• 제목/요약/키워드: post-magmatic alkali metasomatism

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충주지역 희토류 광상의 성인: 산출상태와 지화학적 특성 (Genesis of the REE Ore Deposits, Chungju District, Korea: Occurrence Features and Geochemical Characteristics)

  • 박맹언;김근수
    • 자원환경지질
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    • 제28권6호
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    • pp.599-612
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    • 1995
  • Some REE ore deposits are located in the middle part the of Korean peninsula. Geotectonically, the REE ore deposits situated on the Kyemyeongsan Formation of northern margin of the Okcheon geosynclinal belt and in the transitional zone between Kyeonggi massif and the Okcheon belt, with a deep-seated fracture separating the two tectonic units. The Kyemyeongsan Formation are different in lithology and metamorphic grade from the Gyeonggi massif and the Okcheon super group. The sequence of Kyemyeongsan Formation is dominantly composed of acidic metavolcanic and volcaniclastic rocks associated with alkaline igneous rocks which are related to volcano-plutonism. The REE ore deposits contain mainly Ce-La, Ta-Nb, Y, Y-Nd and Nd-Th group minerals. More than 15 RE and REE minerals have been found in the deposits, such as allanite, fergusonite, thorite bestnaesite, euxenite, polyclase, monazite, columbite, (Nb)-rutile, okanoganite, sphene, zircon, illmenite and some other unknown minerals. According to the characteristics of the mineral association, the REE ore deposits may be divided into 4 ore types; Zircon-REE, allanite-REE, feldspar-REE and fluorite-REE type. The Sm-Nd isochron age of the REE ore is 330 Ma, and the Sm-Nd model age is 1.11 Ga with ${\varepsilon}_{Nd(t)}$ being - 2.9. This data suggest that the REE ore deposit was formed in the early Carboniferous, and the ore-forming material came from the mantle. The REE ores show distinct light REE enrichment with strong negative Eu anomaly. The REE patterns of schistose rocks from Kyemyeongsan Formation are similar to felsic volcanics from rifts or back arc basins in or near continental crust. The genesis of the REE ore deposit is quite complicated. Different geologic processes are displayed in the studied area; sedimentation, volcanic activity, metamorphism and hydrothermal replacement. Alkali granite has suffered extensive post-magmatic metasomatism of a high temperature to produce alkali metasomatites. Geochemical charateristics show that metasomatism of alkaline fluid was probably the dominant ore-forming process in Chungju district.

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태백산지역에 분포하는 화강암체 기원 견운모광상의 성인적 고찰 (Genetic Consideration of Sericite Deposits Derived from Granitic Rocks in the Taebaegsan Region)

  • 유장한;지세정
    • 한국광물학회지
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    • 제21권3호
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    • pp.239-246
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    • 2008
  • 강원도 영월 및 경북 봉화의 견운모광상은 화강암질 마그마의 알카리치환작용에 의한 광상으로 추정된다. 견운모광체는 캠브리아-트라이아기에 관입한 안주상의 우백질 화강암체 내에 배태되어 있으며, 이들 암주는 각기 시대미상의 페그마타이트질 미그마타이트와 선캠브리아기의 홍제사화강 암류를 관입하고 있다. 고생대 최하부층인 장산규암층은 열수작용 중에 그 방출을 막는 덮개역할을 하였으며, 견운모광상은 태백지향사 형성시에 생성된 함백향사의 남단 및 남동단에 각기 위치한다. 우백질 화강암류는 전기석을 가지는 페마타이트를 흔히 포함하며, 대체적으로 K 및 Na-장석류가 풍부하며, 광체는 암체의 상부 및 가장자리로 가면서 흔히 확인되며, 고품위광체는 거의 순수한 견운모 단일광물로 구성되는 초그라이젠화를 나타내기도 한다. 화학분석에 의하면, $Na_{2}O$$K_{2}O$함량이 $2.00\sim7.03wt%$로서 그라이젠화가 뚜렷하지만 CaO는 $0.05\sim4.51wt%$로서 알비타이트화는 미약하다. 영월 지역은 견운모와 함께 납석이 포함되므로 대현지역에 비하여 열수의 온도 등이 더 높았음을 암시한다. 태백산지역에는 그라이젠형광상으로 석석이 산출되었었고, 광상형성에 유리한 탄산염암의 분포가 넓으므로 중석, 휘수연 등의 감속원소와 함께 Be, Nb, Li 및 희토류원소류 등의 산출이 기대되며 이들에 대한 연구가 기대된다.

계명산층내 알칼리 화강암 기원의 Nb-Y 광화작용에 수반되는 퍼구소나이트의 지구화학 및 산출특성 연구 (Geochemical and Petrographical Studies on the Fergusonite Associated with the Nb-Y Mineralization Related to the Alkaline Granite, Kyemyeongsan Formation, Korea)

  • 박맹언;김근수;최인식
    • 자원환경지질
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    • 제30권5호
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    • pp.395-406
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    • 1997
  • Some RE (Zr, Nb, REE) ore deposits are located in the middle part of the Korean peninsula. Geotectonically, the RE ore deposits situated on the Kyemyeongsan Formation of northern margin of the Okcheon geosynclinal belt and in the transitional zone between Kyeonggi massif and Okcheon belt. The rare metal deposits distributed in Kyemyeongsan Formation which consists of schist and alkaline granite. The alkali granite has suffered extensive post-magmatic metasomatism and hydrothermal processes. The ore contains mainly Ce-La, Ta-Nb, Y, Y-Nb, Ti-Nb-(U), Nd-Th group minerals. Fergusonite, one of Nb-Y rich REE minerals belonging to the A-B oxides, is most common mineral in the rare metal deposits. The fergusonite bearing rocks may be devided into four types by occurrence features and mineral association, that is, zircon type, allanite vein, feldspar type, and fluorite type. Fergusonites show wide variations in optical properties, due to part of differences in their chemical composition (depending on the types), but also the degree of crystalinity of the individual specimens. Fergusonite metamicts enclosed in biotite are generally surrounded by well developed pleochroic haloes. Usually, fergusonite is accompanied with zircon and other REE-bearing minerals. Petrographical and chemical data are presented for fergusonites which collected different types. $Nb_2O_3$ and $Y_2O_3$ contents range from 48.51 to 53.01 wt.% and 29.18 to 42.02 wt.% respectively. Also, $ThO_2$, (1.83~6.93), $UO_2$, (0.17~2.84), ${\sum}RE_2O_3$ (except to Y) (1.11~8.73), and $TiO_2$, (0.19~1.19 wt.%) contents show variational compositions according to fergusonite types. The ${\sum}RE_2O_3$ of fergusonites are positive relation with $Y_2O_3$ and negative relaton with $ThO_2$ and $({\sum}{RE_2O_3}-{Y_2O_3})$. The $Nb_2O_3$ is sightly negative relation with $Ta_2O_3$. Back-scattered electron microscope images (BEI) of fergusonite show the mineral composition and textural feature is very complicated. The variation of Nb, Th and REE content of fergusonite and the modes of occurrence of mineral, suggests that REE may have been mobilized during the circulation of hydrothermal fluids related to contact metamorphism (metasomatism). The chemical variation of the fergusonites with occurrences and mineral association can be related to metasomatism of alkaline fluid was probably the dominant ore-forming process in Chungju district.

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충주지역 희유원소광상에서 산출되는 갈렴석의 지구화학적특성 (Geochemical Characteristics of Allanite from Rare Metal Deposits in the Chungju Area, Chungcheongbuk-Do (Province), Korea)

  • 박맹언;김근수;최인식
    • 자원환경지질
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    • 제29권5호
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    • pp.545-559
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    • 1996
  • Rare metal (Nb-Zr-REE) ore deposits are located in the Chungju area. Geotectonically, the rare metal ore deposits are situated in the transitional zone between Kyeonggi massif and Okcheon belt. The rare metal deposits are distributed in Kyemyeongsan Formation which consist of schist and alkaline igneous rocks. Alkali granite has suffered extensive post-magmatic metasomatism and hydrothermal processes. The ore contains mainly Ce-La, Ta-Nb, Y, Y-Nd, Nd-Th group minerals. More than 15 RE and REE minerals are found in the ore deposits. Allanite, one of the Ce-La rich REE minerals belonging to the epidote group, is the most common mineral in the studied area. The allanite- bearing rocks may be devided into seven types by features of occurrence and mineral associations; zircon type (ZT), allanite-vein type (AT), feldspar type (KT), fluorite type (FT), quartz-mica type (QT), iron-oxide type (MT), and amphibole type (HT). The allanite veins (AT) and zircon rich rocks (ZT) contain the highest total REE contents. Differences in REE abundance can be interpreted in terms of varying portions of magmatic hydrothermal fluid. Petrographical and chemical data are presented for allanites which were collected from different types. The allanites show wide variations in optical properties, due in part to differences in their chemical composition (depending on the types) and to the degree of crystallinity of the individual specimens. Allanite metamicts in biotite are generally surrounded by well developed pleochroic haloes. Usually, allanite is accompanied by zircon and other REE-bearing minerals. CaO and total REE contents $({\sum}RE_2O_3)$ range from 9.29 to 18.79% and 11.66 to 26.31%, respectively. Also, SiO, (28.87~32.61%), $Al_2O_3$ (8.30~16.88%), and $Fc_2O_3$ (16.74~24.38%) contents show varying contents from type to type. The ${\sum}RE_2O_3$ of allanite has positive relationships with $Fe_2O_3$ and negative relaton with CaO, $SiO_2$, and $Al_2O_3$ Backscattered electron microscope images (BEl) of allanite shows that the its mineral composition and texture is very complex. The allanite-bearing hosts show distinct light REE enrichment with strong negative Eu anomaly except for HI. The HT has an almost flat REE distribution pattern with a small negative Eu anomaly. The chemical variation of the allanites with occurrences and mineral association can be related to condition of temperature and oxidation states in precipitation environment.

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