• 제목/요약/키워드: Sangdong W mine

검색결과 13건 처리시간 0.023초

상동광산 금스카른광상의 지구화학적 연구 (A Geochemical Study of Gold Skarn Deposits at the Sangdong Mine, Korea)

  • 이부경;전용원
    • 자원환경지질
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    • 제31권4호
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    • pp.277-290
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    • 1998
  • The purpose of this research is to investigate the dispersion pattern of gold during skarnization and genesis of gold mineralization in the Sangdong skarn deposits. The Sangdong scheelite orebodies are embedded in the Cambrian Pungchon Limestone and limestone interbedded in the Myobong Slate of the Cambrian age. The tungsten deposits are classified as the Hangingwall Orebody, the Main Orebody and the Footwall Orebody as their stratigraphic locations. Recently, the Sangdong granite of the Cretaceous age (85 Ma) were found by underground exploratory drillings below the orebodies. In geochemisty, the W, Mo, Bi and F concentrations in the granite are significantly higher than those in the Cretaceous granitoids in southern Korea. Highest gold contents are associated with quartz-hornblende skarn in the Main Orebody and pyroxene-hornblende skarn in the Hangingwall Orebody. Also Au contents are closely related to Bi contents. This could be inferred that Au skarns formed from solutions under reduced environment at a temperature of $270^{\circ}C$. According to the multiple regression analysis, the variation of Au contents in the Main Orebody can be explained (87.5%) by Ag, As, Bi, Sb, Pb, Cu. Judging from the mineralogical, chemical and isotope studies, the genetic model of the deposits can be suggested as follows. The primitive Sangdong magma was enriched in W, Mo, Au, Bi and volatiles (metal-carriers such as $H_2O$, $CO_2$ and F). During the upward movement of hydrothermal ore solution, the temperature was decreased, and W deposits were formed at limestone (in the Myobong Slate and Pungchon Limestone). In addition, meteoric water influx gave rise to the retrogressive alterations and maximum solubility of gold, and consequently higher grade of Au mineralization was deposited.

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Vertical variations of heavy metals in tailings site of the Sangdong W mine, Korea

  • Jung Myungchae;Jung Moonyoung;Choi Yunwang;Kang Manhee
    • 한국지구물리탐사학회:학술대회논문집
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    • 한국지구물리탐사학회 2003년도 Proceedings of the international symposium on the fusion technology
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    • pp.511-514
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    • 2003
  • The objective of this study is to investigate the vertical variation of heavy metals in tailings from the Sangdong W mine. Tailings samples were taken at 6 drilling sites with 50cm intervals up to 21 meters in depth and dried at room temperature. The pH value, loss-on-ignition and water contents were measured. In addition, chemical compositions of the samples were determined by AAS after 0.1 N HCl leaching and ICP-AES after aqua regia leaching. The pH values were in the range of 7.4 to 9.5 due to chemical reactions of carbonate minerals. The ranges of heavy metals (mg/kg) extracted by 0.1N HCl were from 0.17 to 0.93 for Cd, 0.04 to 4.39 for Cu, 0.03 to 10.9 for Pb and 0.06 to 14.1 for Zn and those extracted by aqua regia were $3.10\~10.5,\;23.61\~251,\;63.7\~337\;and\;42.6\~134$ for Cd, Cu, Pb and Zn, respectively. Generally, the metal concentrations in tailings extracted by 0.1N HCl decreased with depth, whilst those extracted by aqua regia have a tendency to increase with depth in some case. Those trends might be due to the change of oxidation-reduction condition of the tailings.

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상동중석광산 광미에 함유된 중금속의 수직분포도 조사

  • 정명채;강만희;정문영;최연왕
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2003년도 추계학술발표회
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    • pp.52-55
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    • 2003
  • The objective of this study is to investigate the vertical variation of heavy metals in tailings from the Sangdong W mine. Tailings samples were taken at 6 drilling sites with 50cm intervals up to 21meters in depth and dried at room temperature. The pH value, loss-on-ignition and water contents were measured. In addition, chemical compositions of the samples were determined by AAS after 0.1N HC1 leaching and ICP-AES after aqua regia leaching. The pH values were in the range of 7.2 to 8.5 due to chemical reactions of carbonate minerals. The ranges of heavy metals (mg/kg) extracted by 0.1N HC1 were from 0.17 to 0.93 for Cd, 0.04 to 4.39 for Cu, 0.03 to 10.9 for Pb and 0.06 to 14.1 for Zn and those extracted by aqua regia were 3.10~10.5, 23.61 ~251, 63.7~337 and 42.6~134 for Cd, Cu, Pb and Zn, respectively. Generally, the metal concentrations in tailings do not change with depth, with they have a tendency to decrease with depth in some case.

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석회석을 활용한 광미와 폐석의 Cd, Cu, Pb 및 Zn의 제거

  • 지한구;정명채;정문영;최연왕;이문현;이재영
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2005년도 총회 및 춘계학술발표회
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    • pp.20-23
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    • 2005
  • The objective of this study is to examine a stabilized efficiency of heavy metals including Cd, Cu, Pb and Zn using slaked lime. Tailings from the Janggun Pb-Zn mine, the second Yeonhwa Pb-Zn mine, the Jisi Au-Ag mine and the Sangdong W mine were sampled and measured heavy metal concentrations contents using AAS as various extraction methods. During 156 hours, column test were undertaken to evaluate the possibility of stabilization by slaked lime. The result shows that $Ca(OH)_2$ has a good efficiency in heavy metal stabilization, especially at the Jisi mine with stabilized efficiencies of 97%(Cd), 99%(Cu), 86%(Pb) and 99%(Zn), respectively.

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중국의 중석광상을 근거로한 중석광상 성인 총론 (General Remarks of Geneses of Tungsten Ore Deposits Based on Tungsten Deposits of China)

  • 문건주
    • 자원환경지질
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    • 제28권3호
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    • pp.287-303
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    • 1995
  • Tungsten ore deposits in China show clearly their relationship between granitoids and orebodies. All kinds of different tungsten ore deposits, having the largest ore reserves in the world, occur in China. Major tungsten deposits in 1950'years were locally confined in three provinces such as Jiangxi, Hunan and Guangdong. However, the major tungsten ore deposits are replaced by new tungsten deposits such as Sandahozhuang, Xingluokeng, Shizhuan and Daminghsan deposit which may be larger than the previous major deposits. Tungsten ore deposits of China exhibit obviously the granitoid was the ore-bringer to form tungsten ore deposits. The wolframite-bearing quarz veins in China indicate that tungsten mineralization took place by crystallization of wolframite preferentially unless $Ca^{{+}{+}}$ was introduced from outside into the magma-origin-fluid, since it is understood that the scheelite in the Sangdong ore deposit was preferentially precipitated, because of chemical affinity, from the tungsten fluid in which Fe and Ca ions were as sufficient as to form magnetite, wolframite and scheelite. Tungsten deposits in the world are divided into two systems; W-Mo-Sn system and W-Mo system. Most of tungsten deposits in China dated to about 196-116 Ma belong to the W-Mo-Sn system, while late Cretaceous tungsten deposits such as the Sangdong deposit in Korea belongs to the W-Mo system. The genetic order of tin-tungsten-molybdenum mineralization observed in the Moping tungsten mine in China and the Sangdong in Korea may be attributed to volatile pressures in the same magma chamber. It is assumed from ages of tungsten mineralizations that ore elements such as tin, tungsten and molybdenum might be generated periodically by nuclear fission and fusion in a part of the mantle and the element generated was introduced into the magma chamber. The periodical generation of elements had determined association, depletion and enrichment of tin and molybdenum in tungsten mineralization and it results in little association of cassiterite in tungsten deposit of late Cretaceous ages. Different mechanism of emplacement of the ore-bearing magma has brought various genetic types of tungsten deposits as shown in China and the world.

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상동중석광상(上東重石鑛床)의 현미경적(顯微鏡的) 연구(硏究) (Microscopic Study of Sangdong Tungsten Ore Deposit, Korea)

  • 이대성;김서운
    • 자원환경지질
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    • 제2권1호
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    • pp.1-12
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    • 1969
  • In the Sangdong Mine area, Taebaegsan series (Pre-Cambrian) and Chosun System (Cambro-ordovician) are widely distributed. The Chosun System consists of Yangdug Series (Jangsan Quartzite and Myobong Slate) and The Great Limestone Series (Pungchon Limestone, Shesong Shale, Hwajeol Formation and Dongjeom Quartzite). The mineralized zone containing the main ore body of the Sangdong Mine was developed in the Myobong Slate formation. The result of the field and microscopic study on the mineral paragenesis and it's wall rock alteration in the tungsten ore deposit shows the following features. The orogenic movements of the Post-Chosun System in the Hambaeg Geosyncline are closely related to the tungsten ore deposition in the area, the ore minerals are composed mainly of scheelite, powelite molybdenite and sulfide minerals, and gangue minerals are hornblende, diopside, garnet, quartz, phlogopite, tremolite, biotite, muscovite, fluorite, etc., main ore body was enriched by scheelite bearing quartz vein filling into interstices of formerly mineralized zones, and the minor faults, faults of N $60^{\circ}-70^{\circ}W$, $45^{\circ}-60^{\circ}NE$ and joints, which were formed at the end of the mineralization and the slate. Country rock of the ore body was altered into the following several zones from the outside to the inside; lowgrade recrystalline aureole, silicified sericite zone, and diopside-hornblende zone. Under the microscopic observation of 195 samples taken from throughout ore body can be classified into 10 different groups by their mineral paragenesis as shown in table 2. The garnet-diopside group is primary skarn and it shows gradational change to the groups of later stage by the successive processes of metasomatism. From the stage of quartz-bearing group, the dissemination of scheelite is seen. The crystallization of scheelite in the bed started with the quartz deposition and continued to the last stage when quartz vein intruded into the main ore body. In the field and the under ground investigation a durable limestone bed in thickeness about 20 meters and their remnants in ore body are observed and under microscope calcite remnants are recognized. Hence it is posturated that the ore material moved up through the faults, shear zones or feather cracks and was assimilated with the interbeded limestone, after that the body was affected by the successive differentiated ore solution by gradational increasing in $SiO_2$, $K_2O$ and $H_2O$. Evidently this ore deposit shows the features resulted from pyrometasomatic processes.

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태백산-황강리 광화대 금속광산의 전략금속광종 재평가 (Revaluation of Strategic Metallic Commodities in the Metallic Mines within Taebaeksan-Hwanggangri Metallogenic Belt)

  • 이재호;허철호;지세정
    • 자원환경지질
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    • 제41권3호
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    • pp.287-297
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    • 2008
  • 태백산-황강리광화대내 34개 광산의 광석을 대상으로 8개 전략광물자원(Pb, Zn, Cu, Fe, Mo, W Au, U)의 함량을 분석하여 광종별 예비개발타당성을 추정한 결과는 다음과 같다. 동의 경우, 상동광산은 23%의 동(한계품위=0.7%)을 함유하는 것으로 나타났으며, 아연의 경우, 청일광산과 삼황학광산은 평균 5%의 아연(한계품위=2.0%)을 함유하는 것으로 나타났다. 특히, 상기 광산들에 대해서는 추가정밀조사가 요구된다. 또한, 몰리브덴의 경우(한계품위=0.02%), 제2연화(0.04%) 및 홍천광산(0.02%), 연의 경우(한계품위=0.58%), 원가사 광산(0.70%), 금의 경우(한계품위=10ppm), 동명(279ppm)및 삼황학광산(251ppm)에서, 각각 해당광종에 대한 국제가격추이에 맞추어 탄력적으로 재가행 여부에 대한 평가가 요구된다. 반면, 우라늄, 철, 텅스텐의 경우, 본 연구결과 경제적으로 개발할 가치가 있는 광산이 없는 것으로 사료된다.

풍촌 석회암지대 탐사에 적용될 새 지화학탐사법 연구 (Geochemical Exploration Technics in the Pungchon Limestone Area)

  • 문건주
    • 자원환경지질
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    • 제23권4호
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    • pp.369-381
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    • 1990
  • 우리나라에서 중요한 금속광상인 상동 중석, 연화 연-아연, 거도의 동-철 광상은 모두 태백분지내 함백향사 남익부에 위치하고 있다. 이들 광화작용은 대체로 동서 주향에 25-30도 북향한 경사로 놓여진 캠브리아기의 묘봉층내 석회암 협층과 풍촌 석회암에서 일어났다. 함백향사의 북익부에는 동일한 지질내에 동일형의 광상이 노출되어 있지 않아, 이 지역에서의 잠두광체를 찾기위한 수단으로 알려진 상동광산 지역에서 암석지화학적, 특별히 Si, Ca, Fe 및 탄소 안정동위원소를 이용한 탐사연구를 시도하였다. 광화대와 비광화대의 석회암 사이의 CaO와 $AL_2O_3$ 함량은 큰 차이를 보이고, 탄소동위 원소 분석결과 역시 ${\delta}^{13}C$ 값이 광화대에서 더 낮은 값을 보이는 바 그 내용은 아래와 같다. 비광화대 광화대 CaO 51.3% 43.5% $Al_2O_3$ 0.6% 2.4% ${\delta}^{13}C$ -0.39 permil -0.56 permil $Fe_2O_3$ 0.9% 1.4% $SiO_2$ 3.0% 2.4% 광화대내의 풍촌석회암의 Si 함량이 감소한 것은 앞선 연구(Moon. 1987) 결과와 상치되는 바, 광화대내의 석회암중 Al 함량이 증가한 사실을 확인한 사실을 근거로 생각해 볼때, Si의 감소는 열극, 균열, 또는 소규모의 단층올 따라 주로 발달된 변질물의 증가에 따른 결과로 유추되기도 한다. 따라서 광화대내의 Si 와 Al 함량이 보여주는 현상은 화강암류로부터 전달된 열의 영향으로부터 기인된 것으로 상위 지표부의 석회암에 이로부터 광화활동이 이어진 것으로 여겨진다. 만약 함백향사의 북익부에서 풍촌석회암의 Fe, Al의 함량이 평균 함량치 보다 높을 뿐만 아니라, Ca와 Si는 낮고 Ca 함량과 ${\delta}^{13}C$의 값이 평균치보다 낮은 값을 보이는 경우는 잠두광체 탐사에 이용될 가치가 있다고 본다.

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