• 제목/요약/키워드: Calc-alkali series

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경남(慶南) 함양지역(咸陽地域)에 분포(分布)하는 화성암류(化成岩類)에 대(對)한 암석화학적(巖石化學的) 연구(硏究) (Petrochemical Study on Igneous Rocks in the Hamyang area, Kyongnam, Korea)

  • 박재봉;김용준;김정빈
    • 자원환경지질
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    • 제23권1호
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    • pp.105-123
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    • 1990
  • Igneolls rocks of the Hamyang area consist of Hamyang foliated granites and hornblende diorite. Hamyang foliated granites are classified into four rock types in terms of mineral composition and texture. The four rock types are foliated hornblende biotite granodiorite, foliated porphrytic granodiorite, foliated fine biotite granodiorite and foliated leuco granite. Petrochemical data of these rocks suggest that Hamyang foliated granites is calc-alkali rock series of differentiated products of cogenetic magma by fractional crystallization. Igneous rocks of studied area correspond to I-type, peraluminous and calc alkali rock series. Rb-Sr age and $Sr^{87}/Sr^{86}$ initial ratio for foliated prophrytic granodiorite is $200{\pm}Ma$and $0.711{\pm}0.0037$, respectively. K-Ar(hornblende) age of hornblende diorite is $179{\pm}9Ma$. These data come to an coincidence with Igneous activity of South Korea which were proposed by O.J. Kim(1975), that is, they correspond to Hamyang foliated granites of products of Songrim Disturbance, and to hornblende diorite of Daebo Orogeny.

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광주화강암체에 대한 암석화학적 연구 (Petrochemical Study On the Kwangju Granite Body)

  • 김용준;오민수;박재봉
    • 자원환경지질
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    • 제26권1호
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    • pp.83-96
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    • 1993
  • Kwangju granite body located in vicinity of Kwangju city consist of three rock bodies-Kwangju rock body, Jangsung rock body and Youngkwang rock body. Petrochemistry of Kwangju granite is as follows: Kwangju granite body is igneous complex which compose of a series of differential products of a magma. Kwangju granites are divided into four rock facies based on the geologic age, mineralogical and chemical constituents and texture: Triassic hornblende-biotite granodiorite and biotite granite, and Jurassic porphyritic granite and two mica granite. Harker and other variation diagrams of Kwangju granites plot on trend of calc-alkali rock series and range of peraluminous granite. Parental magma type of Kwangju granites correspond to I-type, Syn-Collision type in compressive stress field by collision movement between both rock block. In chondrite normalized REE patterns of Kwangju grnites, LREE enriched than HREE in REE amount and have more steep negative slope with slightly (-) Eu anormaly.

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승주-순천 지역에 분포하는 정편마암류의 지구화학적 특성 (Geochemistry of Orthogneisses in the Seungju-Suncheon Area, Korea)

  • 안건상;오창환;박배영
    • 한국지구과학회지
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    • 제22권3호
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    • pp.163-178
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    • 2001
  • 소백산육괴의 서남부에 위치한 승주-순천 지역에는 화강편마암, 반상변정질편마암, 우백질편마암이 우세하게 분포한다. 이들 정편마암은 연구지역에서 순차적인 관입관계를 보여준다. 이 연구는 이 세 정편마암들의 원암인 화강암질암의 지구화학적특징과 지구조적인 환경을 파악하고자 하였다. 실리카-알칼리 IUGS 분류도에 의하면 반상변정질 편마암은 섬록암에서 화강섬록암 영역에 속하고, 화강편마암과 우백질편마암은 화강섬록암과 화강암 영역에 걸쳐 점시된다. 주성분원소의 여러 특성은 본 편마암류의 원암은 비알칼리암이며, 동시충돌형 구조장에서 형성된 S형의 마그마임을 지시한다. 고장력원소를 이용한 구조장 판별도에서는 본 편마암류의 근원암이 칼크알칼리암계열의 화강암류이며, 동시충돌형 구조장에서 형성되었음을 지시한다.

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경산칼데라 동부지역에 분포하는 백악기 화산암류의 암석학적 특징 (Petrology of the Cretaceous Volcanic Rocks in Eastern Part of the Kyeongsan Caldera)

  • 박성옥;장윤득;황상구;김정진
    • 암석학회지
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    • 제15권2호
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    • pp.90-105
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    • 2006
  • 연구지역의 백악기 화산암류는 경산 칼데라의 동부지역에 분포하고 있다. 연구지역의 화산암류는 층서적인 하위에서 상부로 안산암 I, 안산암질 응회암, 안산암 II, 안산암질 각력 응회암 그리고 안산암질 반암으로 구성된다. 안산암 I은 암색, 조직, 반정광물, 암석화학에서 안산암 II와 구분된다. 안산암 I은 치밀하고 암녹색을 띠나 안산암 II는 적색이며 반상조직을 보인다. 안산암 I은 $SiO_2$$K_2O$의 함량이 낮으며 사장석과 휘석반정 외에 감람석 반정을 가지는 것이 특징이며, 안산암 II는 $SiO_2$$K_2O$의 함량은 높은 반면에 CaO, MgO, MnO, $TiO_2,\;Fe_2O_3$, 및 $P_2O_5$의 함량은 낮다. 주원소를 이용하여 분석한 연구지역 화산암의 마그마 계열은 칼크알칼리에서 알칼리계열에 이르기까지 분산된 양상을 보여준다. 비호정 원소들은 일관되게 칼크알칼리 계열을 지시하고 있으므로 알칼리 원소의 부화는 2차적 변질에 의한 결과임을 시사하고 있다. 미량원소 판별도에 의하면 연구지역 화산암의 조구조적인 위치는 대륙연변부의 칼크알칼리 계열의 화산호인 것으로 판단된다.

상주(尙州) 남서부(南西部)에 분포(分布)하는 화성암류(火成岩類)에 대(對)한 암석지화학적(岩石地化學的) 연구(硏究) (Petrogeochemical Study on the Igneous Rocks of Southwestern Part of the Sangju Area)

  • 최복렬;김용준
    • 자원환경지질
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    • 제23권3호
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    • pp.329-342
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    • 1990
  • The purpose of this study is to clarify the nature of the differentiation and petrogenesis of igneous rocks in comparison with experimental results based on petrological and geochemical criteria. Study area is composed of the Precambrian granitic gneiss complex, Triassic meladiorite and biotite granodiorite, Jurassic biotite granite, and Cretaceous quartz porphyry. According to the data of EPMA, the clinopyroxene and orthopyroxene of meladiorite come under salite and hypersthene, respectively. Such results suggests that meladiorite is incipient differentiated products of basic magma under slow cooling condition. The petrochemical data of variation diagram of major element oxides vs. silica and of trace element oxide vs. silica, AMF triangle diagram and trace elements suggests that igneous rocks of study area are plutonic rocks belong to calc alkali rock series of the source of comagma intruded-emplaced in the order of meladiorite, biotite granodiorite and biotite granite by fractional crystallization of magma.

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철원분지 백악기 화성암류의 암석조구조적 위치와 암석성인 (Petrotectonic Setting and Petrogenesis of Cretaceous Igneous Rocks in the Cheolwon Basin, Korea)

  • 황상구;김세현;황재하;기원서
    • 암석학회지
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    • 제19권1호
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    • pp.67-87
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    • 2010
  • 철원분지 화산암류와 관입암류에 대해 암석기재와 화학분석을 하여 층서에 따른 조성변화, 이들의 조구적 위치와 암석성인을 고찰하였다. 화산암류는 궁평층 현무암, 금학산안산암, 유문암질 암층(동막골응회암, 유문암, 지장봉응회암) 순으로 놓이고, 관입암류는 보장산안산암, 화강반암과 산성암맥으로 구성된다. 이화산암류와 관입암류는 칼크알칼리 계열에 속하는 medium-K 내지 high-K 의 현무암, 안산암 및 유문암 계열을 나타낸다. 이들은 주원소와 미량원소가 하커도에서 $SiO_2$의 증가에 따라 대개 직선적인 조성변화를 보여준다. 거미도 패턴과 REE 패턴에서 불호정성원소와 희토류원소가 MORB보다 부화되며 후기층으로 가면서 LREE/HREE의 기울기가 커지고 Eu 부이상이 커지는 화산호의 화학적 특징을 보여준다. 조구조 판별도에서도 이들은 파괴성 판연변부의 조산대 즉 화산호 중에서 대륙호에 속한다. 이들에 의하면 최하부 현무암은 해양판이 대륙지각 아래의 맨틀 속으로 침강하는 섭입대에서 상부 맨틀이 함수유체를 공급받음으로써 부분용융되어 생성된 현무암질 칼크알칼리 마그마로부터 유래되었을 것으로 생각된다. 상부의 안산암과 유문암은 현무암질 마그마로부터 분별결정작용과 약간의 지각물질 혼염에 의해 안산암질 마그마를 거쳐 유문암질 마그마로 진화되었음을 암시한다. 각 화산암은 분화된 마그마가 밀도에 따라 천부 레벨로 순차적으로 상승한 챔버로부터 분출되었을 것이다.

호남 전단대내에 분포하는 엽리상화강암류의 지질시대와 생성과정에 관한 연구 (The Study on Geochronology and Petrogenesis of Foliated Granites in the Honam Shear Zone, South Korea)

  • 김용준;박영석;강상원
    • 자원환경지질
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    • 제27권3호
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    • pp.247-261
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    • 1994
  • Honam Shear Zone is a mylonite zone approximately parallel to the NE-SW trend located southern part of Korea peninsula. Geologic ages and petrogenesis of foliated granites in this zone are as follows: Igneous rocks of this zone are composed of granite gneiss, Paleozoic granites, Songrim granites, Jurassic granites and Cretaceous granites. Foliated granites show deformed phase of Paleozoic and Songrim granites during Daebo Orogeny. And isotopic ages obtained from foliated granites are early Permian to late Triassic period (276~200 Ma). Most of foliated granite masses are igneous complex consisting of a series of differential product of cogenetic magma. The individual rock mass of foliated granites plotted on Harker diagram shows mostly similar trend of calc-alkali series. REE diagram indicates that LREE amount of foliated granites are more enriched than HREE and negative Eu anomalies of them are weaker than those of the other granites. From these data, we suggest the rocks are generated from continental margin under syntectonic environment. Original magma type of foliated granites correspond to I-type, syn-collision type and Hercyano type. In compressive stress field between Ogcheon folded belt and Youngnam massif, foliated granites had formed due to mylonitic deformation. Those facts indicate that magma of foliated granites would had been generated by melting in lower crust or contamination in upper mantle.

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함백분지(咸白盆地) 남부지역(南部地域)에 분포(分布)하는 백악기(白堊紀) 화강암질암류(花崗岩質岩流)의 암석화학적(岩石化學的) 연구(硏究) (Petrochemical Study on the Cretaceous Granitic Rocks in the Southern Area of Hambaeg Basin)

  • 윤현수
    • 자원환경지질
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    • 제19권spc호
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    • pp.175-191
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    • 1986
  • The Geodo granodiorite intruded into the Joseon Supergroup is fine-grained at the marginal part, and medium-grained and more leucocratic at the central part. The Quartz monzonite porphyry intruded inte Precambrian granite and Geodo granodiorite has abundant plagioclase phenocryst. The Imog granite intruded into the Yulri Group and the Joseon Supergroup is mediumgrained biotite granite with partly pinkish feldspar phenocryst. The K/Ar ages obtained from the biotite of the Geodo granodiorite and Imog granite are Early ($111{\pm}1{\sim}107{\pm}1$ Ma) and Late ($93{\pm}1{\sim}92{\pm}1$ Ma) Cretaceous, respectively. The K/Ar sericite age of the quartz-sericite zone of the lower Jangsan quartzite occuring in the western area gave much younger age (about 170 Ma) than that of the Jangsan quartzite, that might be reset due to the regional metamorphism of the Daebo orogeny. The granitic rocks of the area are felsic to mafic, metaluminous to peraluminous, calc-alkalic (alkali-lime index${\fallingdotseq}$ 57) and I-type (magnetite-series) based on the chemical data_ And they appear to have been fractionated at the order of Geodo granodiorite, Quartz monzonite porphyry and Imog granite. In terms of mineralogy, geochemistry and K/Ar biotite age, a rock suite of monzodiorite, quartz monzodiorite and quartz monzonite-granodiorite in the Geodo stock was fractionally differentiated from a magmatic body from its margin to inward.

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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
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    • 제23권1호
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    • pp.87-104
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    • 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.

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제천(提川) 화강암체(花崗岩體)에 대(對)한 암석학적(岩石學的) 연구(硏究) (Petrological Study on the Jecheon granite mass)

  • 김용준
    • 자원환경지질
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    • 제12권3호
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    • pp.115-126
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    • 1979
  • The Jecheon granite mass has turtle-shape exposure of about $190km^2$ at vicinity of Jecheon-eup, and is elongated in the direction of NEE-SWW. It discordantly intrudes the Bakdalryong metamorphic rocks and the great limestone series(Samtaesan and Hungwolri formation) which belong to the pre-Cambrian and Ordovician, respectively. The mass is composed of five facies of different grain size; texture and charecteristic minerals. The five facies are (1) coarse grained biotite granodiorite, (2) fine grained hornblende biotite granodiorite, (3) coarse grained pink feldspar granodiorite (4) leucogranite, and (5) porphyritic biotite granite. The mutual relationship between each facies is intrusion in (1)-(2) and (2)-(3), but unknown in (3)-(4) and (4)-(5). 22 modal analyses and and 10 chemical analyses on more than a hundred of representative samples taken from the mass are listed as tables. Triangular plot of modal and normative Q-Kf-Pl of this mass show a continuous differentiation products from certain common magma by change of chemical composition and anorthite contents in plagioclase. The metamorphic facies of contact aureole in surrounding rocks adjacent to the granite body are corresponded to hornblende hornfels facies with mineral assemblages of wollastonite-diopside-calcite in calcareous rocks, and of quartz-biotite-muscovite-cordierite in argillaceous rocks. Variation of silica versus oxides of major elements shows that the mass is similar to the trend of Daly's average basalt-andesite-dacite-rhyolite which shows the trend of the fractional crystallization of magma, and is equivalent to the calc-alkali rock series by Peacock. AMF diagram shows that Jecheon granite mass is equivalent to normal diffentiation products such as skaergaard intrusion. The above evidences suggest that the Jecohon granite mass is normal differentiation products formed by fractional crystallization under relatively slow cooling condition.

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