• 제목/요약/키워드: Early Cretaceous

검색결과 169건 처리시간 0.025초

Geochrononlogy and thermal history of the Chuncheon granite in the Gyeonggi massif, South Korea

  • Jin, Myung-Shik;Shin, Seong-Cheon;Kim, Seong-Jae;Choo, Seung-Hwan
    • 암석학회지
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    • 제2권2호
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    • pp.122-129
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    • 1993
  • We report Rb-Sr whole rock, K-Ar and fission track mineral ages for the Chuncheon granite in the Precambrian Gyeonggi massif. The Rb-Sr whole rock define an age of $196{\pm}9$ Ma with an initial ratio of $0.7159{\pm}0.0006$, suggesting that the granitic magma might have been generated from crustal sources (S-type), or probably mixed mantle and crustal materials, and emplaced into the massif in the late Triassic or the early Jurassic. K-Ar mineral ages of hornblende, muscovite and biotite are ~210 Ma, ~180 Ma and 166-170 Ma respectively, and fission track zircon and apatite ages are 65-70 Ma, ~35 Ma respectively. These ages indicate that the granitic magma might have been emplaced at about 7 to 9 km from the paleosurface, and rapidly cooled down up to $300^{\circ}C$ until middle Jurassic (~170 Ma) with a rate of about $10^{\circ}C$/Ma, due to thermal difference between the magma and the wall rock. During middle Jurassic to late Cretaceous (about 170-70 Ma), the granite pluton is assumed to have uplifted to 4 to 6 km level under the paleosurface with a rate of 30 m/Ma and slowly cooled down with a rate of about $1^{\circ}C$/Ma owing to relatively slow denudation of the massif. In late Cretaceous to the present, the pluton might have more rapidly uplifted to the present level with a rate of 85 m/Ma and rapidly cooled down with a rate of about $3^{\circ}C$/Ma compared to those of middle Jurassic to late Cretaceous time because of extensive igneous activities accompanied by tectonism in the Gyeonggi massif.

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백악기 계화리층 내 현무암질 안산암-실트암 페퍼라이트 (Basaltic Andesite-Siltstone Peperite in the Gyehwari Formation (Cretaceous))

  • 노병섭;박재문;김승범;양우헌
    • 한국지구과학회지
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    • 제30권1호
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    • pp.33-39
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    • 2009
  • 전북 부안군 백악기 계화리층 하부에 나타나는 현무암질 안산암-실트암 페퍼라이트의 산출양상과 특성을 보고한다. 페퍼라이트는 판상의 현무암질 안산암에 수반되어 산출되며, 안산암은 적색의 범람원 기원 실트암과 실트질 사암교호층 내에 조화적으로 협재되어 있다. 페퍼라이트가 안산암 상부 경계부에서 산출되는 점과 경계부에서는 분산형 페퍼라이트가 우세하나 안산암 내부쪽에서는 밀집형 페퍼라이트가 우세해지는 점은 안산암이 관입기원(?관입암상)임을 지시한다. 마그마 관입과 페퍼라이트 형성은 계화분지 형성 초기부터 퇴적동시성 화산활동이 활발하였음을 시사한다. 안산암의 K-Ar 전암 절대연령은 백악기 후기(Santonian)로 측정되었다.

경상분지 남서부 진교-사천 지역 전기백악기 퇴적암에 대한 고자기 연구 (Palaeomagnetism of Early Cretaceous Sedimentary Rocks in Chingyo-Sach'ŏn Area, Southwestern Kyŏngsang Basin)

  • 김인수;강희철;이현구
    • 자원환경지질
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    • 제26권4호
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    • pp.519-539
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    • 1993
  • A total of 264 independently oriented core samples were collected from 26 sites in the southwestern part (the Naktong Trough) of the Cretaceous $Ky{\check{o}}ngsang$ Basin in south Korea. The sampled formations comprise the sedimentary Shindong and the Hayang Groups of the Lower Cretaceous age. Alternating field and thermal demagnetizations were conducted. Characteristic remanent magnetization (ChRM) was relatively easily isolated in each formation except in the Chinju formation, from which only remagnetization circles were observed. Even though an extensive use of the fold test was not possible due to the nearly homoclinal nature of the strata in the area, we believe that the ChRM of each formation is of primary origin based on the following grounds: The in-situ ChRM direction of each formation is different from the present geomagnetic field direction. Fisherian precision parameter becomes enhanced through the tilt correction in all formations, closely to the values required for a positive fold test. Three out of the five studied formations pass the reversal test. The mean palaeomagnetic pole position from the studied area is found to be statistically different from the contemporary pole from the Chinese block exclusive of the Shandong area. The difference in magnetic declination suggests a $14.5^{\circ}$ (${\pm}10.5^{\circ}$) clockwise rotation of the studied area relative to the Chinese block comprising the west of the Tan-Lu fault. On the other hand, any significant difference in magnetic inclination and concurrent palaeolatitude is not observed between the studied area and China as well as the other area (Taegu-Andong area) in the $Ky{\check{o}}ngsang$ Basin. The dual nature of the magnetic polarity confirmed in all formations suggests an older than 124 Ma (Neocomian or older) age of the studied sedimentary strata.

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미국 북서 네바다주 험볼트 산맥의 구조분석 (Structural characteristics of Humboldt Range, northwest Nevada, U. S. A.)

  • 정상원
    • 암석학회지
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    • 제8권3호
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    • pp.131-148
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    • 1999
  • 미국 네바다주 북서지역은 주요 구조층서적 지구대의 상대적 이동에서 특징적이며 복잡한 구조가 발달되었다. 본 연구지역은 삼첩기 초기의 코이파토 층군과 삼첩기 중기의 스타피크 층군의 현지성 암석으로 구성되며, 이들 현지성 암석은 미국 네바다 북서지역의 험볼트 산맥에 위치한다. 본 연구는 쥬라기에서 백악기 말기동안 작용한 변형작용의 역사 그리고 그와 관련된 조직의 발달 그리고 고응력상태의 분석에 역적을 두었다. 펜스메이커 타지성 암석은 험볼트 산맥의 현지성 암석위로 E에서 ESE 방향으로 오우버 드러스트함에 따라 현지성 암석에 다변형작용을 보여둔다. 이러한 중생대 전지 변형자?에 관련된 구조는 N나 NNE 방향으로 잘 발달된 엽리구조, 서로 다른 습곡형태, 소규모의 드러스트, 전위 엽리의 발달 그리고 강력한 압쇄작용을 들 수 있다. 이들 구조는 험볼트 산맥의 서쪽 경계부를 따라 발달되었으며 미국 북서 네바다 지역에서의 최초 전지 변형작용 알려져 있다. 광역주 압축응력(${\sigma}_1$)은 여러 가지 $D_1$ 구조의 방향에 근거하여 E나 ESE 방향으로 밝혀졌다. 백악기 중기와 말기의 변형작용은 일정하게 배열된 N나 NNE 방향으로 주향하는 변성 석영맥과 기존에 발달된 $D_1$ 엽리구조에 평형한 전단대를 들 수 있다. 변성 석영맥의 일정한 방향성과 이와 관련된 구조는 백악기 중기와 말기의 본 연구 지역에 가해진 광역 주 응력 방향으로 해석되었다. 전단대의 전단감각은 우수 전단 방향으로서 이전에 형성된 $D_1$ 구조의 재활동에 근거한다. 이러한 결과는 쥬라기로부터 백악기 말기까지 연구지역에 작용한 광역 주 응력이 시계 반대방향으로 회전되었음을 반영한다. 마지막으로, 전단띠 벽개와 S/C 압쇄조직의 발달은 연구지역에서의 전단대가 불균질 단순 전단 작용을 받았음을 나타내며 또한 압쇄암 형성시 단축 작용동안 비동축류의 지대로서 작용했음을 나타낸다.

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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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전남(全南) 고흥반도(高興半島)에 분포(分布)하는 화산암류(火山岩類)의 화산층서(火山層序) 및 암석학적(岩石學的) 연구(硏究) (Volcano-Stratigraphy and Petrology of the Volcanic Mass in the Koheung Peninsula, South Cheolla Province, Korea)

  • 윤성효;황인호
    • 자원환경지질
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    • 제21권4호
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    • pp.335-348
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    • 1988
  • The author aimed to describe the volcano-stratigraphy and petrology of the volcanic mass in the Koheung peninsula, South Cheolla province. The volcanic mass is composed of the volcanics and intrusives of late Cretaceous which extruded the Pre-cambrian metamorphic(Jirisan gneiss complex) and the early Cretaceous sedimentary(Duwon Formation) basement. The volcanic pile consists of, in ascending order, Bibongsan andesite, Koheung tuff and breccia, and Palyeongsan welded tuff, and are intruded by ring intrusives( intrusive breccia, andesite porphyry, intrusive rhyolite and fine-grained quartz-diorite) and central pluton(diorite, quartz monzodiorite, biotite granite and micrographic granite). Bibongsan andesite mainly consists of andesite tuff and lava. Koheung tuff consists of alternation of fine tuff, coarse tuff and lapilli tuff, and Palyeongsan welded tuff which overlies Koheung tuff, comprises K-feldspar and quartz phenocrysts, elongated brown fiamme, lithic fragments in matrix of devitrified brown glass shards, and mainly consists of rhyodacite to rhyolite vitric ash-flow tuff. The results of petrochemical studies of the igneous rocks suggest that the rocks were a serial differentiational products of fractional crystallization of calc-alkaline magma series. This study reveals that the volcanic mass in this area is inferred to the remnant of the resurgent cauldron, measuring 30 by 25 km in diameter. The cauldron block was lowered at least 1,000 m by ring fault displacement.

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백운산 향사대에 분포하는 동고층에 대한 고지자기 연구 (Paleomagnetism of the Tonggo Formation in the Baekunsan Syncline)

  • 도성재
    • 자원환경지질
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    • 제26권3호
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    • pp.383-393
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    • 1993
  • Paleomagnetic data have been obtained from the Lower Triassic Tonggo formation which is exposed in the E-W trending Baekunsan syncline comprising the Pyongan Supergroup in eastern Korea. Two ancient components of magnetization are recovered in this formation by detailed thermal demagnetization: a post-folding component and a pre-folding component The post-folding component ($D/I=58.8/55.5^{\circ}$) is normally magnetized and appears to acquire in the Cretaceous Normal Superchron. It is a magnetic signature of the Daebo Orogeny and has been rotated clockwise since this magnetization has been acquired, in common with the main synclinal axis. The pre-folding component ($D/I=1.1/19.4^{\circ}$, Paleopole at $306.1^{\circ}E$, $63.2^{\circ}N$) passes fold and reversal tests and is inferred to be a post-depositional or early chemical diagenetic remanence of Lower-Middle Triassic age. This paleopole corresponds only with the Lower Triassic poles from the North China Block: it is removed from the contemporary poles from the South China Block. If the result of this study is corrected for the clockwise rotation deduced from the Cretaceous overprint, the enhanced agreement with the Lower Triassic poles from the North China block can be achieved. Therefore, a first order correlation between the Korean Peninsula and North China at least since Lower Triassic times is identified in this study.

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The Jinsan Gold Mine, Korea : A Mineralogical and Geochemical Study

  • Youn, Jeong-Su;Lee, Kyeong-Yong;So, Chil-sup;Koh, Yong-Kwon
    • 자원환경지질
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    • 제21권1호
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    • pp.17-27
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    • 1988
  • The Cretaceous Jinsan gold-bearing hydrothermal veins occur within the Late Proterozoic to Mid Ordovician metasedimentary rocks, intruded by Early Cretaceous pink-feldspar granite($142{\pm}2.0m.y.$). Electrum-galena-sphalerite mineralization was deposited in three stages of quartz and calcite veins. Quartz sulfide-bearing stage I and II evolved from initial high temperatures (near $360^{\circ}C$)to later lower temperatures(near $220^{\circ}C$)from lower salinity fluids(1.0 to 3.2 wt.% NaCl eq.). Fluid inclusion data from the post ore carbonate stage reflects much cooler($110^{\circ}$ to $180^{\circ}C$). Evidence of boiling indicates pressure of<85 bars, corresponding to depths of 400m to 1050m assuming lithostatic and hydrostatic loads. Au-deposition was likely a result of boiling, coupled with declining temperatures. The ${\delta}^{34}S$ $H_2S$ values calculated for sulfides are consistent with an igneous source of sulfur with a ${\delta}^{34}S_{{\Sigma}S}$ value near 4.0‰.

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흑산도 화강암의 저어콘 U-Pb 연령: 약 114 Ma 화성활동의 의미 (Zircon U-Pb age of the Heuksan-do Granite: Implication of the Magmatism at ca. 114 Ma)

  • 이태호;박계헌;송용선;김명정
    • 암석학회지
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    • 제26권1호
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    • pp.63-72
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    • 2017
  • 한반도 남서부 목포시에서 서쪽으로 약 90 km 지점에 위치한 흑산도의 소규모 화강암질 관입체로부터 분리한 저어콘에 대한 SHRIMP U-Pb 연대측정 결과 $113.9{\pm}1.2$(n=16) Ma의 정치연령을 얻었다. 백악기 앱티안-알비안 경계시기에는 한반도 거의 전역에서 화성활동이 나타났을 뿐만 아니라 중국 동부와 일본에서도 동일한 시기의 화성활동이 나타난 것으로 보고되었다. 평평한 각도로 일어난 섭입작용에 이은 엽렬에 의해 이처럼 일시적이지만 동아시아의 매우 넓은 지역에서 동시적인 화성활동을 만들어내었을 가능성이 있다.

Geoelectrical Structure of the Kyongsang Basin from Magnetotelluric Sounding

  • 이춘기;권병두;조인기;오석훈;이희순;이태종
    • 지구물리
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    • 제9권3호
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    • pp.273-286
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    • 2006
  • The Kyongsang Basin is the most representative Cretaceous basin in the Korean Peninsula where extensive crustal deformation and non-marine sedimentation took place in the early Cretaceous period. The lithology of the basement of the basin and adjacent areas is comprised of mainly Precambrian gneiss complex and Mesozoic granite intrusions. We have carried out magnetotelluric (MT) surveys to investigate the deep geoelectric structure around the Kyongsang Basin. The MT data were collected in the frequency range from 0.00042 to 320 Hz at 24 sites along a profile across the northern part of Kyongsang Basin. The results of MT inversion show that the thickness of sediments is estimated about 3 km to 9 km and the depth to base of granite intrusion is about 20 km. A remarkable discovery in this study is the highly conductive layer beneath the basin, having the resistivity of 1 ohm-m to 30 ohm-m and the thickness of about 3 km to 4 km or more. Although we are not able to reveal the nature of this layer, the result of this study could provide some basic information with respect to the formation process and deposit environment of the proto-Kyongsang Basin.

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