• 제목/요약/키워드: biotite granite

검색결과 322건 처리시간 0.025초

월출산 지역에 분포하는 중생대 화강암류에 대한 미량원소와 회토류원소의 특성 (Trace Elements and REE Characteristics of the Mesozoic Granites in the Wolchul Mt. Area)

  • 이창신;김정빈
    • 자원환경지질
    • /
    • 제29권3호
    • /
    • pp.293-304
    • /
    • 1996
  • The Wolchul Mt. area is composed of a biotite granite and a pink feldspar granite. These granites are distinctly different in terms of their field occurrence, mineralogy, trace element and REE composition, as well as their isotope ages. The biotite granite has higher ferromagnesian elements and lower lithophile trace element abundances than the pink feldspar granite. The biotite granite has high Sr and Ba while the pink feldspar granite has high Rb. On the Rb-Sr-Ba diagram the biotite granite plots as a granodiorite while the pink feldspar granite belongs to a strongly differentiated granite. The ${\Sigma}$ LREE/ ${\Sigma}$ REE for the biotite granite is 0.95 and for the pink feldspar granite it is 0.88. The ratio shows a steep decrese in LREE while HREE is essentially constant. Based on the Eu/Sm, $[La/Lu]_{cN}$ and low Eu(-), the biotite granite has quartz diorite to granodiorite composition while the pink feldspar granite, with a relatively high Eu(-) anomaly, falls into the monzo- to syenogranite classification. The silica vs. trace element diagrams for the two granites indicate that the biotite granite could have formed near to a continental margin or volcanic island setting environment while the pink feldspar granite formed within a continental plate or as result of plate collision. The biotite granite has a U-Pb zircon age of 175 Ma, i.e. Middle Jurassic. The pink feldspar granite is younger, it has a K-Ar orthoclase age $93.6{\pm}1.5$ Ma which is Late Cretaceous age.

  • PDF

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

  • 김정빈;윤정한;김정택;박재봉;강상원;김동주
    • 자원환경지질
    • /
    • 제27권4호
    • /
    • pp.375-385
    • /
    • 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 ($0.70826{\pm}0.00020$).

  • PDF

담양(潭陽)-진안(鎭安)사이에 분포(分布)하는 엽리상화강암류(葉理狀花崗岩類)에 대(對)한 지질시대(地質時代)와 성인(成因)에 관(關)한 연구(硏究) (Geochronology and Petrochemistry of Foliated Granites between Damyang and Jinan)

  • 김정빈;김용준
    • 자원환경지질
    • /
    • 제23권2호
    • /
    • pp.233-244
    • /
    • 1990
  • Plutons of Damyang-Jinan area consist of gray feldspar granite gneiss, biotite granite gneiss, foliated granites, Namweon granites, gabbro, biotite granite and Ogangri granite in term of mineralogical, texture and field evidence. From Isotope data of study area, chronological order of the Plutons are the Pre-cambrian gray feldspar granite gneiss(Ar39-Ar40, hornblende, $1998.4{\pm}8.3Ma$), middle to late Triassic Daegang foliated granite(Rb/Sr, whole rock, $288{\pm}4Ma$), foliated hornblende biotite granodiorite(K/Ar, hornblende, $198.7{\pm}9.9Ma$), Sunchang foliated granodiorite(Rb/Sr, whole rock, $222{\pm}4Ma$), foliated two mica granite, Samori foliated granite and Namweon granite(Rb/Sr, whole rock, $211{\pm}3Ma$: K/Ar, hornblende, $203{\pm}10.2Ma$), middle Jurassic Gabbro(K/Ar, hornblende, $180.7{\pm}9MA$) and biotite granite, and Cretaceous Ogangri granite. According to variations diagrams of $Al_2O_3$ versus normative PI(100 An)/(Ab+An), Daegang foliated granite is plotted on tholeiitic series, and other foliated granites on calc alkaline rock series which are consider to be formed by magmatism at continental margin and island arc region. And alkalinity versus $SiO_2$ shows that Daegang folited granite and Samori foliated granite are correspond to alkaline region, foliated hornblende biotite granodiorite and Sunchang foliated granodiorite to calc alkaline region, and foliated two mica granite to both regions. According to ACF diagrams, Daegang and Samori foliated granites are plotted on S-type. Foliated hornblende biotite granodiorite and Sunchang foliated granodiorite on I-type, and foliated two mica granite on both type. Foliated granites are a series of differentiated products from cogenetic magma, and effected under ductile sheared zone. Characteristic foliation of foliated granites are considered to be generated by dextral strike slip faulting and ductile shearing.

  • PDF

Contrasting TiO$_2$/MgO ratios in the Namwon granitic complex

  • Kwon, S.T.;Hong, S.S.
    • 암석학회지
    • /
    • 제2권1호
    • /
    • pp.41-52
    • /
    • 1993
  • We report adventages of employing MgO as a differentiation index for the Namwon granitic complex. It is shown to be much more sensitive than the usual Harker index. The complex can be divided into two groups on the basis of $TiO_2$/MgO ratio. The low $TiO_2$/MgO group consists of hornblende biotite tonalite-granodiorite, porphyritic hornblende biotite granodiorite (PHBGd) and part of biotite granite (loBG). PHBGd shows its own distinct variation in the low group. This group is characterized in most cases by the presence of hornblende, even if it occurs as a trace amount. The high $TiO_2$/MgO group consists of part of biotite granite (hiBG) and two mica granite. The major element differences between rock types are also apparent in biotite chemistry. These chemical data indicate that at least two distinct origins of magma are rquired for the complex. Two kinds of biotite granite revealed in this study show distinct geographic distribution, suggesting that a new geologic map should be made.

  • PDF

유성(儒城) 서북부(西北部) 우산봉(雨傘峰) 일대(一帶)에 분포(分布)하는 화강암(花崗巖) 복합체(複合體)의 암석학적(岩石學的) 연구(硏究) (Petrology of Granitic Complex Distributed in the Woosanbong area, northwestern part of Yuseong)

  • 김승호;이대성
    • 자원환경지질
    • /
    • 제14권3호
    • /
    • pp.123-142
    • /
    • 1981
  • Granitic complex in the Woosanbong area is composed of schistose granite, two-mica granite, biotite granite, porphyritic granite and pink feldspar granite in order of intrusion. In their boundary aspects, the gradational change between porphyritic granite and pink feldspar granite is observed in field relations. All the granites of the complex are classified to quartz monzonite by the modal compositions following Bateman's classification (1961) with the exception of pink feldspar granite which belongs to granite according to the petrographical classification. The first three granites are characterized by highly development of vein and/or lens-like pegmatites in their bodies, and two others contain green hornblende uniquely. These leucocratic two-mica granite shows an unusual character in ratio of muscovite to biotite 1: 0.7 to 1:13, and contains dominantly microcline. The content of muscovite varies in places in the field. Under the polarizing microscope it is revealed that the muscovite flakes occur as the products altered from biotite partly or completely, and it usually associates with chlorite flakes nearby. These features, therefore, suggests that biotite probably has been altered to muscovite and chlorite by hydration during deuteric processes. At the same stage, sericitization of plagioclase by the hydrolytic decomposition, and transformation of orthoclase to microcline may be taken place. Accordingly, it is obviously permissible to consider the two-mica granite as a kind of 'apo-granite' by deuteric alterations during the consolidation of magma.

  • PDF

팔공산 화강암내 흑운모의 풍화과정에서 생성되는 고령토광물들의 광물학적 특성 및 생성 환경 (Mineralogical Characteristics and Formation Environment of Kaolin Minerals in the Weathering of Granitoids: Weathering of Biotite in Palgongsan Granite)

  • 정기영
    • 한국광물학회지
    • /
    • 제11권2호
    • /
    • pp.97-105
    • /
    • 1998
  • Weathering of biotite in Palgonsan granite was studied by using X-ray diffraction, optical microscopy, scanning electron microscopy, and electron probe micro analysis. Biotite altered to biotite/vermiculite regular mixed layer mineral (B/V) in the early stage of weathering. Although partially replaced by kaolinite with the progress of weathering. B/V is the major weathering product of biotite throughout the profile. During the formation of B/V, Mg, Fe and K are removed from a biotite layer to form a vermiculite layer by about 28%, 44% and 88%, respectively, whereas the Ti content is not changed. Considerable volume increase after the kaolinitization of B/V suggests that Al and Si are largely introduced from the external weathering solution. The silicate lattice templet of a weathering biotite facilitated the nucleation and growth of kaolinite. In the Palgongsan granite weathering profile, plagioclase weathered mostly into halloysite whereas biotite greatly contributes to the kaolinite crystallization though its small content in fresh rock.

  • PDF

강화도 선두리 지역 흑운모 편마암과 화강암에 대한 풍화 특성 (Characterization of Weathering Process in Biotite Gneiss and Granite, Ganghwa Island)

  • 장윤득;김정진
    • 한국광물학회지
    • /
    • 제19권1호통권47호
    • /
    • pp.39-48
    • /
    • 2006
  • 흑운모 편마암과 화강암에 대한 풍화정도에 따른 광물조성과 화학성분 변화를 X-선회절분석, 전암분석을 통하여 연구하였다. 흑운모 편마암의 주 구성광물은 흑운모, 석영, 사장석이며 화강암의 주 구성광물은 석영, 사장석, 백운모과 약간의 정장석을 포함하고 있다. 풍화가 진행될수록 흑운모 편마암은 버미큘라이트와 할로이사이트가 증가하고 화강암은 일라이트와 캐올리나이트가 증가한다. 풍화가 진행될수록 대체로 $Na_{2}O$, CaO, $K_{2}O$가 감소하고 $Al{2}O_{3}$의 함량이 증가하지만, $Fe_{2}O_{3}$의 값은 흑운모 편마암과 화강암에서 큰 차이를 나타낸다.

선캠브리아 홍제사 화강암의 진화과정(한국 북동부지역의 원생대의 화성활동과 변성작용)

  • 김정민;조문섭
    • 암석학회지
    • /
    • 제3권1호
    • /
    • pp.76-93
    • /
    • 1994
  • 선캠브리아 홍제사 화강암은 중앙부의 흑운모화강암으로부터 주변부로 갈수록 흑운모-백운모 화강암으로 변한다. 흑운모의 X_{Fe}$ (=Fe/(Fe+Mg)) 값과 알루미늄 포화도는 광물조합에 따라 체계적으로 변화하고 전암의 화학조성과 정의 상관관계를 보인다. 이러한 변화는 화강암체내의 누대구조와 함께 홍제사 화강암질 마그마의 분별정출작용에 기인한다. 미량원소 자료 또한 흑운모-백운모 화강암이 흑운모 화강암에 비해 더 진화하였음을 지지한다. 홍제사 화강암의 진화는 AFM 액상도 (A=$Al_2O_3-CaO-Na_2O-K_2O$;F=FeO+MnO; M=MgO)를 사용하여 잘 설명된다. 흑운모만 정출하는 초기 마그마단계에서 화강암질 마그마의 $X_{Fe}$ 값과 알루미늄 포화도는 동시에 증가한다. 이후에 백운모가 흑운모-백운모 공융선을 따라 흑운모와 함께 정출하며, 그 결과 흑운모-백운모 화강암이 산출된다. 국부적으로 Mn과 B이 증가함에 따라 석류석과 전기석이 정출된다. 화강암체 주변부에서 흑운모-백운모 화강암이 산출하는 특징적 누대구조는 홍제사 화강암 관입시의 수동적 스토핑(passive stoping)에 의해 설명될 수 있다. 주성분 원소를 사용한 분별그림은 홍제사 화강암이 대륙 충돌 환경하에서 관입하였음을 지시한다.

  • PDF

충남 금산군 서북부에 분포하는 화성암류에 대한 암석화학적 연구 (Petrochemical Study of Igneous Rocks Occurring in the Northwestern Part of Keumsan Area, Chungnam-do)

  • 김원사;민경남
    • 한국광물학회지
    • /
    • 제19권2호
    • /
    • pp.99-109
    • /
    • 2006
  • 충남 금산 서북부 지역에 분포하는 화성암류에 대해 암석화학적 연구를 실시하였다. 이 지역에는 선캠브리아기의 흑운모편마암과 시대미상의 옥천층군, 그리고 이들을 관입 또는 분출한 중생대 쥬라기의 흑운모화강암 및 백악기의 화산암, 홍색장석화강암, 석영반암 등이 존재한다. 흑운모화강암은 연변부로 갈수록 점이적으로 우백질 암상을 나타내는데, 중심부로부터 연변부로 갈수록 $SiO_2,\;Na_2O,\;K_2O$의 성분은 증가하는데 비해 $Fe_2O_3,\;CaO,\;P_2O_5,\;MgO,\;TiO_2$ 성분은 감소하는 등 역누대구조를 나타낸다. 흑운모화강암과 석영반암은 비알칼리계열에 속하며, 우백질 흑운모화강암은 알칼리계열에 속한다. 또한 이들 화성암은 모두 I-type화성암에 속하며, 동시에 칼크-알칼리계열의 결정분화작용에 부합하는 양상을 나타낸다. 쥬라기의 흑운모화강암은 Eu의 부현상(negative anomaly)이 미약하여 마그마 분화초기의 특징을 나타내는 반면, 백악기의 석영반암은 부현상이 뚜렷하여 진화가 상당히 이루어졌음을 시사한다.

담양(潭陽)-진안(鎭安)사이에 분포(分布)하는 엽리상화강암류(葉理狀花崗岩類)에 대(對)한 암석화학적(岩石化學的) 연구(硏究) (Geochemical Study on Foliated Granites in the Damyang-Jinan area)

  • 김정빈;김용준;홍세선
    • 자원환경지질
    • /
    • 제23권1호
    • /
    • pp.87-104
    • /
    • 1990
  • Foliated granites between Damyang and Jinan are subdivided into Daegang foliated granite, Foliated hornblende biotite granodiorite, Sunchang foliated granodiorite, Foliated two mica granite and Samori foliated granite by mineral and texture. From EPMA data of the foliated granites following results are achieved. Composition of plagioclase are correspond to andesine, oligoclase and albite in Foliated hornblende biotite granodiorite, Sunchang foliated granodiorite and other foliated granites, respectively. And amphiboles are calcic hornblende in Foliated hornblende biotite granodiorite, and riebeckite in Daegang foliated granite. In differentiation index(D. I.) and Larsen index(L. I.), Daegang foliated granite, Foliated two mica granite and Samori foliated granite which belong to granite are 83.12-95.54 and 25.86-29.05 and Foliated hornblende biotite granodiorite and Sunchang foliated granodiorite of diorite to granodiorite are 54.99-78.54(D. I.) and 6.48-21.01(L. I.). Harker and AMF diagrams plotted from foliated granites show that the granites are product of calc alkali rock series orignated from co-magma. Characteristic foliation of foliated granites fromed by ductile deformation at deep zone of dextral strike slip fault. Foliated granites are considered as a series of differentiated product of Triassic Igneous activity of Songrim disturbance. According to REE, (La/Lu) and Eu/Sm, Foliated hornblende biotite granodiorite and Sunchang foliated granodiorite are correspond to granodiorite, and other foliated granites are monzo-and syeno-granite. Foliated granites having 0.20-0.01 of Em/Sm ratio are plutons emplaced by the tectonic setting in continents and continental margin.

  • PDF