• 제목/요약/키워드: Sunchang granite

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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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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
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    • 제23권2호
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    • pp.233-244
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    • 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.

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남원화강암과 순창화강암의 SHRIMP U-Pb 연령 (SHRIMP U-Pb Ages of the Namwon and Sunchang Granites)

  • 조희제;박계헌;이기욱
    • 암석학회지
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    • 제22권2호
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    • pp.197-208
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    • 2013
  • 남원화강암과 순창화강암은 한반도의 남서부에서 각각 영남육괴와 옥천변성대를 관입하고 있는 인접암체이다. 이 연구에서는 가장 신뢰도가 높은 연령 분석방법으로 평가되는 SHRIMP를 이용하여 남원화강암과 순창화강암체의 저어콘 U-Pb 연대측정을 실시하였다. 그 결과 남원화강암체로부터 $185.8{\pm}0.9(2{\sigma})$ Ma의 정치연령을 구하였다. 한편 순창화강암체의 북부지역으로부터는 $175.0{\pm}2.0(2{\sigma})$ Ma, 그리고 중부지역으로부터는 $179.8{\pm}0.9(2{\sigma})$ Ma의 연령을 구하였으며, 순창화강암체의 분석자료 전체로부터는 $177.4{\pm}1.3(2{\sigma})$ Ma의 평균연령이 계산되었다. 이러한 결과는 순창화강암에 현저한 변형을 초래한 호남전단대의 활동이 약 175Ma 이후에도 일어났음을 확인해준다.

한반도 남서부의 순창전단대 내에 분포하는 변성퇴적암류의 다변성 작용 (Polymetamorphism of Metapelites in the Sunchang Shear Zone, Southwestern part of the Korea peninsula)

  • 안건상
    • 자원환경지질
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    • 제32권5호
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    • pp.519-535
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    • 1999
  • Precambrian metasedimetay rocks in the Sunchang Shear Zone (so-called Seologri and Yongamsan Formation) consist of black slate, phylite, mica schistm quartzite and rarely calc schist. The metamorphic rocks in the area have undergone at least three stages of metamorphism, which are two prograde (M1 and M2) and one contact metamorphism (M3). The metamorphism which made the most prevailing mineral assemblages in the area, is M2 stage metamorphism. The metamorphic grade of M2 methamorphism in metapelites increases from the Chlorite zone through Biotituzone, Garnet zone to Staurolite zone. The M1 stage metamorphism is recognized by kyanite and sillimanite pressure type regional metamorphism. The M3 stage methamorphism is represented in the contact boundary, which area is the chlorite zone and biotite zone near the Sunchang foliated granite and the namwon granite. The M3 stage methamorphism is characterized by andalusite bearing mineral assemblages. The peak temperature condition of M2 metamorphism estimated from coexising garnet and biotite (Kretz, 1990) is 518~598$^{\circ}C$.

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전주 및 순창지역에 분포하는 엽리상화강암류의 성인에 대한 연구(I) - 암석지화학적 특성을 중심으로 - (Petrogenetic Study on the Foliated Granitoids in the Chonju and the Sunchang Area(I) -In the Light of Petrochemical Properties-)

  • 나춘기;이인성;정재일
    • 한국지구과학회지
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    • 제18권6호
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    • pp.480-492
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    • 1997
  • 옥천대의 남서대와 영남육괴의 북서 경계부에 대략 평행한 2열로 분포되어 있는 전주 및 순창 엽리상화강암류의 근원마그마의 분화과정 및 성인을 규명하기 위하여 양 암체의 암석학적 및 지화학적 특성을 비교, 고찰하였다. 주성분 원소의 분석결과는 전주 및 순창엽리상화강암이 암석화학적으로 퍼알루미나 또는 칼크알칼리 계열에 속함을 보였으며, 기존의 화강암류 성인에 대한 I/S형 및 자철석/티탄철석 계열의 분류기준을 적용할 경우 비록 원소화학적으로는 I-형과 자철석 계열이 우세한 경향을 보이지만 일관성있게 분류되지 않는 특성을 보였다. 주성부 원소의 분석결과에 의한 CIPW norm 조성에서, 전주암체는 분화가 진행됨에 따라 화강섬록암에서 화강암으로 진화되는 반면, 순창암체는 화강섬록암에서 석영몬조섬록암으로 진화되는 특성을 보였다. 이는 양 암체가 지각물질과의 동화 혹은 결정분별과정 등을 포함하는 마그마 진화의 후기 과정에서 서로 상이했음을 시사한다. 전주 및 순창암체의 희토류원소 분포형태는 양 암체 모두에서 Eu(-) 이상이 거의 나타나지 않고 LREE가 HREE에 비해 극도로 부화된 경향을 보여 서로 매우 유사했다. 이러한 희토류 원소의 분포형태는 우리나라의 선불국사 화강암류에서 보여지는 공통적인 희토류원소의 분포형태와 유사한 것이다. 이상의 결과들은 전주 및 순창엽리상화강암이 그 조성에 있어 서로 유사한 근원암 즉, 화성암질 조성을 갖는 대륙지각의 부분용융에 의해서 형성된 마그마를 기원으로 하고 있으며, 서로 유사한 마그마 분화정치과정을 거쳤음을 시사한다.

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강진 인근 쥬라기 엽리상 화강암류의 CHIME 모나자이트 연대측정 (CHIME Monazite Ages of Jurassic Foliated Granites in the Vicinity of the Gangjin Area, Korea)

  • 조등룡;기원서
    • 암석학회지
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    • 제16권3호
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    • pp.101-115
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    • 2007
  • 순창전단대의 남쪽 연장이라 여겨지는 강진 인근에 분포하는 우수향 연성전단대의 엽리상 화강암류 2시료에 대한 CHIME 모나자이트 연대측정을 실시하여 중립질 흑운모 화강암과 조립질 흑운모 화강암의 관입시기에 해당하는 $183.6{\pm}2.2Ma$(MSWD=0.21)와 $171.7{\pm}4.0Ma$(MSWD=0.57)를 각각 얻었다. 이 연구의 엽리상 화강암에서 관찰되는 석영과 장석의 미구조적 특징은 순창전단대의 임실-남원 지역 쥬라기(약 180 Ma) 엽리상 화강암류에서 보고된 것과 대단히 흡사하며, 우수향의 연성전단작용이 $300{\sim}550^{\circ}C$의 온도조건에서 일어났음을 제한한다. 이 연구의 엽리상 화강암이 임실-남원 지역의 쥬라기 엽리상 화강암류와 유사한 냉각과정을 거쳤다고 가정하면 강진 지역의 우수향 전단작용의 시기는 172 Ma와 150 Ma사이에 일어났을 것이고, 이는 기존의 CHIME 모나자이트 연령에 근거한 추정보다 약 10 Ma 후기이다.

전라북도 오수-진안 지역에 분포하는 변성퇴적암류에 대한 변성작용 (Metamorphism of the Meta-Sedimentary Rocks in the Osu-Jinan Area, Cheonrapuk-Do, Korea)

  • 안건상;김용준;신인현
    • 자원환경지질
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    • 제30권2호
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    • pp.163-174
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    • 1997
  • Precambrian metapelites and metapsammites of the Jinan-Osu area (so-called Seologri and Yongamsan Formation) consist of black slate, phyllite, mica schist, quartzite and rarely calc schist. They are intruded by Sunkagsan granite gneiss, Foliated granodiorite, Amphibolite, Sunchang foliated granite and Namwon granite. Mylonite texture, crenulation cleavage and minor shear zone are common. The meta-sedimentary rocks include various rock-fragments xenoliths in size (up to 3 cm) and rock-type. They have various porphyroblastic spots in size (up to 1 cm) and their mineral composition is different. The xenoliths are schists, granite and quartzite, which are rectangular or lens form and recrystallized muscovite, chlorite and quartz. Spots are andalusite and biotite aggregates extensively replaced by chlorite. The metamorphic terrain is divided into three zones of progressive metamorphism on the basis of mineral assemblage. They are chlorite zone, chloite-biotite zone and andalusite-biotite zone ascending order, from west to east approximately. Isograd reactions are phengitic muscovite + chlorite = less phengitic muscovite + biotite + quartz + $H_2O$ and muscovite + chlorite + quartz = andalusite + biotite + $H_2O$ between the chlorite zone and chlorite-biotite zone, and between the chloritebiotite zone and andalusite-biotite zone, respectively. Sample B6 (exposed near the Obong-ri) includes staurolites and greenish biotites, that is different in mineral assemblage and chemical composition from the meta-sedimentary rocks. Sample A12 (exposed near the Shinam-ri) has greenish white spots (up to 1 cm in diameter) mainly composed of Kfeldspar, quartz and sillimanite replaced by muscovite.

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전주 및 순창지역에 분포하는 엽리상 화강암류의 성인에 대한 연구 (II) - Sr 및 Nd 동위원소적 특성을 중심으로 - (Petrogenetic Study on the Foliated Granitoids in the Chonju and the Sunchang area (II) - In the Light of Sr and Nd Isotopic Properites -)

  • 나춘기;이인성;정재일
    • 자원환경지질
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    • 제30권3호
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    • pp.249-262
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    • 1997
  • The Sr and Nd isotopic compositions of two foliated granitic plutons located in the Chonju and Sunchang area were determined in order to reconfirm the intrusion ages of granitoids and to study the sources of granitic magmas. The best defined Rb-Sr isochron for the whole rock samples of the Chonju foliated granite (CFGR) give an age of $284{\pm}12Ma$, suggesting early Permian intrusion age. In contrast, the whole rock Rb-Sr data of the Sunchang foliated granite (SFGR) scatter widely on the isochron diagram with very little variation in the $^{87}Rb/^{86}Sr$ ratios and, therefore, yield no reliable age information. Futhermore they show the concordance of mineral and whole rock Rb-Sr isochron and divide into two linear groups with roughly the same slopes and significantly different $^{87}Sr/^{86}Sr$ ratios, indicating some kind of Rb-Sr distortion in whole rock scale and a difference in source material and/or magmatic evolution between two subsets. The reconstructed isochrons of 243 Ma, which was defined from the proposed data by the omission of one sample point with significantly higher $^{87}Rb/^{86}Sr$ ratio than the others, and 252 Ma, from the combined data of it and some of this study, strongly suggest the possibility that the SFGR was intruded appreciably earlier than had previously been proposed, although the reliability of these ages still questionable owing to high scatter of data points and, therefore, further study is necessary. All mineral isochrons for the investigated granites show the Jurassic to early Cretaceous thermal episode ranging from 160 Ma to 120 Ma Their corresponding initial $^{87}Sr/^{86}Sr$ ratios correlate well with their whole rock data, indicating that the mineral Rb-Sr system of the investigated granites was redistributed by the postmagmatic thermal event during Jurassic to early Cretaceous. The initial ${\varepsilon}Sr$ values for the CFGR (64.27 to 94.81) tend to be significantly lower than those for the SFGR (125.43 to 167.09). Thus it is likely that there is a marked difference in the magma source characteristics between the CFGR and the SFGR, although the possibility of an isotopic resetting event giving rise to a high apparent initial ${\varepsilon}Sr$ in the SFGR can not be ruled out. In contrast to ${\varepsilon}Sr$, both batholiths show a highly resticted and negative values of initial ${\varepsilon}Nd$, which is -14.73 to -19.53 with an average $-16.13{\pm}1.47$ in the CFGR and -14.78 to -18.59 with an average $-17.17{\pm}1.01$ in the SFGR. The highly negative initial ${\varepsilon}Nd$ values in the investigated granitoids strongly suggest that large amounts of recycled old continental components have taken part in their evolution. Furthermore, this highly resticted variation in ${\varepsilon}Nd$ is significant because it requires that the old crustal source material, from which the granitoid-producing melts were generated, should have a reasonably uniform Nd isotopic composition and also quit similar age. Calculated T2DM model ages give an average of $1.83{\pm}0.25Ga$ for CFGR and $1.96{\pm}0.19Ga$ for SFGR, suggesting the importance of a mid-Proterozoic episode for the genesis of two foliated granites. Although it is not possible to determine precisely the source rock compositions for the investigated foliatic granites, the Sr-Nd isotopic evidences indicate that midcrustal or less probably, a lower crustal granulitic source could be the most likely candidate.

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