• 제목/요약/키워드: alkali-feldspar granite

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울진광산(蔚珍鑛山) 북부지역(北部地域)에 분포(分布)하는 알카리화강암(化崗岩)에 대(對)한 암석지화학적(岩石地化學的) 연구(硏究) (Petrochemical Study of Alkali Granite in northern Area of the Uljin Mine)

  • 김용준;조등룡;홍세선
    • 자원환경지질
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    • 제19권2호
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    • pp.123-131
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    • 1986
  • This study is focused on petrochemistry and petrogenesis of alkali granite which exposed at northern area of the Uljin mine in NE Korea. The rock is corresponded to the range of alkali feldspar granite and alkali feldspar quartz syenite on IUGS classification and contains characteristic Fe-rich biotite (annite) and sodic alkali amphibole (arfvedsonite). The alkali granite is the hypersolvus one-feldspar granite which is characterized by the absence of plagiclase except as a component of perthite and its normatve An contents are less than 5wt%. The bulk compositions of the alkali granite show reverse trends compared to Daly's. Tuttle and Bowen (1958) experimentally support that properties of the hypersolvus granite indicate that they have crystallized at high temperatures from a magma.

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금산지역 형석광화작용과 관련된 화강암질암의 지구화학적 자료 해석 (Geochemical Data Analysis of the Granitic Rocks Potentially Related to Fluorite Mineralization in the Geumsan District)

  • 진호일;전효택;민경원
    • 자원환경지질
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    • 제28권4호
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    • pp.369-379
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    • 1995
  • About forty ore deposits of $CaF_2{\pm}Au{\pm}Ag{\pm}Cu{\pm}Pb{\pm}Zn$ are widely distributed in the Geumsan district and are believed to be genetically related to the Mesozoic Geumsan granitic rocks. Based on their petrogeochemistry and isotopic dating data, the granitic rocks in this district can be classified into two groups ; the Jurassic granitic rocks(equigranular leucocratic granite, porphyritic biotite granite, porphyritic pink-feldspar granite, seriate leucocratic granite) and the Cretaceous granitic rocks(seriate pink-feldspar granite, equigranular alkali-feldspar granite, equigranular pink-feldspar granite, miarolitic pink-feldspar granite, equigranular biotite granite). Spatial distribution of fluorite ore deposits, fluorine contents of granitic rocks and fracture patterns in this district suggest that three granitic rocks(equigranular biotite granite, equigranular pink-feldspar granite, miarolitic pink-feldspar granite) of the Cretaceous period be genetically related to the fluorite mineralization. In these fluorite-related granitic rocks, fluorine is most highly correlated with Cs(correlation coefficient(r)>0.9), and also highly with MnO, U, Sm, Yb, Lu, Zn, Y, Li(r>0.7). Statistically the variation of fluorine in the fluorite-related granitic rocks can be explained in terros of only three elements, such as Lu, CaO and Cs, and the fluorite-related granitic rocks can be discriminated from the fluorite-nonrelated granitic rocks by a linear functional equation of La, Ce, Cs and F($Z_{Ust}=-1.38341-0.00231F-0.19878Ce+0.38169La+0.54720Cs$). Also, equigranular alkali-feldspar granite is classified into the fluorite-related granitic rocks by means of the linear functional equation($Z_{Ust}$).

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경주 남산일대의 A-형 화강암의 암석학 및 지화학적 특성 (Petrology and Geochemical Characteristics of A-type Granite with Particular Reference to the Namsan Granite, Kyeongju)

  • 고정선;윤성효;이상원
    • 암석학회지
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    • 제5권2호
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    • pp.142-160
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    • 1996
  • 한반도 남동부 경주시 일원에 분포하는 남산화강암체에서 산출되는 A-형 화강암에 대한 암석학 및 지화학적 특성에 대하여 고찰하였다. 남산화강암체는 북부의 하이퍼솔브스 알칼리장석화강암과 남부의 서브솔브스 알칼리장석화강암 및 흑운모화강암으로 구성된다. 이들 중 하이퍼솔브스 화강암은 정동구조를 나타내며, 특징적으로 퍼다이트 조직을 나타내는 알칼리장석, 석영과 이들 사이의 간극을 충진하고 있는 철이 풍부한 흑운모와 알칼리각섬석 및 형석으로 구성되며, 석영과 알칼리장석은 종종 미문상조직을 나타낸다.남산화강암체의 하이퍼솔브스화강암 및 서브솔브스호강암은 암석기재 또는 지화학적 특징을 볼 때, 각 I-형의 불국사회강암류와 구분된다. 즉 높은 $SiO_2$, $Na_2O$, $Na_2O+K_2O$, Rb, Nb, Y, Zr, Ga, Th, Ce, U 함량을 나타내며, $TiO_2$, $Al_2O_3$, CaO, $P_2O_5$, MnO, MgO, Ba, Sr, Eu등은 낮은 함량을 나타낸다. 또한 높은 Ga/Al비를 나타내며, 희토류원소의 전체함량이 약 293-466 ppm 으로 분화가 상당히 많이 진행된 화강암의 조성을 보여주며, 희토류원소의 변화패톤도 특징적으로 심한 Eu'-'이상(Eu/$Eu^{\ast}$=0.03~0.05)을 나타내는 편평 백립암질 물질이, 맨틀로부터 새로운 열원의 공급에 의해, 고온에서 부분용융되어 만들어진 A-형 마그마로부터 유래하였을 가능성을 나타낸다.

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경주 동천동 일대에 분포하는 A-형 화강암의 지화학적 특성 (Geochemical Characteristics of A-type granite in Dongcheondong, Gyeongju)

  • 명보라;주지원;김정훈;장윤득
    • 암석학회지
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    • 제26권3호
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    • pp.271-280
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    • 2017
  • 동천동 화강암은 경주 동천동 일대에 분포하는 알칼리장석화강암이다. 이는 주로 우백질의 조립질화강암이며 알칼리장석, 석영, 흑운모, 각섬석이 관찰된다. 경하관찰 결과, 알칼리장석은 퍼싸이트로 나타나며, 석영은 주로 파동소광을 보인다. 사장석은 주로 알바이트 쌍정을 보이며, 흑운모와 각섬석은 간극상으로 산출된다. 동천동 화강암은 $(Na_2O+K_2O)/Al_2O_3$ 비가 높고 (MgO+CaO)/FeOT가 낮은 전형적인 A-형 화강암 영역에 도시되며 경상분지 I-형 화강암류에 비해 $SiO_2$, $Na_2O$, $K_2O$, Rb, Ga, Zr이 부화되어 있는 반면 $TiO_2$, $Al_2O_3$, CaO, MgO, Sr, Ba, Sc 등은 결여되어 있다. 또한, 연구지역 화강암은 I-형 화강암에 비해 희토류원소의 함량이 높고 큰 Eu(-) 이상을 보여준다. 이러한 지화학적 특성은 기존에 보고된 경상분지 I-형 화강암류와 뚜렷이 구분된다. 동천동 A-형 화강암은 현재까지 제시된 A-형 화강암의 기원 중 지각 내의 토날라이트질(Tonalite) 내지 화강섬록암의 I-형 화강암의 부분용융으로 만들어졌을 가능성이 높은 것으로 판단된다.

안양장석광상의 광화작용에 관한 연구 (A Study on Mineralization of Anyang Feldspar Ore Deposit)

  • 박부성;지정만
    • 자원환경지질
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    • 제27권1호
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    • pp.11-28
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    • 1994
  • The Anyang Feldspar Mine is located in Seoksu Dong, Anyang City, Kyeonggi Do, Korea and has a long exploitation record that is once produced high grade sodium feldspars, for glaze. Geologically, This area is mainly composed of Mesozoic Jurassic biotite granite (Anyang granite) which intruded Precambrian Kyeonggi Gneiss Complex outcroped near the mining area. The deposit is localized on the southwest hill side of Anyang granite batholith and is confined in hydrothemal alteration zone formed by sodium-rich alkali hydrothermal fluids along the fractures of leucocratic granite showing later differentiation facies in the biotite granite. The hydrothermal alteration is characterized by albitization, sericitization, and desilication. The microscopic observation and EPMA, XRD analysis of the feldspar ores show that major minerals are albite and quartz and accessory minerals are orthoclase and sericite, and they are rarely associated with perthite, fluorite, zircon, kaolinite, molybdenite, microcline and iron-oxide. In the REE pattern, the strong negative Eu anomalies of the feldspar ores indicate the influence of feldspar fractionation and show similiar pattern of the host leucocratic granite. The filling temperature of quartz crystals in ore zone ranges from $276^{\circ}C$ to $342^{\circ}C$, and it is inferred that the alteration occurred by the hypothermal solution.

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월출산지역에 분포하는 중생대 화강암류에 대한 암석화학적 연구 (Petrochemistry of Mesozoic Granites in Wolchulsan Area)

  • 김정빈;윤정한;김정택;박재봉;강상원;김동주
    • 자원환경지질
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    • 제27권4호
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    • pp.375-385
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    • 1994
  • The studied area is composed of Precambrian gneiss complex, middle Jurassic biotite granite, late Cretaceour sediments, volcanics and pink feldspar granite. Characteristic minerals of the biotite granite is plagioclase and hornblende whereas the pink feldspar granite is pink feldspar (perthite) and quartz. Plagioclase compositions of the biotite granite and the pink feldspar granite are oligoclase to calcic andesine ($An_{18-44}$) and sodic albite ($An_{0.5-5.0}$), respectively. In the variation diagrams of the Harker and normative Q-Or-Pl diagram, the biotite granite belongs to the category from granodiorite to granite, the pink feldspar granite from nomal to late granite. The values of D.I. L.I. and alkalinity of the pink feldspar granite are higher than those of the biotite granite. While CaO is enriched in the biotite granite, $K_2O$ is enriched in the pink feldspar granite. The ratio of $K_2O/Na_2O$ which indicates the relative ratio of alkali is 1.06 in the pink feldspar granite, and 0.86 in the biotite granite. In A-M-F and N-C-K diagrams both these granites are plotted in peraluminus granite ($Al_2O_3$>$Na_2O+K_2O+CaO$) region, assigned to calc alkaline series and alkaline series respectively. Put into the form of A-C-F diagram, the biotite granite falls under I-type, and the pink feldspar granite S-type. On the base of whole rock ratios of $Fe^{+3}/Fe^{+2}+Fe^{+3}$ and $^{87}Sr/^{86}Sr$ for the granites in studied area, the biotite granite indicates ilmenite series (0.26) and S-type and/or contaminated I-type ($0.72020{\pm}0.00050$), the pink feldspar granite magnetite series (0.44) and I-type ($0.70826{\pm}0.00020$).

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제주도에서 산출되는 화강암에 관한 연구 (A Petrological and Geochemical Study of Granites in the Cheju Island)

  • 안건상;이현구;임현철
    • 자원환경지질
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    • 제28권5호
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    • pp.513-518
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    • 1995
  • A granite drilling core (-1200 m) obtained near the Majang cave in east part of the Cheju island. The rock is pinksh in color and has miarolitic cavities. It is coarse-grained rock and consists of quartz, plagioclase, alkali feldspar, biotite and magnetite. The rock shows characteristically micrographic texture. The alkali feldspar is subhedral to anhedral and generally interstitial grains and fonns micrographic texture. K/Ar age of alkali feldspar in the core specimen is $58.14{\pm}1.4Ma $ (early Tertiary). The age, rock features and whole rock chemistry of the rock has strong resemblance to micrographic granites, so called "masanite", in southeastern part of the Korean peninsular. The granitic fragments from drilling core (- 920 m) obtained in Jungmun area in south part of the Cheju island consist of quartz, plagioclase, alkali feldspar and biotite. The fragments in the Jungmun area are similar to granitic xenolith near the Cheju city for the absence of micrographic texture and different alkali feldspar.

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감은사지 3층 석탑(동탑)과 나원리 5층 석탑의 암석과 풍화현상의 특징에 대한 연구 (Characteristics of the rocks and its weathering phenomena of the Gameunsa 3-story and Naweonri 5-story Pagodas located at the Kyeongju city, Korea)

  • 이상헌
    • 보존과학회지
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    • 제5권1호
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    • pp.20-40
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    • 1996
  • For obtaining the basic data for establishing plan on the conservation of the Gameunsa 3-story and Naweonri 5-story Pagodas located at the Kyeongju city, the characteristics of the rock and weathering phenomena have been investigated. The former consists of quartz-rlch granite containing small amount of biotite, and the latter of alkali granite with abundant perthite, These rock phases are nearly identical to the marginal phase of medium-grained hornblende-biotite granodiorite and alkali granite respectively, which are distributed around the Kyeongju city. The rock weathering may be governed mainly by chemical weathering of feldspar following physical segregation of quartz grains and pervasive moss. The feldspar easily dissolve In the solution with pH<7 to precipitate clay mineral such as a kaolinite as a secondary phase on the feldspar surface. However, the chemical weathering of feldspar may continue when the surface is washed by the rain according to removal of the reprecipitated phase. On forwarding, the weathering may be greatly Influenced by the acid rain. Exfoliation and weathering along igneous lineation resulting in exfoliating along the structural line are the characteristic weathering phenomena. Also the secondary small cracks are irregularly developed on the rocks due to different strain on places by the overall structural unbalance of the pagodas. Along these cracks, the rain water intrudes deeply into the rocks and weathering occurs intensively compared to other parts. Weathering may be artificially promoted by the grinding or sculpturing when the pagodas were made. Because it may influence on the physical properties of the rocks as well as destruct the surface of the feldspar crystals, the major constituents of the rocks, it results in providing the environment of easy chemical weathering along time. For conservation, the pagodas must be structurally balanced by compacting the soil basement and supplementing rocks on the destroyed part. On the exfoliated part it is better not to be artifically treated as using cementing material. But the cracks may be filled up by cementing material to avoid the intrusion of acidic water. To supplement the rocks on the destroyed part, it may be better to use similar rock phases from identical biotite granite and alkali granite masses around the Kyeongju city.

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금산지역에 분포하는 화강암류의 암석지구화학 (Petrogeochemistry of Granitic Rocks Distributed in the Geumsan District, Korea)

  • 진호일;민경원;전효택;박영석
    • 자원환경지질
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    • 제28권2호
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    • pp.123-137
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    • 1995
  • The Mesozoic Geumsan granitic rocks of various composition are distributed in the Geumsan district, the central part of the Ogcheon Fold Belt. About 40 ore deposits of $CaF_2{\pm}Au{\pm}Ag{\pm}Cu{\pm}Pb{\pm}Zn$ are widely distributed in this district and are believed to be genetically related to the granitic rocks. Based on their petrography and geochemistry, the granitic rocks in this district can be classified into two groups ; the Group I( equigranular leucocratic granite, porphyritic biotite granite, porphyritic pink-feldspar granite, seriate leucocratic granite) and the Group II(seriate pinkfeldspar granite, equigranular alkali-feldspar granite, equigranular pink-feldspar granite, miarolitic pink-feldspar granite, equigranular biotite granite). Interpreted from their isotopic dating data and geochemical characteristics, the Group I and the Group II are inferred to be emplaced during the Jurassic(~184Ma), and the Cretaceous to the early Tertiary period(~59Ma), respectively. Both Group I and Group II generally belong to magnetite-series granitoids. The Cretaceous granitic rocks of Group II are more highly evolved than those of the Jurassic Group I. The Rb-Sr variation diagram suggests that the granitic rocks of the Jurassic Group I and of the Cretaceous Group II be evolved mainly during the processes of fractional crystallization and partial melting, respectively.

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경주-울산일원에 대한 지역지질 특성연구 : 울산단층주변 화강암류의 잔류자기와 대자율 (Geological Characteristics of Kyongju-Ulsan Area : Palaeomagnetism and Magnetic Susceptibility of the Granitic Rocks in the Ulsan Fault Area)

  • 김인수;손문;정현정;이준동;김정진;백인성
    • 자원환경지질
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    • 제31권1호
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    • pp.31-43
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    • 1998
  • A total of 469 granitic samples were collected from 44 sites in the Ulsan fault area, southeast Korea. According to the previous petrographic studies, the granitic rocks have been divided into four groups (Hornblende biotite granodiorite, Hornblende granite, Biotite granite and Alkali-feldspar granite). NRM intensities, values of low field magnetic susceptibility, and magnetic behaviors during stepwise demagnetization experiments suggest rather a three-fold classification: In this scheme, Hornblende granite and Biotite granite are grouped together, as they did not show any significant differences in magnetic characteristics. Based on the Ishihara (1979)'s criterion, Alkali-feldspar granite is classified as ilmenite-series granite, whereas others are classified as magnetite-series granite. In the eastern part of the study area including the Tertiary basin area, declinations of site-mean characteristic remanent magnetizations (ChRMs) show clockwise deflection of more than 30 from the reference direction of east Asia. Both along and in the adjacent region of the Ulsan fault-line, however, no deflection of remanent direction was observed. A boundary line between the deflected and undeflected site-mean ChRMs is defined in this study, which runs roughly parallel to the Ulsan fault-line at the distance of about 6km eastward from the fault-line. We suggest that this newly found boundary line, which we call Yonil tectonic line, released dextral simple shear stress acted in the southeastern part of the Korean peninsula during the opening stage of the East Sea in the Early Cenozoic.

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