• 제목/요약/키워드: hydrothermal quartz

검색결과 264건 처리시간 0.026초

창원시 의창지역 보난자형 금광상 성인 : 반응경로 모델링에 의한 지구화학적 해석 (Genesis of Bonanza-style Ores in Uichang Area, Changwon City: Geochemical Interpretation by Reaction Path Modeling)

  • 이승한;노상건;박맹언
    • 자원환경지질
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    • 제50권2호
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    • pp.85-96
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    • 2017
  • 의창지역의 삼정광산과 용장광산의 금광화작용은 보난자(Bonanza)형 금광상의 특성을 나타낸다. 광상은 퇴적암 내의 장석질 사암과 석영맥의 접촉부에서 주로 산출되며, 금과 은을 함유하는 광물은 에렉트럼과 더불어 은황화광물 및 황산염광물로 산출된다. 반면, 광상의 모암이 쳐트질 암석과 안산암인 경우에는 금광화작용이 장석질 사암의 경우보다 미약하게 발달된다. 이 연구에서는 금의 침전 특성을 파악하기 위하여 열수용액과 장석질 사암 및 안산암간의 수치모델링에 의한 다성분 다상계 평형계산을 실시하였다. 모델링에서는 함금은 광물인 에렉트럼 및 수용액상 또는 기상 원소들이 사용되었다. 반응경로 모델링 결과, pH가 증가함에 따라 석영, 녹니석, 견운모, 황동석, 방연석, 황철석, 에렉트럼, 양기석과 장석이 침전되었다. 또한, 에렉트럼은 모암과 광화용액 간의 반응에 의한 급격한 pH 증가와 탈황화작용에 의해 침전되었음을 확인하였다. 금 은비는 용액의 pH 조건이나 아칸다이트와 폴리바사이트와 같은 은황화 광물 침전에 의해 변화되었다. 한편, 안산암과 열수용액과의 반응에서 침전된 광물은 열수용액과 장석질 사암과의 반응에서 침전된 광물과 유사하지만 상대적으로 적은 양의 에렉트럼이 침전되었다. 이러한 연구결과로 미루어 볼 때 의창지역 보난자형 금광화작용의 부광대는 모암 규제에 의해 형성되었다고 판단된다.

경남(慶南) 및 전남(全南) 일부(一部) 납석광상(蠟石鑛床)의 산소(酸素)-황(黃) 동위원소조성(同位元素組成)과 광상성인(鑛床成因) (Oxygen and Sulfur Isotope Composition, and Genesis of Some Pyrophyllite Deposits Distributed in the Kyeongnam and Cheonnam Provinces)

  • 전효택;정영욱;김인준
    • 자원환경지질
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    • 제24권2호
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    • pp.97-105
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    • 1991
  • Oxygen and sulfur isotope composition of pyrophyllite and pyrite from six pyrophyllite deposits in the Yangsan-Milyang areas (the Cheonbulsan, Dumyong, Dongrae, Youkwang, Sungjin and Milyang mines), and five deposits in the Whasoon-Dado-Haenam areas (the Byuksong, Songseok, Dado, Bugock and Nowha mines) were measured. Pyrophyllite ores both from the Yangsan-Milyang areas and the Dado-Haenam areas are composed mainly of high alumina minerals such as pyrophyllite, sericite and kaolinite. Most of altered rocks show diagnostic chacteristics of bleaching effect. Major minerals of the Songseok ore deposit in the Whasoon area are pyrophyllite, and diaspore with minor amounts of kaolinite and quartz. The Byuksong ores from the Whasoon area were composed mainly of andalusite, kaolinite, pyrophyllite and mica with small amounts of chloritoid, quartz and carbonaceous matter. The Byuksong and Songseok ores show metamorphic textures such as porphyroblastic, and pressure solution textures, and have low whiteness values, The ${\delta}^{18}O$ values of pyrophyllite from the Cheonbulsan and Dumyong mines in the Yangsan area, and the Dado and Nowha mines in the Dado-Haenam areas were in the range of 0.23~5.36%,. The relatively low 8 180 values provide conclusive evidence for hydrothermal activity in these deposits. The ${\delta}^{18}O$ values of pvrophvllite from the Songseok mine in the Whasoon area were measured as 6.70-8.13%, and these higher ${\delta}^{18}O$ values suggest that the Songseok ore deposit have been probably subjected to metamorphism. ${\delta}^{34}$S(pyrito) values from the Cheonbulsan, Dumyong, Youkwang, Dongrae, Sungjin and Milyang deposits in the Yangsan-Milyang areas, and the Dado pyrophyllite deposits in the Dado area range from -5.8 to 2.7%, which means that the pyrite sulfur could be of igneous origin. ${\delta}^{34}$S(pyrito) from the Nohwa mine in the Haenam area is, however, measured as -12.4%" implying the contamination of sulfur derived from the sedimentary country rocks. All of the studied high alumina deposits in the Yangsan-Milyang areas and the Dado-Haenam areas were hydrothermal in origin, whereas the Byuksong and Songseok ore deposits in the Whasoon area were probably of metamorphic origin.

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대현 금-은광상의 모암변질에 따른 원소분산 (Element Dispersion by the Wallrock Alteration of Daehyun Gold-silver Deposit)

  • 유봉철
    • 자원환경지질
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    • 제46권2호
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    • pp.199-206
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    • 2013
  • 대현 금-은광상은 Cambro-Ordovician 석회암질 대리암내에 발달된 NE 방향성의 단열대를 따라 형성된 2개의 열수성 석영맥으로 구성된다. 모암변질시 원소 분산과 이득/손실을 알아보기 위해 모암, 열수변질대 및 금-은 광맥에서 시료를 채취하였다. 모암변질시 뚜렷한 변질대가 관찰되지 않으며 구성광물은 주로 방해석, 돌로마이트, 석영과 소량 녹염석 등이다. 이 광상의 광석광물은 유비철석, 자류철석, 황철석, 섬아연석, 황석석, 황동석, 방연석, 에렉트럼, 자연 창연 및 은 광물 등이 산출된다. 분석된 자료를 기초로, 모암은 주로 $SiO_2$, CaO 및 $CO_2$로 구성되며 소량 $Al_2O_3$, $Fe_2O_3(T)$ 및 MgO 등이 함유되어 있다. 광체로부터 모암으로 감에 따라 $SiO_2$, $Fe_2O_3(T)$, MgO, CaO 및 $CO_2$ 함량은 변화 폭이 크게 관찰된다. 모암변질시 모암의 물리-화학적 물성 때문에 원소 분산은 현저히 관찰되지 않으며 단지 광체 주변부에서만 관찰된다. 모암변질시 이득원소들은 $Fe_2O_3(T)$, 총 S, Ag, As, Bi, Cd, Cu, Ni, Pb, Sb, Sn, W 및 Zn이고 손실원소들은 $SiO_2$, MnO, MgO, CaO. $CO_2$ 및 Sr 이다. 따라서 우리의 결과물은 황강리 광화대내 석회암질 대리암을 모암으로 갖는 광상들의 지화학탐사시 활용될 수 있을 것이다.

신포광산(新浦鑛山) 형석(螢石)의 유체포유물(流體包有物에)에 관(關)한 연구(硏究) (Study on Fluid Inclusions in Fluorite from the Sinpo Mine)

  • 이춘우
    • 자원환경지질
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    • 제2권4호
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    • pp.1-21
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    • 1969
  • The Sin po fluorite deposit is of a fissure vein type which strikes $N75^{\circ}E$, dips $80^{\circ}SE$, and is embedded in the pre-Cambrian crystalline schist. The vein is 1 meter in average in thickness, about 800 meters in length and nearly 400 meters in depth. Narrow veins of crustified fluorites and agatic quartz are discontinuously embedded in the quartz gangue. Two-phase fluid inclusions, which are available for the homogenization method by using the Heating Stage Microscope 350, are found in the fluorite crystals. Most of the fluid inclusions are primary in origin and mainly composed of liquid phase associated with minor gas phase. They are tetrahedral, rounded-tubular, wedge shaped, rectangulartrapezoid, and irregular in shape. The maximum diameter of inclusions is 0.5mm and the minimum, 0.03mm, ranging from 0.2mm to 0.08mm in an average. The homogenization temperatures obtained from the test are $135-147^{\circ}C$, $125-138^{\circ}C$, $121-137^{\circ}C$, $116-133^{\circ}C$ and $106-128^{\circ}C$ in greenish, bluish, violet, light grayish blue, colorless and pinkish fluorites respectively. The range of formation temperatures of fluorites is $106-147^{\circ}C$. Therefore, the fluorite deposit of Sinpo Mine is considered to be of low temperature hydrothermal origin. The isothermal lines were drawn on the longitudinal section of the vein from the data of homogenization test. According to the results, the central and lower parts of the ore shoot in the west ore body show the higher temperatures of $130-138^{\circ}C$ and the peripheral and upper parts of it show the lower temperatures of $108-128^{\circ}C$. It seems that the isothermal trend roughly coinside with the pitch of the ore shoot.

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규석 종류에 따른 ALC 물성 연구 (A Study for Physical Properties of ALC using different Quartzite)

  • 추용식;서성관;임두혁;송훈;이종규;이승호
    • 한국건설순환자원학회논문집
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    • 제6권4호
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    • pp.89-94
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    • 2012
  • 본 연구에서는 ALC의 물리적 특성에 영향을 줄 수 있는 다양한 인자 중 규석 종류를 검토하였으며, 이때 회수슬러리를 재활용하였다. 규석은 문경 및 금평 규석을 사용하였으며, 규석 분말 입수분도 실험하였다. 규석의 XRD 분석과 광물상 분석을 통해 문경 규석의 주요 광물은 석영과 운모로, 금평 규석은 석영으로 구성되어 있음을 확인하였다. 더불어 금평 규석에 존재하는 석영의 결정성이 좀 더 양호하다는 것도 알 수 있었다. ALC의 밀도와 기공특성은 규석별 차이가 관찰되지 않았으나, 압축강도 및 A-수는 문경 규석보다 금평 규석 사용시에 양호한 특성을 발현하였다. 이러한 현상은 규석에 존재하는 주요 광물 결정종의 차이, 석영입자 결정성 및 미량성분 함량 차이 등의 영향으로 추정되었다.

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감계 동(銅)-연(鉛)-아연(亞鉛)-금(金)-은광상(銀鑛床) 광석광물(鑛石鑛物)과 유체포유물(流體包有物) 연구(硏究) (Ore Minerals and Fluid Inclusions Study of the Kamkye Cu-Pb-Zn-Au-Ag Deposits, Repubulic of Korea)

  • 이현구;김상중
    • 자원환경지질
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    • 제28권1호
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    • pp.9-17
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    • 1995
  • The Kamkye Cu-Pb-Zn-Au-Ag deposits occur as quartz veins that filled fault-related fractures of NW system developed in the Cretaceous Gyeongsang basin. Three major stages of mineral deposition are recognized: (1) the stage I associated with wall rock alteration, such as sericite, chlorite, epidote and pyrite, (2) the early stage II of base-metal mineralization such as pyrite, hematite, and small amounts of sphalerite and chalcopyrite. and the middle to late stage II of Cu-As-Sb-Au-Ag-S mineralization, such as sphalerite, chalcopyrite, galena with tetrahedrite, tennantite, pearceite, Pb-Bi-Cu-S system, argentite and electrum. (3) the stage III of supergene mineralization, such as covellite, chalcocite and malachite. K-Ar dating of alteration sericite is a late Cretaceous ($74.0{\pm}1.6Ma$) and it may be associated with granitic activity of nearby biotite granite and quartz porphyry. Fluid inclusion data suggest a complex history of boiling, cooling and dilution of ore fluids. Stage II mineralization occurred at temperatures between 370 to $220^{\circ}C$ from fluids with salinities of 8.4 to 0.9 wt.% NaCl. Early stage II($320^{\circ}C$, 2.0 wt.% NaCl) may be boiled due to repeated fracturing which opened up the hydrothermal system to the land surface, and which resulted in a base-metal sulfide. Whilst the fractures were opened to the surface, mixing of middle-late stage II ore fluids with meteoric waters resulted in deposition of Cu-As-Sb-Au-Ag minerals from low temperature fluids(${\leq}290^{\circ}C$). Boiling of ore fluids may be occured at a pressure of 112 bar and a depth of 412 m. Equilibrium thermodynamic interpretation of sphalerite-tetraherite assemblages in middle stage II indicates that the ore-forming fluid had log fugacities of $S_2$ of -6.6~-9.4 atm.

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용화광산(龍化鑛山)의 금은광화작용(金銀鑛化作用) (Gold and Silver Mineralization in the Yonghwa Mine)

  • 윤석태;박희인
    • 자원환경지질
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    • 제24권2호
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    • pp.107-129
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    • 1991
  • The Yonghwa gold-silver deposits are emplaced along $N15^{\circ}{\sim}25^{\circ}W$ trending fissures in middle Cretaceous porphyritic granite or Precambrian Sobaegsan gneiss complex. The results of paragenetic studies suggest that vein filling can be subdivided into four identifiable stages; state I: the main sulfide stage, characterized by base-metal sulfide minerals, iron oxides and minor electrum, stage II: electrum stage, stage III: electrum and silver-bearing sulfosalts stage, stage IV: post ore stage of carbonates and quartz. The ore mineralogy suggests that depositional temperature of the formation of the gold and silver minerals are estimated as 200 to $250^{\circ}C$ and 140 to $180^{\circ}C$, respectively. Sulfur fugacity of the formation of the gold and silver minerals are estimated as $10^{-14.0}$ to $10^{-12.2}$ atm and $10^{-18.5}$ to $10^{-17.2}$ atm, respectively. A consideration of the pressure regime during ore deposition bases on the fluid inclusion evidence of boiling suggests lithostatic pressure of less than 180 bars. This range of pressure indicate that vein system lay at depth of 700m below the surface at the time during mineralization. Salinities of ore-bearing fluids range from 0.4 to 6.9 wt.% equivalent NaCl. The sulfur and carbon isotopic data reveal that these elements were probably derived from a deep-seated source. The ${\delta}^{18}O$ of the hydrothermal fluid was determined from ${\delta}^{18}O$ values of quartz and calcite. Oxygen and hydrogen isotopic studies reveal that meteoric water dominate over ore-bearing fluid.

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경상분지내 열수광상의 광화작용과 백악기 화강암류의 화학성분 변화와의 관계 (Mineralization of Hydrothermal Ore Deposits in Relation to Chemical Variation of the Cretaceous Granitoids in the Gyeongsang Basin)

  • 이재영;이진국;이인호;김상욱
    • 자원환경지질
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    • 제27권4호
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    • pp.363-373
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    • 1994
  • The Cretaceous granitic rocks show differences in rock types and chemical compositions according to metallogenic provinces of copper, lead zinc and molybdenum in the Gyeongsang basin. Jindong granites are of granodiorite~quartz diorite~diorite in Cu-province; Makeunsan/Yucheon-Eonyang granites, granodiorite~granite in Pb Zn-province; Onjeongri-Yeonghae granites, granodiorite~quartz diorite in Mo-province, and there is a trend that productive masses are less differenciated than barren masses in Cu and Pb-Zn provinces whereas productive masses are more differenciated than barren masses in Mo province. Metallogenic provinces are distinguishable by variations of major and trace elements. The Cretaceous granitic rocks are highest in the content of Ca, Mg and other basic major elements and lowest in the content of K and Na in Cu provicne; the variation trends are vice versa in Pb-Zn province. Trace elements such as Rb and Sr show variations related to K and Ca, and metallogenic provinces are also distinguishable by their ratios. The granitic rocks of Mo province have intermediate content of major and trace elements, but are clearly distinguishable from Jindong granites and partly overlapped by Yucheon-Eonyang granites. Chlorine content in biotites is higher in a productive mass than in a barren mass in Cu province. Therefore, the mineralogical and chemical compositions are applicable as geochemical index to distinguish the types of mineralizaion, and productive and barren masses of the Cretaceous granitic rocks in the Gyeongsang basin.

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우리나라 동남부지역의 열수광상에 대한 광물학적 및 광상학적 연구: (3) 밀양납석 광상 (Mineralogy and Genesis of Hydrothermal Deposits in the Southeastern Part of Korean Peninsula: (3) Miryang Napseok Doposits)

  • 김수진;김정진;추창오
    • 한국광물학회지
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    • 제5권2호
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    • pp.93-101
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    • 1992
  • 경남 밀양 일대의 화산암에는 열수변질대가 상당히 넓게 발달하고 있으며, 여러 개의 점토광상이 분포한다. 납석광상은 주로 안산암질 응회암에서 배태된다. 납석광석의 주구성광물은 엽납석과 딕카이트이며, 그외에 일라이트, 토수다이트, 듀모티에라이트, 석영 등의 규산염광물들이 소량 수반되며, 디이아스포아, 황철석, 웨이브라이트 등이 산출된다. 본 지역의 엽잡석은 단지 2M 다형만 산출된다. 엽납석은 약 750${\circ}C$에서 OH가 빠져나감에 따라서 $d_{001}$ 간격이 증간한다. 할로이사이트는 튜브형태로 나타난다. 웨이브라이트는 열수변질작용 말기의 낮은 온도에서 틈을 따라 침천된 것이다. 본 지역의 5개의 변질대로 구분되는데, 주광체로부터 멀어질수록 엽납석-딕카이트대, 실리카대, 일라이트대, 할로이사이트대, 녹니석-알바이트대로 대상분포를 보인다. 점토광물은 모암으로부터 Si와 알카리이온의 용탈에 의해서 형성되었다. 광물조합과 엽납석 다형 및 기존의 열역학적 자료를 밀양광산의 형성온도는 270∼350${\circ}C$ 내외인 것으로 추정된다.

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알루미나가 11Å Tobermorite의 수열합성에 미치는 영향 (Influence of Alumina on Hydrothermal Synthesis of 11Å Tobermorite)

  • 임굉;임재석
    • 한국재료학회지
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    • 제15권2호
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    • pp.97-105
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    • 2005
  • [ $11\AA$ ] tobermorite$(5CaO{\cdot}6SiO_2{\cdot}5H_2O)$ is synthesized from the mixtures of calcium hydroride and quartz using alumina in a molar ratio $Ca(OH)_2/SiO_2$ of 0.8 at $180^{\circ}C$ for 8 and 24 hrs under saturated steam pressure. The influence of alumina on the formation of $11\AA$ tobermorite was investigated by X-ray diffraction, differential thermal analysis and infrared spectroscopy. $11\AA$ tobermorite containing increasingly larger amounts of aluminum showed a shift of the basal spacing from 11.3 to $11.6\AA$. In general, there was a direct linear relation between the basal spacing and added content of alumina. The differential thermal analysis curves showed that $11\AA$ tobermorite with increasing alumina contents exhibited the exothermic peak at high temperature, namely $11\AA$ tobermorite containing aluminum gave a sharp exothermic peak at temperature around $850\~860^{\circ}C$ in the case of $S_3\~S_5$. The absorption band at $1607\~1620cm^{-1}$ is attributed to the bending vibration of water, and the position of the main O-H stretching and Si-O lattice vibration of $11\AA$ tobermorite at 3500 and $965cm^{-1}$ respectively is not altered. Consequently the existence of alumina accelerates the crystallization of $11\AA$ tobermorite, and that the aluminum ion appears to substitute for the silicon ion in $11\AA$ tobermorite structure. Al-containing tobermorite is distinguished from Al-free tobermorite.