• 제목/요약/키워드: gold and silver ore

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덕흔·법전광산(法田鑛山)의 금(金)-은(銀)광화작용(鑛化作用) (The Gold-Silver Mineralization of the Deogheun and Beopjeon Mines)

  • 박희인;황정;김덕래
    • 자원환경지질
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    • 제23권1호
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    • pp.25-33
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    • 1990
  • Gold-silver deposits of Deogheun and Beopjeon mines are composed of veins emplaced in Jurassic granite batholith. Based on ore structure and ore mineralogy, four distinct stages of mineral deposition are recognized in these ore deposits. Gold and silver minerals in Deogheun and Beopjeon-A ore deposits are precipitated in stage III and stage II, respectively. Mineral constituents of ores from these deposits are pyrite, sphalerite, arsenopyrite, pyrrhotite, chalcopyrite, galena, tetrahedrite, electrum, quartz and rhodochrosite. Cubanite, argentite and pyrargyrite occur only in Deogheun ore deposits. Ag content of electrum range from 42 to 66 atomic % in both ore deposits. Filling temperature of fluid inclusion from both ore deposits are as follows; stage I, $211-289^{\circ}$ ; stage II, $205-290^{\circ}$ ; stage III, $190-260^{\circ}$ ; stage IV, $136-222^{\circ}$ in Deogheun ore deposits. In Beopjeon-A ore deposits, stage I, $255-305^{\circ}$ ; stage II, $135-222^{\circ}$ ; stage III, $148-256^{\circ}$ ; stage IV, $103-134^{\circ}$. Salinities of fluid inclusions range from 1.6-8.5 wt. % equivalent NaCl in both ore deposits. Sulfur fugacities through stage II and III in Deogheun ore deposits inferred from data of mineral assemblage and fluid inclusion range from $10^{-11.0}-10^{-16.1}$1bars. Fluid pressure estimated from fluid inclusions which reveal boiling evidence range from 30-190 bars during mineralization in Deogheun ore deposits.

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Geochemistry of a Te-bearing Au-Ag mineralization of the Yuryang mine: Fluid inclusion and stable isotope study

  • Heo, Chul-Ho;Choi, Seon-Gyu;Pak, Sang-Joon;Choi, Sang-Hoon;Yun, Seong-Taek
    • 대한자원환경지질학회:학술대회논문집
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    • 대한자원환경지질학회 2003년도 춘계 학술발표회 논문집
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    • pp.178-179
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    • 2003
  • Mesothermal, tellurium-bearing gold-silver vein mineralization of the Yuryang mine was formed in mineralogically complex quartz-sulfide veins that filled the fault fractures in Precambrian gneiss within Gyeonggi Massif. Ore grades average 179 g/ton gold with a gold/silver ratio of 1.5 : 1. Ore mineralization was deposited in single stage. Major ore mineralization can be divided into two mineralization phases with increasing paragenetic time: Fe-sulfide and base-metal mineralization phase $\rightarrow$ telluride mineralization phase. (omitted)

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의성지역(義城地域)의 금(金)-은(銀) 광화작용(鑛化作用) (Gold-Silver Mineralization of the Euiseong Area)

  • 지세정;최선규;도성재;고용권
    • 자원환경지질
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    • 제24권2호
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    • pp.151-165
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    • 1991
  • The Au-Ag deposits of the Euiseong area occurred in quartz veins which filled fissures in Cretaceous sedimentary and volcanic rocks. These ore veins can be classified in two types of deposits based on metallic mineral assemblages as follow: a pyrite type gold-silver deposit (Hoedong mine), characterized by Cu sulfides with Au-Ag alloy, and a Sb-rich silver deposit (Keumdongdo mine), characterized by base metal with Ag-bearing sulfosalts. Mineralogic and fluid inclusion evidences suggest that the ore minerals of these deposits was deposited from initial high temperatures (near $350^{\circ}C$) to later lower temperatures ($200^{\circ}C$) with moderate salinity fluids ranging from 5.8 to 3.8 eq. wt. % NaCl. The gold-silver mineralization of the Hoedong mine occurred at temperatures between 300 and $200^{\circ}C$ from fluids with log $f_{s_2}$ of -10 ~ -16 atm. The antimony - silver mineralization of the Keumdongdo mine were deposited at the higher temperatures (350 to $250^{\circ}C$) and $f_{S_2}$ (-10 ~ -13 atm) than gold mineralization of the Hoedong mine. The calculated log f02 of fluids at $250^{\circ}C$ in two deposits are -32 to -34 atm and -36.5 to -38.5 atm, respectively. Boiling evidences indicate that the ore mineralization of the Hoedong mine occurred at more shallow depth (0.5km) than that (1km) of the Keumdongdo mine. The above differences of depositional environments between two deposits caused the compositional changes of ore minerals such as electrum and sphalerite.

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구봉광산(九峯鑛山)의 지질(地質)과 광상(鑛床) (Geology and Ore Deposits of Kubong Gold Mine)

  • 전찬규;오민수
    • 자원환경지질
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    • 제3권3호
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    • pp.169-176
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    • 1970
  • Kubong Gold Mine is located in Kuryongri, Sayang-myun, Chungyang-gun, Choongchung-Namdo.(latitude $36^{\circ}24^{\prime}N$. longitude $126^{\circ}45^{\prime}30^{{\prime}{\prime}}E$) The mine was begun to work soon after the inhabitants of this village had accidently discovered the outcrops in April 1908. It is one of the largest gold mines in Korea which produces 4,500 tons of crude ore a month. The geology in the area consists of granitic gneiss, banded gneiss, augen-gneiss, mica schist, limesilicate of Pre-Cambrian series and sedimentary rocks(sandstones & conglomerates) of Daedong series. Basic dikes intrude the former formations. The country rock of the ore deposit is a group of the metamorphic rocks mentioned above. Gold-silver bearing quartz vein contains small amounts of pyrite, chalcopyrite, arsenopyrite, galena and sphalerite in which gold and silver occur as native state. The vein strikes $N30^{\circ}{\sim}60^{\circ}E$ and dips $20^{\circ}{\sim}50^{\circ}S$ and the average width of the vein is estimated 1 to 1.5m. Average grade of ore is Au:6~8gr/t and Ag:5~6gr/t. The ore shoot continues from the outcrop to the depth of -1760ML with dip of $20{\sim}25^{\circ}$ and strike extension reaches to 400m at the depth of -1440 ML and to more or less 200m at below. Highgrade of ore vein was found at the lowest level of the ore shoot at the time of recent field survey at the end of August 1970. Its average grade was estimated as Au:20gr/t and its width 1~2.5M in average. A series of futher prospecting for other new ore shoot or parallel veins are urgent and crosscut prospecting along the horizontal level is strongly recommended.

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태백산광화대 북부 낙천, 은치, 중봉 금-은광상의 안정동위원소 연구 (Stable Isotope of the Nakcheon, Eunchi and Jungbong Gold-Silver Deposits in the Northern Taebagsan Mining District)

  • 황정;박희인
    • 자원환경지질
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    • 제29권2호
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    • pp.159-170
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    • 1996
  • The gold-silver deposits of the Nakcheon, Eunchi and Jungbong mine in the northern Taebagsan mining district are composed of fissure fil1ing veins emplaced in Precambrian meta-sediments and Jungbongsan granite. Based on the changes of ore texture and mineralogy, ore mineral chemistry, fluid inclusion and mineralizing condition, a regional zoning is recognized from the Nakcheon to the Eunchi and Jungbong ore deposits, and this trend of zoning is also recognized by stable isotope compositions. Stable isotope compositions show that the source of su1fur and carbon is mainly igneous origin, and the water of ore fluid in the Nakcheon ore deposits is mainly magmatic origin but much of meteoric water is involved in ore fluid of the Eunchi and Jungbong ore deposits. The ore deposits of study area is polymetallic meso to epithermal type genetically related to the acidic igneous pluton. Due to the differntial erosion level and mineralized depth, each ore deposits has a slightly different characteristic of mineralization; The Nakcheon ore deposits belong to meso-epithermal type, but the Eunchi and Jungbong ore deposits belong to epithermal type.

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산성치오요소법에 의한 금정광으로부터 금, 은의 침출에 관한 연구 (A Study on the Leaching of Gold and Silver from Concentrate by Acidothiouration)

  • 김성규;이화영;오종기
    • 자원리싸이클링
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    • 제3권2호
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    • pp.17-23
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    • 1994
  • 국내의 금정광으로부터 산성치오요소법에 의해 금, 은을 회수하기 위한 침출실험을 행하였다. 실험결과에 따르면 금, 은의 침출은 치오요소 및 산화제의 농도, 광액농도 등에 의해 크게 영향을 받고 있으며, 특히 3가철과 같은 산화제는 금, 은의 침출속도를 상당히 증가시킨다. 그러나 3가철의 농도가 너무 높으면 황화팡을 용해시켜 광석입자표면에 부동태층을 형성하기 때문에 금, 은의 침출을 저해하기도 한다. 한편 침출반응시 $SO_2$를 첨가하면 치오요소의 소모량은 어느정도 절감시킬 수 있으나, 금은의 침출율이 저하하여 귀금속의 회수에는 그리 효과적이지 못하다. 금정광으로부터 금과 은은 적정조건하에서 각각 90% 및 80%의 침출율을 보이며 이때 치오요소 소모량은 초기 농도의 약 10% 정도이다.

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홍천 광화대, 가족 광상의 금.은 광화작용 (Hydrothermal Cold-silver Mineralization of the Gajok Deposit in the Hongcheon Mining District, Korea)

  • 박상준;최선규
    • 한국광물학회지
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    • 제21권1호
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    • pp.1-15
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    • 2008
  • 가족광상은 풍암분지 북측에 분포하는 백악기 반상화강암의 열극을 충진한 백악기 함금 은 석영맥 및 방해석맥들로 구성된다. 함금 은 석영맥은 전형적인 복성맥의 산상과 함께 빗구조, 피각상 구조, 정동조직, 옥수질 석영 등의 천부 맥상 조직이 우세하게 나타난다. 석영맥 및 방해석맥들은 광화 1기에서 5기까지 구분되며 광화 중기 및 후기에서 집중적으로 금.은광화작용이 수반된다. 광화 중기에는 상대적으로 높은 금함량(${\sim}50$ atomic % Au) 및 철함량(${\sim}6$ mole % FeS)을 보이는 에렉트럼과 섬아연석, 황철석, 방연석, 황동석 등이 산출된다. 광화 후기에는 황철석, 황동석, 방연석 및 휘은석 또는 자연은 등의 함은광물과 함께 비교적 낮은 금함량($10{\sim}30$ atomic % Au)과 철함량(< 1 mole % FeS)을 갖는 에렉트럼 및 섬아연석이 산출된다. 광화 유체는 약 $360{\sim}150^{\circ}C$의 온도와 < 7.0 wt% NaCl 상당 염농도를 보이며, 광화가 진행됨에 따라 온도와 염농도가 함께 감소하는 경향을 보인다. 광화 유체의 산소동위원소비 값(${\delta}^{18}O$; -0.6{\sim}-6.7\;%o$)은 광화작용의 진행과 함께 지표수(또는 순환수)의 유입이 점증하였음을 시사한다. 이는 가족 금 은광상의 광화작용이 상대적으로 높은 온도와 염농도를 갖는 광화유체로부터 시작하여, 지표수 유입에 의한 희석 또는 혼입 작용에 의해 진행되었음을 시사한다. 따라서 가족 광상의 광석광물, 열수변질대의 산상, 유체포유물 및 동위원소 연구를 종합적으로 검토한 결과, 이 광상의 광화작용은 지표수의 다량 유입이 가능한 천부 지질환경에서 진행되었음을 시사하며, 성인적으로 백악기 화성활동과 관련된 저유황형 천열수 광상으로 해석된다.

충남(忠南) 대봉(大鳳) 금(金)·은광상(銀鑛床)에서 산출(産出)되는 광석광물(鑛石鑛物)과 광상(鑛床)의 생성환경(生成環境) (Mineralogy and Ore Geneses of the Daebong Gold-Silver Deposits, Chungnam, Korea)

  • 이현구;유봉철;김상중
    • 자원환경지질
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    • 제25권3호
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    • pp.297-316
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    • 1992
  • The Daebong gold-silver deposits is located in 8 km southwest of Cheongyang, Chungcheongnam-Do, Republic of Korea. The gold-silver-bearing hydrothermal quartz veins was formed within the Precambrian metasediments of Gyeonggi massif. Ore minerals occur as mainly of pyrite, sphalerite (0.78~6.19 wt.% Cd), galena, pyrrhotite and minor amounts of chalcopyrite, arsenopyrite, magnetite, ilmenite, chalcocite, electrum (55.00~89.55 wt.% Au) and argentite. The gangue minerals are quartz, calcite, chlorite, K-feldspar, biotite. Wall-rock alterations such as chloritization, silicification, pyritization, carbonatization and sericitization can be observed near the quartz veins. According to the mineral paragenetic sequence based on vein structure and mineral assemblages, three stage mineralizations can be recognized. Fluid inclusion, sulfur isotope and thermodynamic data show that the ore minerals were dominantly deposited at the between 388 and $204^{\circ}C$ from fluids with salinities of 8.1~0.3 wt.% equivalent NaCl, and sulfur isotope value 4.84 to 6.40 per mil of sulfides indicates igneous sources of sulfur in the hydrothermal system and fluid inclusion salinity data suggest that thermal fluids may have magmatic origin with some degree mixing of meteoric water.

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Overview of Epithermal Gold-Silver Mineralization, Korea:

  • Park, Seon-Gyu;Ryu, In-Chang;So, Chil-Sup;Wee, Soo-Meen;Kim, Chang-Seong;Park, Sang-Joon;Kim, Sahng-Yup
    • 대한자원환경지질학회:학술대회논문집
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    • 대한자원환경지질학회 2003년도 춘계 학술발표회 논문집
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    • pp.7-14
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    • 2003
  • The precious-meta] mineralization of epithermal type in the Korean Peninsula, which is spread over a broader range of ca. 110 to 60 Ma with a major population between 90 and 70 Ma, mainly occurred along the NE-trending major strike-slip fault systems (i.e., the Gongju and Gwangju ones) that commonly include volcano-tectonic depressions and calderas. The occurrence of epithermal mineralization during Late Cretaceous clearly indicates that the geologic setting of the Korean Peninsula changed to the favorable depth of ore formation with very shallow-crustal environments (〈1.0 kb) accompanied with gold-silver (-base-meta]) mineralization. Epithermal gold-silver deposits in Korea are primarily distinguished as sediment-dominant and volcanic-dominant basins by using criteria of varying alteration, ore and gangue mineralogy deposited by the interaction of different ore-forming fluids with host rocks and meteoric waters. These differences between the central and southern portions are causally linked to the tectonic evolution of the Peninsula during the Cretaceous time. In the Early Cretaceous, the sinistral strike-slip movements due to the oblique subduction of the Izanagi Plate resulted in the Gongju and Gwangju fault systems in the central portion of the Korean Peninsula, which was accompanied with a number of sediment-dominant basins formed along these faults. During the Late Cretaceous, the mode of convergence of the Izanagi Plate changed to northwesteward so that orthogonal convergence occurred with a calc-alkaline volcanism. As results, volcanic-dominant basins were developed in the southern portion of the Peninsula, accompanied with volcano-tectonic depressions and caldera-related fractures. The magmatism and related fractures during Late Cretaceous may play an important role in the formation of geothermal systems. Thus, such fault zones may be favorable environments for veining emplacement that is closely related to the precious-metal mineralization of epithermal type in the Korean Peninsula.

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한국 동남부지역 금·은 광상산 에렉트럼의 화학조성 (Chemical Variations of Electrum from Gold and/or Silver Deposits in the Southeast Korea)

  • 최선규;박맹언;최상훈
    • 자원환경지질
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    • 제27권4호
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    • pp.325-333
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    • 1994
  • Gold and/or silver mineralization in the southeast province, Korea, occurred in hydrothermal quartz vein that fills fracture zones in Cretaceous volcanic and sedimentary rocks of the Gyeongsang basin or granites and Precambrian gneiss. Most of the gold-silver-bearing veins in the province occur in Hapcheon, Suncheon and Haman-Gunbuk area where they are associated with Cretaceous Bulgugsa granites. On the basis of the Ag/Au ratio on amounts produced and ore grades, mode of occurrence, and associated mineral assemblages, hydrothermal Au-Ag deposits in southeast province, Korea, can be classified as follows: pyrite-type gold deposit (Group IIB, Samjeong and Sangchon deposits), antimony-type gold-silver deposit (Group IV, Gisan and Geochang deposits), and antimony-type silver deposit (Group V, Sanggo, Seweon, Seongju and Gahoe deposits). All of the gold-silver deposits in the province are generally characteristics of the gold-silver or silver-dominant type deposit which contains more silver-bearing minerals than those deposits in central Korea. The gold-silver mineralization in the deposits consist of two generation; the early characterized by gold precipitation and the late represented by silver-rich (as silver-bearing sulfosalts minerals) mineralization. All but one deposit (Samjeong deposit) having relatively lower Au content in electrum values between ${\approx}20$ and ${\approx}50$ atomic %. The mineralogical data on electrum-sphalerite and/or arsenopyrite geothermometry and fluid inclusion data indicate that the gold and silver mineralizations were occurred at temperatures of $190{\sim}280^{\circ}C$ and $150{\sim}180^{\circ}C$, respectively. These suggest that the gold-silver mineralization in the province occurred in the lower temperature and pressure conditions as epithermal-type hydrothermal vein deposit.

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