• 제목/요약/키워드: hydrothermal quartz

검색결과 264건 처리시간 0.026초

고상반응식을 이용한 석회-석영의 수열반응속도와 반응메카니즘 (Hydrothermal Kinetics and Mechanisms of Lime and Quartz Used Solid State Reaction Equations)

  • 임굉
    • 공학논문집
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    • 제3권1호
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    • pp.223-233
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    • 1998
  • 고상반응식을 이용한 석회와 석영과의 수열반응속도 및 반응메카니즘에 관하여 연구하였다. 출발물질로 석영과 수산화칼슘 CaO/$SiO_2$몰비 0.8-1.0로 혼합하고 $180-200^{\circ}C$, 0.5-8시간동안 포화증기압하에서 오토클레이브로 수열반응을 행하였다. 수열반응속도는 총 석회의 양과 총 석영의 양에 대한 미반응 석회의 양과 미반응 석영의 양의 비로 구하였다. 반응속도는 Jander의 식 $[1-(1-\alpha)^{1/3}]^N=Kt$를 이용하여 얻은 결과, 석회의 반응속도는 N=1로서 주로 용해속도에 의해 지배되고 석영의 반응속도는 $N\risingdotseq2$로서 확산에 의해 주로 지배된다. 규산칼슘수화물계의 수열반응속도는 반응물 입자주위에 형성된 생성물층을 통한 물질전달에 의해 율속되는 것으로 추정되고 전체 수열반응의 속도식은 대략 $N=1-2$로서 경계층으로부터 확산에 의해 율속과정으로 전환된다.

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고내화도(高耐火度) 광석광물(鑛石鑛物)의 분포(分布)와 성인(成因)에 관(關)한 연구(硏究) -전남지역(全南地域)을 중심(中心)으로- (A Study on the Genesis and Distribution of High Refractory Ore Minerals in Jeonnam Province, Korea)

  • 박홍봉;권숙문;박배영;신상은
    • 자원환경지질
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    • 제15권2호
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    • pp.89-102
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    • 1982
  • Several mines in Jeonnam produce the ores of having high SK number of refractoriness. Among those for 5 mines, this paper deals with the relationahip between SK number and mineral composition of the ore, and with the genesis of the deposits. 1. Byok-Song and Chon-Un Mine: Mineral compositions of the ores are chiastolite, chloritoid(monoclinic), kaolinite, sericite, diaspore, corundum, and quartz. The ores having SK number of 36 or 37, consist chiefly of chiastolite and diaspore and a little amount of kaolinite, sericite, corundum, chloritoid, and quartz. The ores having SK number of 33 or 34 consist of chloritoid, sericite, kaolinite, chiastolite, and diaspore. With increasing the amount of chloritoid and sericite, and decreasing the amount of diaspore and chiastolite, the SK number of the ores decreases. The deposit, originally high alumina-bearing shale of Chon-Un San formation, seems to be formed by contact metamorphism(forming of chiastolite), regional metamorphism(forming of monoclinic chloritoid), and hydrothermal replacement(forming of large crystal of diaspore veinlets). 2. Song-Sauk Mine: Mineral compositions of the ores are chiefly pyrophyllite and quartz and a little amount of kaolinite, dickite, diaspore, and pyrite. Many spherical inclusions containing in pyrophyllite deposits, consist chiefly of diaspore and kaolinite, The inclusions have the high SK number of 38. Amount of spherical inclusions is about 5 % to the whole pyrophyllite ores. The SK number of other pyrophyllite ore is less than 32. Quartz and pyrite are chief minerals lowering the SK number of the ore. The deposits have been formed by hydrothermal processes by replacing the siliceous tuff of Mesozoic age. Spherical inclusions consisting of diaspore and kaolinite, show the selective replacement of hydrothermal solutions to the materials of feldspar in tuff. 3. Seung-San Mine: Mineral compositions of the ores are chiefly kaolinite, dickite, diaspore, and quartz. But some part of the mine consists of alunite deposits. The ores having SK number of 35 or higher consist chiefly of kaolinite and diaspore and a little amount of quartz. With increasing the amount of quartz and decresing the amount of diaspore, the SK number of the ore decreases. The deposits have been formed by hydrothermal processes by replacing the siliceous tuff and quartz porphyry. 4. Wan-Do Mine: Mineral compositions of the ores are chiefly pyrophyllite and quartz. But some ore contains a little amount of diaspore, kaolinite, pyrite, and chloritoid. The ores having high SK number of 36 consist chiefly of diaspore and pyrophyllite. Pyrophyllite ore has a SK number of 32 or lower. Amount of quartz and pyrite decreases the SK number of ores in this mine. Rhyolite was replaced by the action of hydrothermal solutions forming the pyrophyllite deposits.

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석영 나노 결정의 합성과 특성 (Synthesis and Characterization of Quartz Nanocrystals)

  • 문규섭;정성욱
    • 공업화학
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    • 제31권6호
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    • pp.697-700
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    • 2020
  • 본 연구에서는 석영 나노 결정의 합성과 특성 분석을 진행하였다. 비정질 실리카 나노 입자 전구체가 용해된 용액을 섭씨 250도 온도와 자가 압력의 온건한 열수 반응 하에서 석영 나노 결정을 성공적으로 합성하였다. 합성된 나노 결정의 화학적 조성과 구조 분석을 시행하였다. 알파 석영의 특징적인 고결정질 상의 나노 구조를 가지는 석영 나노 결정의 평균 크기는 반응 시간에 따라 407.5 에서 826.2 nm까지 비교적 좁은 범위에서 조정될 수 있음을 발견하였다. 본 연구를 통해 발견된 석영 나노 입자는 광전자, 센서, 및 충전식 배터리 소자의 기술 응용에 매우 중요한 잠재적 용도가 있을 것으로 사료된다.

거도광산(巨道鑛山) Fe-Cu 및 Au-Bi-Cu 광상(鑛床)에 대(對)한 광물학적(鑛物學的) 및 성인적(成因的) 연구(硏究) (Mineralogy and Genesis of Fe-Cu and Au-Bi-Cu Deposits in the Geodo Mine, Korea)

  • 고재동;김수진
    • 자원환경지질
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    • 제15권4호
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    • pp.189-204
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    • 1982
  • The Geodo mine is located in the southern limb of the Hambaeg syncline. Geology of the area consists of Paleozoic-Mesozoic sedimentary Rocks and Cretaceous igneous rocks. The important igneous rocks presumably related to skarnization and ore mineralization in the area, are the early granodiorite and the late porphyritic granodiorite. Two mineralogical types of ore deposits are recognized in the area. They are the Fe-Cu deposits in the Myobong formation and the Au-Bi-Cu deposits in the Hwajeol formation. Contact metamorphism due to granodiorite intrusion includes hornfelsization, exoskarnization and endoskarnization. Wall-rock alterations related to the Fe mineralization are grouped into the hydrothermal replacement skarnization and the hydrothermal filling skarnization. Another hydrothermal alteration is associated with the Cu mineralization. Various mineralogical analyses have been applied for the identification of minerals. They include optical microscopy, chemical analysis, etching test, X-ray diffraction, and infrared absorption spectroscopic analyses. The ore minerals in these ore deposits are classified into two groups;hypogene and supergene minerals. Hypogene minerals consist of magnetite, pyrite, chalcopyrite, and chalcocite. Supergene minerals consist of chalcocite, bornite, and geothite. Ore minerals show various kinds of ore texture: open-space filling, exsolution, replacement, and cementation texture. The gangue minerals consist of quartz, diopside, epidote, garnet and plagioclase in the hornfelsic zone, garnet, diopside, scapolite, actinolite, sericite, chlorite, quartz, and calcite in the skarn zone, and, epidote, chlorite, sericite, quartz, and calcite in the late hydrothermal alteration zone. This study shows that the Fe-Cu deposits are of metasomatic pipe type with the later hydrothermal fillings, and the Au-Bi-Cu deposits are of hydrothermal fissure-filling type. The mineralization is probably related to the intrusion of porphyritic granite.

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인도네시아 파찌딴 광화대 함 금속 광체의 안정동위원소 특성 (Stable Isotopes of Ore Bodies in the Pacitan Mineralized District, Indonesia)

  • 한진균;최상훈
    • 자원환경지질
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    • 제48권1호
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    • pp.15-24
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    • 2015
  • 인도네시아 동부 자바의 남서익부에 위치하는 파찌딴 광화대 금속광화작용은 스카른형 교대광체와 열극을 충진 발달하는 열수 맥상광체로 크게 분류할 수 있다. 스카른 형 교대광체는 올리고신 후기 퇴적암류 중 석회암층을 따라 관계화성암체인 석영반암 주변에 발달한다. 본 광체는 스카른광물과 함께 자철석 및 천금속 황화광물이 수반된다. 열수광체로는 관계화성암체인 석영반암으로 부터의 거리를 기준으로 근지성 함 동-아연 망상광체와 원지성 함 연-아연(-금) 맥상광체가 발달 분포한다. 황화광물의 황 동위원소 값으로부터 계산된 $H_2S$의 황 동위원소 값은 스카른광체의 경우 5.6-7.1‰, 열수광체의 경우 0.9-6.8‰ 이었다. 이는 원지성 열수 맥상 광체의 후기 광화작용으로 진행하면서 파찌딴 열수계 내 $SO_4/H_2S$의 비가 증가하면서 $H_2S$의 황동위원소 값이 감소한 것으로 확인된다. 광화대 내 산소 동위원소 값은 스카른 광체 내 자철석, 9.6과 9.7‰; 스카른 광체 내 석영, 6.3-9.6‰; 스카른 광체 내 방해석, 4.7 and 5.8‰; 열수 망상광체 내 석영, 3.0-7.7‰; 열수 망상광체 내 방해석, 1.2 and 2.0‰; 열수 맥상광체 내 석영, -3.9 - 6.7‰로서, 계산된 ${\delta}^{18}O_{water}$ 값은 근지성 스카른 및 열수 망상광체에서 원지성 열수 맥상광체에 이르면서 감소하는 경향성을 보인다. 열수계 ${\delta}D_{water}$ 값은 광체 유형에 관계없이 -65 to -88‰의 값을 보여준다. 이러한 산소 수소 안정동위원소 값의 경향성은 근지성 스카른 및 열수 망상광체 초기 광화작용을 지배한 마그마 기원의 열수 또는 상대적으로 낮은 water/rock 비 값을 갖는 환경하에서 동위원소 교환반응을 이루어 평형상태에 이른 열수가 풍부한 파찌딴 열수계 내에 광화작용의 진행 및 관계화성암과의 거리에 따라 높은 water/rock 비 값을 갖는 환경하에서 동위원소 교환반응을 이루어 진 열수 또는 동위원소 교환반응이 거의 이루어지지 않은 천수의 유입이 점증하며 광화작용이 진행되었음을 의미 한다.

남한의 주용 금속광상산 석영내의 유체포유물의 가스성분과 용존성분의 화학조성 (Gas and Solute Compositions of Fluid Inclusions in Quartz from Some Base-metal ore Deposits, South Korea)

  • 김규한;정해란
    • 자원환경지질
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    • 제32권5호
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    • pp.421-434
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    • 1999
  • Gas and chemical compositions of fluid inclusions in quartz some of Au-Ag, Pb-Zn-Cu and W-Mo mineral deposits in South Kores were analyzed to interpret the sources of ore fluid and the depositional condition of ore minerals in base-metal ore deposits. Fluid inclusions in quartz from the gold and silver mines are characterized by $CO_2$ rich fluids which have a wide range in $CH_4 \;and\; CO_2$ contents ($CH_4/CO_2$=0.001-0.225). The $CO_2$ rich but $CH_4$-poor nature of the fluid reflects the high fo2 condition during the mineral precipitation. The C2H6 is detected in hydrothermal quartz vines in metasedimentary rocks from the Jeonjoo-il, Youngbokari and Taechang mines. The $CH_4 /CO_2$ rations in W-Mo bearing quartz veins range from 0.005 to 0.214, which is similar with those in Au-Ag mines. However, skarn formation stage. Fluid inclusions, A relatively good correlation between Na and Cl contentrations reflects varible salinity in the fluid inclusion, it is suggested that the chemistry of promary magmatic hydrothermal fluids has changed during post-magmatic alteration and/or wall rock alteration processes. The content of gas compositions also depends on the kinds of country rocks, supporting above conclusion.

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동보(東寶) 중석(重石)-모리브덴 광상(鑛床)의 광물공생(鑛物共生)과 유체포유물(流體包有物) (Mineral Paragenesis and Fluid Inclusions of the Dongbo Tungsten-Molybdenum Deposits)

  • 박희인;문상호;배영부
    • 자원환경지질
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    • 제18권4호
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    • pp.331-342
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    • 1985
  • The Dongbo tungsten-molybdenum deposits are fissure-filling veins emplaced in granites of late Cretaceous age. Integrated field, mineralogic and fluid inclusion studies were undertaken to illuminate the characters and origin of the ore deposits. Mineral paragenesis is complicated by repeated fracturing, but four distinct depositional stages can be recognized; (I) tungsten-molybdenum minerals-quartz-chlorite stage, (II) iron-oxide and sulfides-quartz stage, (III) iron -oxide-base metal sulfides-sulfosalts-quartz-carbonates stage, (IV) barren rhodochrosite-zeolite stage. Fluid inclusion studies were carried out for stage I quartz and stage III quartz, sphalerite and calcite. Fluid inclusion studies reveals highly systematic trends of homogenization temperature and salinity throughout the mineralization. Ore fluids during stage I were complex, NaCl rich brine and salinity reached values as high as 34.4 weight percent equivalent NaCl, but the later ore fluids were more dilute and reached to 9.7 weight percent equivalent NaCl during stage III. Intermittent boiling of ore fluid during stage I is indicated by the fluid inclusions in stage I quartz. Depositional temperatures and pressures during stage I range from $520^{\circ}C$ to $265^{\circ}C$and from 600 to 400 bars. Homogenization temperatures of the stage III quartz, sphalerite and calcite range from $305^{\circ}C$ to $190^{\circ}C$. Fluid inclusion data from the Dongbo mine are nearly similar to those from other hydrothermal tungsten deposits in the Kyeongsang basin. Depositional temperature and salinity of ore fluids during precipitation of tungsten-molybdenum minerals in Dongbo mine were much higher, but $CO_2$ contents were much lower than those from hydrothermal tungsten-molybdenum deposits of late Cretaceous plutonic association in central parts of Korean peninsula.

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Oxygen Isotope Study of Mulgeum, Yangseong, Maeri and Kimhae Iron Ore Deposits in Gyeongnam Province, Korea

  • Woo, Young-Kyun;Savin, Samuel M.
    • 한국지구과학회지
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    • 제23권1호
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    • pp.97-104
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    • 2002
  • Mulgeum, Yangseong, Maeri and Kimhae iron ore deposits in Gyeongnam Province are hydrothermal skarn type magnetite ore deposits in propylitized andesitic rock near the contact with Cretaceous Masanite. Symmetrical zoned skarns are commonly developed around the magnetite veins. The skarn zones away from the vein are quartz-garnet skarn, epidote skarn and epidote-orthoclase skarn. Oxygen isotope analyses of coexisting minerals from andesitic rock, Masanite and major skarn zones, and of magnetite, hematite and quartz were conducted to provide the information on the formation temperature, the origin and the evolution of the hydrothermal solution forming the iron ore deposits. Becoming more distant from the ore vein, temperatures of skarn zones represent the decreasing tendency, but most ${\delta}^{18}O$ and ${\delta}^{18}O_{H2O}$ values of skarn minerals represent no variation trend, and also the values are relatively low. Judging from all the isotopic data from the ore deposits, the major source of hydrothermal solution altering the skarn zones and precipitating the ore bodies was magmatic water derived from the deep seated Masanite. This high temperature hydrothermal solution rising through the fissures of propylitized andesitic rock was mixed with some meteoric water, and occurred the extensive isotopic exchange with the propylitized andesitic rock, and formed the skarns. During these processes, the temperature and ${\delta}^{18}O_{H2O}$ value of hydrothermal solution were lowered gradually. At the main stage of iron ore precipitation, because all the alteration was already finished, the new rising hydrothermal solution formed only the magnetite ore without oxygen isotopic exchange with the wall rock.

경상분지 남동부의 산내화강암과 산내 W-MO 광상에 관한 유체포유물 연구 (A Fluid inclusion study of the Sannae granite and the associated Sannae W-Mo deposit, Southeastern Kyongsang Basin)

  • 양경희;이준동
    • 암석학회지
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    • 제8권1호
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    • pp.46-55
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    • 1999
  • Fluid inclusions in granite and hydrothermal quartz indicate that three fluids have affected the Sannae granite. The earliest fluid is represented by three-phase aqueous fluid inclusions with high salinity (38 to 46 wt.% NaCl equiv.). It was exsolves from a crystallizing melt and trapped at a relatively high-pressure condition. The secong fluid is represented by two-phase aqueous fluid inclusion with low entectic temperatures (< $-40^{\circ}C$). low- to moderate salinity (3 to 24.0 wt.% NaCl equiv.) and high homogenization temperatures$ ($309^{\circ}C$$473^{\circ}C$)($. This fluid was trapped at higher pressures than 300-500 bars and precipitated molybdenite and wolframite in quartz veins. It was probably generted by fluid-host rock interactions since they show a wide range of salinity within a narrow range of homogenization temperatures. The final fluid is represented by an aquenous fluid boiling that separated into high-salinity (34-38 wt.% NaCl equiv.) and low-salinity fluid (0 to 8.7 wt.%) at $303-376^{\circ}C$ and 50-150 bars. These boiling fluids precipitated euhedral quartz in miarolitic cavities. The compositions of the final fluid was rather complex in the $H_2$O-NaCl-KCI-$FeCl_2$ system. The Sannae granite was a locus for repeated fluid events including magmatic fluids during the final stage of crystallization, the convection of hydrothermal fluids causing a fluid ascending, fluid boiling, and the local W-Mo mineralization and formation of miarolitic cavities due to thermal, tectonic and compositional properties of the felsic granite.

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청양중석광상(靑陽重石鑛床)의 지질(地質)과 유체포유물(流體包有物)에 의(依)한 온도측정(溫度測定)에 관(關)한 연구(硏究) (Geologic and Fluid Inclusion Studies of Chongyang Tungsten Ore Deposits, South Korea)

  • 김규한
    • 자원환경지질
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    • 제10권1호
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    • pp.1-18
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    • 1977
  • Chongyang tungsten ore deposits, one of the most important tungsten mines in South Korea, me open space filling hydrothermal vein deposits embedded in Precambrian biotite gneiss and, Cretaceous (?) granite porphyry. Some wolframite-bearing quartz veins are closely associated with -quartz porphyries which strike about $N15^{\circ}-25^{\circ}W$ and dip $800^{\circ}SE$ to vertical. Mineralization took place in near vertical vein systems of 5 to 2000 meter long in the biotite gneiss and granite porphyry stock during early Cretaceous and Tertiary (?) period. The hydrothermal mineral paragensis has indicated that there were two major stages: vein and vug stages. The principal vein mineral is wolframite in a gangue of quartz with small amount of fluorite, pyrite, beryl and carbonate minerals. Present in minor amounts are molybdenite, bithmuthinite, native bismuth, arsenopyrite, galena, chalcopyrite, pyrrhotite, sphalerite and scheelite. Fluid inclusion study from the minerls at Chongyang mine reveals that vein stage fluids attained a temperature range of $200^{\circ}C-355^{\circ}C$ and vug stage $160^{\circ}C-350^{\circ}C$. The filling temperatures show the higher range of $200^{\circ}-355^{\circ}C$ in quartz and $280^{\circ}C-348^{\circ}C$ in beryls, whereas the lower emperature range of $283^{\circ}C-295^{\circ}C$ in rhodochrosite and $160^{\circ}-253^{\circ}C$ in fluorites. These temperatures are in reasonably good agreement with mineral paragnesis in this ore deposits. Volfamite minerals were analysed for major components. $WO_3$, MnO and FeO by wet chemical method. Chemical analysis indicates that they contain 70.56-71.54% $WO_3$, 8.52-10.01% MnO and 10.00-11.58% FeO. MnO/FeO ratios of wolframites shows the range of 0.78-0.94 which maybe indicates a comparatively high temperature type of hydrothermal deposits.

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