• 제목/요약/키워드: sericite ore

검색결과 70건 처리시간 0.019초

청하지역 유천 견운모의 산상 및 물성 (A Study on the Geological Occurrence, the Mineralogical and Physico-Chemical Properties of the Yucheon Sericite Ore in Chungha Area, Kyungsangbuk-do)

  • 이동진
    • 한국광물학회지
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    • 제10권2호
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    • pp.114-125
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    • 1997
  • The purpose of this study is to clarify the geological occurrence, mineralogical, physico-chemical and thermal properties of the sericite ore which located in Chungha area, Kyungsangbuk-do. The geology of this area are composed mainly of hornfels and some felsite porphyry. The sericitic ore is classified into sericite, sericite-quartz and quartz-sericite ore according to mineral assemblages. Mineral components in sericite ore are mainly sericite with minor quartz, apatite, sphene, zircon, ilmenite, bismuthinite, iron oxide and etc. Sericite-quartz ore are mainly composed of sericite and quartz. Accessary minerals are muscovite, epidote, zircon, sphene, iron oxide and etc. The chemical compositions of K2O, Al2O3, & Ignition loss in sericite and sericite-quartz ore increase than that of the host rock, while the composition of SiO2, Na2O & Fe2O3 decrease. Sericite and sericite-quartz ore are characterized by the specific gravity of 2.35 and 2.44, the pH of 4.36 cP and 2.36 cP respectively. The result of size analyses of sericite ore is 11.3% in grain volume concentration between 12.9 $\mu\textrm{m}$ and 11.1$\mu\textrm{m}$, and 32.3% between 9.6$\mu\textrm{m}$ and 12.9$\mu\textrm{m}$. The thermal expansivity of sericite and sericite-quartz ore show the similar pattern. The sericite ore shows the thermal expansivity of 0.31% at 50$0^{\circ}C$, 0.39~0.75% at 600~1,00$0^{\circ}C$ and 0.74% at 1,10$0^{\circ}C$. The sericite-quartz ore show the thermal expansivity of 0.29% at 50$0^{\circ}C$, 0.36~0.72% at 600~1,000% and 0.71% at 1,10$0^{\circ}C$.

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경북 양북지역산 견운모광석의 물성 및 부존산상 (A Study o the Geological Occurrence, the Mineralogical and Physico-chemical Properties of the Sericite Ore from the Yangbuk Area, Kyungsangbuk-do)

  • 이동진;고상모
    • 한국광물학회지
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    • 제11권2호
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    • pp.85-96
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    • 1998
  • The sericite ore is formed by the hydrothermal alteration of rhyodacitic welded tuff. The alteration zone of the host rock can be classified into four types based on the mineral assemblages ; sericite, quartz-sericite, silicified and propylite zone. The sericite ore mainly occurs as vein types and fault clay along the fault plane in the quartz-sericite zone. Mineral components of the sericite ore are mainly sericite with minor diaspore, corundum and pyrite. The sericitic porcelaineous ore is mainly composed of quartz and sericite. Accessory minerals are muscovite, diaspore, sphene, corundum, pyrite, iron-oxides and etc. The chemical compositions of K2O, Al2O3, and ignition loss in the sericite ore increase largely than that of the host rock, while the compositions of SiO2, Na2O and Fe2O3 decrease. XRD patterns of the heat-treated sericite ores show the formation of mullite at $1,200^{\circ}C$. and the diaspore-bearing sericite ore forms mullite and corundum at $1,200^{\circ}C$. The differential thermal analysis of the sericite ores show small endothermic peak at 645~668$^{\circ}C$. and the diaspore-bearing sericite ore shows a strong endothermic peak at $517^{\circ}C$. It indicates that the decomposition of diaspore appear at lower temperature than that of sericite. The thermal expansivity of the sericite ores show the similar pattern. The sericite ores show the thermal expansivity of 3.3~4.7% at 900$^{\circ}C$ and 0.39~0.75% at 1,20$0^{\circ}C$, respectively. DTA-TG curves of the sericite ores show closely relations with the thermal expansivity.

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게 껍질, 견운모 및 숯 분말이 벼의 생육, 수량 및 쌀의 품질에 미치는 영향 (Growth, Yield and Grain Quality of Rice Affected by Application of Crab Shell, Sericite Ore, and Charcoal Powders)

  • 이석순;이문정;김복진;홍승범
    • 한국환경농학회지
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    • 제24권2호
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    • pp.185-190
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    • 2005
  • 일부 농가에서 이용하고 있는 기능성 쌀 생산 농자재인 게 껍질, 견운모 및 숯 분말의 시용이 벼의 생육, 수량 및 쌀의 품질에 미치는 영향을 구명하고자 본 실험을 실시하였다. 게 껍질 분말 시용구는 다른 처리에 비하여 분얼수, 이삭수, 엽면적지수, 식물체의 질소함량을 증가시켰으나 등숙율은 낮았고, 백미수량은 차이가 없었다. 미질은 게 껍질 분말 시용구에서 완전미 비율과 Toyo 식미치는 낮았고, 분상질미 비율, 단백질 함량은 높았다. 견운모와 숯 분말 처리는 벼의 생육, 수량 및 수량구성요소, 쌀의 품질은 무처리와 차이가 없었고, 단백질 함량는 무처리보다 높았으나 Toyo 식미치는 낮았다.

건식정제에 의한 견운모광의 품위향상연구 (Improvement in Grade of Sericite Ore by Dry Beneficiation)

  • 조건준;김윤종;박현혜;조성백
    • 한국재료학회지
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    • 제19권4호
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    • pp.212-219
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    • 2009
  • A study on the dry beneficiation of sericite occurring in the Daehyun Mine of the Republic of Korea region as performed by applying selective grinding and air classification techniques. Quartz and sericite occurred in the raw ore as major components. The results of liberation using a ball mill and an impact mill showed that the contents of $R_2O$ were increased while $SiO_2$ was decreased in proportion to decreasing particle size. According to the XRD, XRF analysis and the EDS of SEM analysis, the ball mill gave a better grade product in $R_2O$ content than the impact mill when the particle size was the same. When the raw ore was ground by the impact mill with arotor speed 57.6 m/sec and then followed by 15,000rpm classification using an air classifier, the chemical composition of the over flowed product was 49.65wt% $SiO_2$, 32.15wt% $Al_2O_3$, 0.13wt% $Fe_2O_3$, 10.37wt% $K_2O$, and 0.14wt% $Na_2O$. This result indicates that the $R_2O$ contents were increased by 49.5% compared to that of the raw ore. From these results described above, it is suggested that hard mineral such as Quartz little ground by selective grinding using impact mill whereas soft mineral such as sericite easily ground to small size. As a result of that hard minerals can be easily removed from the finely ground sericite by air classification and the $R_2O$ grade of thus obtained concentrate was improved to higher than 10wt% which can be used for ceramics raw materials.

밀양 납석광상의 모암변질작용과 생성환경 (Wall Rock Alteration and Genetic Environment of the Milyang Pyrophyllite Deposit)

  • 이강원;문희수;송윤구;김인준
    • 자원환경지질
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    • 제26권3호
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    • pp.289-309
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    • 1993
  • Milyang pyrophyllite deposit which was formed by hydrothermal alteration occurs in Late Cretaceous andesitic tuff in the Milyang area, Gyeongsangnamdo. The wall rock alteration and genesis of the Milyang pyrophyllite deposit were studied. The ore minerals are composed dominantly of pyrophyllite accompanied by small amounts of quartz, kaolinite, pyrite, dumortierite and diaspore. The alteration halo of this deposit can be divided into three zones on the basis of mineral assemblage; pyrophyllite, sericite and chlorite zone. The common mineral assemblages of each alteration zone are as follows: (1) pyrophyllite zone; pyrophyllite-quartz-kaolinite-pyrite-dumortierite-diaspore, (2) sericite zone; sericite-quartz-pyrite-kaolinite, and (3) chlorite zone; chlorite-plagioclase-quartz. Major element chemistry shows that characteristic depletion in MgO, CaO, and $Na_2O$ and relative increase in FeO from less altered chlorite zone to extensively altered pyrophyllite zone corresponding to variation in mineral assemblages. The paragenesis of ore minerals, oxygen isotope data, chlorite and illite geothermometry suggest that ore deposit was formed at about $250{\sim}330^{\circ}C$. Both hydrogen and silica activities are high in pyrophyllite zone. Potassium activity increases in sericite zone while hydrogen activity becomes low in chlorite zone. The pyrophyllite zone was formed relatively higher temperature than those of sericite and chlorite zones. The ore fluid was considered to be magmatic water in origin derived from the residual granitic magma which interacted with meteoric water.

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천운산층내 고알루미나광석에 대한 광물학적 연구 (Mineralogical Study on High Aluminous meta-Claystone form the Chununsan Formation)

  • 이동진;이성록
    • 한국광물학회지
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    • 제1권1호
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    • pp.48-62
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    • 1988
  • The high aluminous meta-claystones are thinly bedded to metasedimentary rocks which belong to Chununsan Formation. Major high aluminous minerals in the ores ae andalusite, kaolinite and pyrophyllite. The other significant constituents are sericite, chloritoid and carbonaceous material, etc. Ores can be classified into 4 types according to mineral compositions; andalusite- kolinite-sericite, andalusite-kaolinite-chloritoid, kaolinite-sericite-pyrophyllite, and kaolinite-chloritoid-sericite ore. The formation of ore minerals are resulted from sedimentary, diagenetic, metamorphic and hydrothermal processes. Andalusite are formed by low-grade metamorphism under the conditions of $400~500^{\circ}C$ and below 4kb, from the view-point of mineral stability field, illite-mica crystallinity and graphitization degree of the carbonaceous material. Andalusites are partly altered to kaolinite, forming major mineral phase in the ores.

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경북 봉화지역 홍제사 화강암 내에 배태하는 견운모광상의 산상 및 구성광물 (Occurrence and Mineralogy of Sericite Deposit in the Hongjesa Granite from the Bonghwa Area in Kyungsangbuk-do, Korea)

  • 오지호;황진연;고상모;곽규원;이효민;지세정
    • 한국광물학회지
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    • 제21권1호
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    • pp.67-83
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    • 2008
  • 경북 봉화지역의 선캠브리아기 홍제사 화강암 내에는 견운모 광상이 분포한다. 이 지역의 대현광산과 성황광산에서 산출되는 견운모에 대하여 현미경 관찰, X-선회절분석, 전자현미분석, X-선형광분석, ICP분석 등을 통하여 지화학적 및 광물학적 특성을 조사하고 그 형성과정을 검토하였다. 이 지역 견운모광상은 열수변질작용에 의해 화강암을 모암으로 한 견운모화작용에 의해 형성되었다. 이곳에 나타나는 광물조합과 그 산출상태로부터 4가지치 변질대로 구분되었다. 이러한 변질대는 점이적인 열수변질작용에 의해 형성된 것으로 나타났다. 이곳에서 산출하는 견운모는 광물화학적으로 모두 일라이트에 해당되는 것으로 나타났으며, 다구조형도 모두 $2M_1$으로 매우 단순한 형태를 보였다. 거의 순수한 견운모 광석은 여러 색을 나타냈으나, 주화학성분이나, 결정구조에서의 차이는 나타나지 않았다. 미량성분을 검토한 결과 진한 녹색을 띠는 것은 Cr이 상대적으로 다량 함유되고, 흑색의 것은 Ti이 상대적으로 많은 것으로 나타났다. 모암인 홍제사 화강암내에서 견운모 광상이 발달하는 것은 단층과 같은 단열구조와 관련되는 것으로 나타났다. 엽납석 및 고령석 등의 다른 변질광물은 나타나지 않으며, 열극대를 따라 변질된 단순한 형태의 열수광상인 것으로 나타났다.

상은광산(常隱鑛山)의 Au-Ag 광맥(鑛脈)의 광물(鑛物) 공생(共生) 및 화학조성(化學組成) (Mineral Paragenesis and Chemical Composition of Sangeun Au-Ag Ore Vein, Korea)

  • 김문영;신홍자;김종환
    • 자원환경지질
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    • 제24권4호
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    • pp.347-361
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    • 1991
  • The Sangeun ore deposit is located in a volcanic belt within the Gyeongsang Basin in south western Korea. The ore deposit is of representative epithermal Au-Ag quartz vein type developed in lapilli tuff. This paper presents the mineralization with special emphasis on mineral zoning of the deposits. Principal points are summarized as follows: (1) Four stages of mineralization are recognized based on macrostructures. From ealier to later they are stage I(arsenopyrite-pyrite-quartz), stage II(Au-Ag bearing Pb-Zn-quartz), stage III(barren quartz), and stage IV(dickite-quartz). (2) Electrum principally occurs with arsenopyrite and galena in stage II, and has chemical compositions of 72.9-67.1 Ag atom %, and has Ag/Au ratio of 2.69-2.04. (3) Sphalerite varies in its FeS content according to the mineralization stages; 22.03-18.60 mole % FeS and 1.33-0.23 mole % MnS in stage IB, 16.11-8.64 mole % FeS and 1.33-0.23 mole % MnS in stage II. (4) Alteration zones of mineral assemblage, from the vein to the wall-rock, consist of sericite - quartz - pyrite, sericite - quartz - dickite, sericite - chlorite plagioclase respectively.

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대현광산 견운모의 생성과정과 화학조성 및 폴리타잎 (Mineralogical Study of Sericite in the Daehyun Mine: Formation, Chemistry and Polytype)

  • 이병임;김수진
    • 한국광물학회지
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    • 제11권2호
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    • pp.69-84
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    • 1998
  • The Daehyun sericite deposit in socheon-myun, Bongwha-gun, Kyungsangbuk-do, Korea, has been formed by the hydrothermal alteration of the Hongjesa granite of Precambrian age, leaving the muscovite granite between ore body and the Hongjesa granite as the wall rock alteration zone. The process of sericitization of granitic rock as well as chemistry and structures of sericites were studied using polarizing microscope, X-ray diffractometer (XRD), electron probe microanalyzer (EPMA) and high resolution transmission electron microscope (HRTEM). There are two genetic types of sericites having different chemistry and structure. The early sericite is of 2M1 polytype and has octahedral composition close to muscovite. It has been formed from the primary muscovite, tourmaline and quartz under a relatively high temperature. The late sericite is of 1M, 2M1 and 3T polytypes and has phengitic composition. It has been formed form feldspar, biotite, muscovite and tourmaline under a relatively low temperature. Chemical analyses show t, the early sericite has less Mg+FeT content and lower Si/AlIV ratio in tetrahedral site than the late sericite.

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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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