine were carried out in order to investigate primary dispersion patterns of elements and to quantify primary dispersion widths of elements with distance from the gold-bearing quartz veins. The best fitting model of dispersion pattern in altered wallrock around the gold-bearing quartz veins is an exponential function for Au, As, Sb, $Na_2O$ and Sr, and a quadratic function for CaO, $K_2O$, MnO, Ba, Rb and Cs. The primary dispersion widths are 15~343 cm in the hanging wall, and 33~173 cm in the footwall. The width of primary dispersion in the hanging wall is twice as thick as that in the footwall mainly due to the thermal effect and volatile components. The primary dispersion width is increased as the increase of gold-bearing quartz vein width and contents of As and Sb in gold-bearing quartz veins, but is not related to Au content in gold-bearing quartz veins.

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