• Title/Summary/Keyword: Geochronology

검색결과 41건 처리시간 0.025초

석포(石浦)-덕구간(德邱間)에 분포(分布)하는 소위(所謂) 홍제사화강암(洪濟寺花崗岩)의 지질연대(地質年代)와 생성과정(生成過程)에 대(對)한 硏究(연구) (Geochronology and Petrogenetic processes of the so-called Hongjesa granite in the Seogpo-Deogku Area)

  • 김용준;이대성
    • 자원환경지질
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    • 제16권3호
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    • pp.163-221
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    • 1983
  • Main aspects of this study are to clarify geochronology and petrogenetic processes of the so-called Hongjesa granite, which is a member of various intrusive rocks exposed in the northeastern part of the Ryongnam Massif, one of the Precambrian basements of South Korea. In this study, the Hongjesa grainte is divided into four rock units based on the geologic age, mineralogical and chemical constituents, and texture: the Precambrian Hongjesa granite gneiss (Hongjesa granite Proper) and leucogranite gneiss, the Paleozoic gnessic two mica granite, and the Jurassic muscovite granite. The Hongjesa granite gneiss is identified by its grayish color, slight foliation, and porphyroblastic texture. The leucogranite gneiss is distinct by its light gray color, sand medium to coarse grained texture. The gneissic two mica granite is distinguished from others by its strong foliation, containing gray-colored feldspar phenocrysts with biotite and muscovite in varying amounts. The muscovite granite occurs as a small stock containing feldspar phenocrysts along margin of the stock. These granitic rocks vary widely in composition, reflecting the facts that they partly include highly metamorphosed xenolith and schlierens as relics of magmatic and anatectic processes. In particular, grayish porphyroblasts of microcline perthite is characteristic of the Hongjesa granite gneiss, whereas epidote and garnet occur in both the Hongjesa granite gneiss and leucogranite gneiss. These minerals are considered to be formed by potassic metasomatism and contamination of highly metamorphosed rocks deeply buried under the level of the Hongjesa granite emplacement. The individual synchronous granitic rocks plotted on Harker diagram show mostly similar trends to the Daly's values. The plots of the Hongjesa granite gneiss and gneissic two mica granite concentrate near the end part of the calc-alkalic rock series on the AMF diagrams, whereas those of the leucogranite gneiss and muscovite granite indicate the trend of the Skaergaard pluton. These granitic rocks plotted on a Q-Ab-Or diagram (petrogeny's residua system) fall well outside the trough of the system. This can be attributed to the potassic matasomatism of these rocks. On the ACF diagram, these rocks appear to be dominantly I-type prevailing over S-type. The K-Ar ages, obtained from a total of 7 samples of the leucogranite gneiss, gneissic two mica granite, muscovite granite, porphyritic alkali granite, and rhyolitic rock, in addition to the Rb/Sr ages of the Hongjesa granite gneiss by previous workers, permit the rock units to be arranged in the following chronological order: The middle Proterozoic Hongjesa granite gneiss (1714-1825 m.y.), the upper proterozoic leucogranite gneiss (875-880 m. y.), the middle Paleozoic gneissic two mica granite (384 m. y.) the upper Jurassic muscovite granite (147 m. y.), the Eocene alkali granite (52 m. y.), and the Eocene rhyolitic rock (45 m. y.). From the facts and data mentioned above, it is concluded that the so-called Hongjesa granite is not a single granitic mass but is further subdivided into the four rock units. The Hongjesa granite gneis, leucogranite gneiss, and gneissic two mica granite are postulated to be either magmatic or parautochtonous, intrusive, and the later muscovite granite is to be magmatic in origion.

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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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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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남북한 지질학 용어의 비교 분석 (Comparison of Geological Terminology Used in South and North Korea)

  • 김정률;최근수
    • 한국지구과학회지
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    • 제24권8호
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    • pp.691-703
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    • 2003
  • 북한에서 발행된 '조선의 지질'과 남한에서 발행된 '한국의 지질'을 중심으로 남북한에서 발행된 지질학 관련문헌을 조사하여 남북한의 지질학 용어를 비교 ${\cdot}$ 분석하였다. 본 연구에서 이용된 북한의 자료에 의하면 북한에서 현재사용하고 있는 지질학 용어의 총 수는 1272개이다. 이들 지질학 용어는 지질연대학 용어가 49개, 광물학 용어가 201개, 암석학 용어가 199개, 구조지질학 용어가 257개, 고생물학 용어가 93개, 일반지질학 용어가 473개이다. 지질학 용어의 남북한 이질화 정도를 살펴보면, 전체 지질학 용어 중에서 남북한간에 표현과 의미가 같은 동음 동의어는 657개로 약 51.7%이고, 표현하는 방법에 약간의 차이는 있지만 쉽게 그 뜻이 이해되는 동의 유사어는 370개로 약 29.1%이며, 남북한간에 표현하는 방법이 달라서 쉽게 뜻이 통하지 않는 이음 동의어는 245개로 약 19.2%이다. 남북한간에 지질학 용어가 이질화된 원인은 한글 전용 원칙의 차이, 외래어 표기법의 차이, 두음법칙 적용의 차이, 붙여쓰기 표현의 차이, 서로 다른 문화의 영향 등을 들 수 있다.

함백익지(咸白益地) 기반지역(基盤地域)에 분포(分布)하는 선(先)캠브리아 화강암질암류(花崗岩質岩類)의 암석화학적(岩石化學的) 연구(硏究) (Petrochemical Study on the Precambrian Granitic Rocks in the Basement Area of Hambaeg Basin)

  • 윤현수;이대성
    • 자원환경지질
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    • 제19권1호
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    • pp.35-55
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    • 1986
  • The area of this study is located in the Sang dong district, Youngwol Gun, Kangwon Do, where the Ogcheon fold belt comes into contact with the Ryongnam massif. The area is covered by the Precambrian metasedimentary rocks of Yulri Group in the south from the line of Ungyosan-Maebongsan-Jansan-Taebaegsan Mountains and by the Cambro-Ordovician sedimentary rocks of Choseon Supergroup in the north. The Choseon Supergroup unconformably overlies the Yulri group. Several granitic intrusives occur in the Precambrian and Cambro-Ordovician terrain. The purpose of this study is to clarify the geochronology, mineralogical composition, geochemical characteristics, petrogenesis and tectonic settings of the Precambrian granitic rocks, and to evaluate the P.T. conditions of granitic intrusions. The K/Ar ages obtained from the muscovite of Nonggeori Granite, Naedeogri granite and pegmatite intruded into the Yulri Group are Early Proterozoic ($1805{\pm}18Ma$ to $1642{\pm}23Ma$), and those from the migmatitic pegmatite are Late Carboniferous ($305{\pm}4Ma$), respectively. The Precambrian granitic rocks are characterized by the presence of muscovite, tourmaline and grey feldspar with faint lineation of mafic minerals. In terms of mineralogical and chemical composition, the granitic rocks are felsic, calc-alkalic, peraluminous and S-type (ilmenite-series). The geochemical characteristics of major and trace elements indicate that the granitic rocks belong to syn-collision setting at the compressional plate margin. They were formed by progressive melting of relatively homogeneous crustal materials under 1~3kb and $670^{\circ}{\sim}720^{\circ}C$ in aqueous fluid conditions, and the Naedeogri granite was more fractionated than the Nonggeori granite. During the Taebaeg disturbance, Nonggeori granite, Naedeogri granite and pegmatite were intruded and emplaced into the Yulri Group. Migmatitic pegmatite occurring in the southwestern area, however, gave much younger muscovite age than the pegmatite intruded into the Yulri Group in rest of the area did, that might be due to the regional metamorphism of the Post-Choseon disturbance. The Geodo granitic mass and the Imog granite were intruded during the Bulgugsa disturbance.

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Elemental analysis of caries-affected root dentin and artificially demineralized dentin

  • Sung, Young-Hye;Son, Ho-Hyun;Yi, Keewook;Chang, Juhea
    • Restorative Dentistry and Endodontics
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    • 제41권4호
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    • pp.255-261
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    • 2016
  • Objectives: This study aimed to analyze the mineral composition of naturally- and artificially-produced caries-affected root dentin and to determine the elemental incorporation of resin-modified glass ionomer (RMGI) into the demineralized dentin. Materials and Methods: Box-formed cavities were prepared on buccal and lingual root surfaces of sound human premolars (n = 15). One cavity was exposed to a microbial caries model using a strain of Streptococcus mutans. The other cavity was subjected to a chemical model under pH cycling. Premolars and molars with root surface caries were used as a natural caries model (n = 15). Outer caries lesion was removed using a carbide bur and a hand excavator under a dyeing technique and restored with RMGI (FujiII LC, GC Corp.). The weight percentages of calcium (Ca), phosphate (P), and strontium (Sr) and the widths of demineralized dentin were determined by electron probe microanalysis and compared among the groups using ANOVA and Tukey test (p < 0.05). Results: There was a pattern of demineralization in all models, as visualized with scanning electron microscopy. Artificial models induced greater losses of Ca and P and larger widths of demineralized dentin than did a natural caries model (p < 0.05). Sr was diffused into the demineralized dentin layer from RMGI. Conclusions: Both microbial and chemical caries models produced similar patterns of mineral composition on the caries-affected dentin. However, the artificial lesions had a relatively larger extent of demineralization than did the natural lesions. RMGI was incorporated into the superficial layer of the caries-affected dentin.

호주 남동부 Otway 해안의 후기 신제3기 및 제4기 융기 운동(I): 제4기 해안단구 발달 및 지층서 (Late Neogene and Quaternary Vertical Motions in the Otway Coast, Southeast Australia (I): Development and Geochronology of Quaternary Marine Terraces)

  • 신재열
    • 한국지구과학회지
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    • 제33권6호
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    • pp.519-533
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    • 2012
  • 본 연구는 호주 남동부 Victoria 남부 해안을 따라 발달하고 있는 Otway 산맥 일대에서 지난 5 Ma 동안의 신기지체구조 운동의 성격을 해안 산악 지역을 따라 분포하고 있는 해안단구의 발달상을 통해 밝히고 있다. OSL 연대 측정으로부터 얻은 저위 해안단구면의 융기율은 판 내부 구조운동의 영향이 현생 지형 발달에 미치는 결과를 명확히 보여주고 있다. 또한 본 연구는 제4기 해안단구와 플라이오세 고해수준 기록 간의 층서적 관계를 통해 후기 신제3기 이후에 나타나는 지구조 운동의 변화적 속성을 밝히고 있다. 이와 같은 후기 신제3기 이후 가속화된 지구조 운동 반응은 호주-태평양판의 이동성의 변화와 이에 따른 경계 응력의 증가가 대륙 내부 응력 수준에도 영향을 미친 결과로 이해된다.

예천지역 화강섬록암 풍화대내 흑운모의 Rb-Sr 동위원소연대 변화 (Rb-Sr Isotopic Ages of Biotite in the Weathering Profile of Granodiorite, Yecheon)

  • 정기영;정창식;이봉호
    • 한국광물학회지
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    • 제18권1호
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    • pp.53-59
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    • 2005
  • 예천지역 화강섬록암 풍화단면내의 흑운모가 산화흑운모로 풍화되는 과정에서 Rb-Sr 동위원소연대의 변화를 분석하였다. 신선한 흑운모와 풍화된 흑운모들의 Rb-Sr 동위원소 조성을 열이온화질량분석기로 측정하였고, 이를 기존의 K-Ar 자료와 비교하였다. Rb-Sr 동위원소연대는 흑운모의 산화정도에 따라 체계적으로 감소하는 경향을 보이며, 이는 K-Ar 연대의 감소경향과 잘 일치하였다. Fe/sup 2+/의 산화로 발생하는 과잉전하로 구조내 양이온들이 방출되는 과정에서 층간의 방사기원핵종도 일부 방출되었는데, 일가 양이온인 /sup 87/Rb이 이가 양이온인 /sup 87/Sr로 붕괴되어 딸핵종인 /sup 87/Sr이 모핵종인 /sup 87/Rb보다 심하게 흑운모로부터 제거된 것으로 보이고, 그 결과 Rb-Sr 동위원소연대가 감소하였다. 풍화된 흑운모는 모암의 연대측정대상으로 부적합한 것으로 보이지만, 풍화과정에서 방사기원 동위원소들의 거동은 흑운모 풍화의 지화학적 및 구조적 과정에 대한 유용한 정보를 제공한다.

서산층군 함철규암의 쇄설성 저어콘에 대한 SHRIMP U-Pb 연대: 시대와 층서의 제한 (SHRIMP U-Pb Geochronology of Detrital Zircons from Iron-bearing Quartzite of the Seosan Group: Constraints on Age and Stratigraphy)

  • 조등룡;김용준
    • 암석학회지
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    • 제15권3호
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    • pp.119-127
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    • 2006
  • 서산층군 함철규암의 한 시료를 대상으로 쇄설성 저어콘의 SHRIMP U-Pb 연대를 측정하였다. 42점의 분석치 중 38점이 불일치비 10% 이하의 일치연령을 나타내며, 이들은 $1781{\sim}1898\;Ma(n=19),\;1935{\sim}1941\;Ma(n=4),\;1996\;Ma,\;2120\;Ma\;2403{\sim}2459\;Ma(n=5)$, 2661 Ma와 3198Ma의 8 연령군을 이룬다. 따라서 함철규암의 퇴적시기는 가장 젊은 쇄설성 저어콘 연령인 1.78 Ga 이후이며, 이는 서산층군의 함철규암이 북중국 지괴의 시생대 함철층과 대비될 수 있다는 기존의 주장과 배치된다.

벤토나이트의 일라이트화에 의한 세슘 수착 특성 변화 연구 (Effects of Bentonite Illitization on Cesium Sorption)

  • 황정환;정성욱;한원식;윤원우
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제26권5호
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    • pp.29-38
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    • 2021
  • This study investigated the mineralogical properties of bentonite and illite and evaluated the Cs sorption at various concentrations (Cw≈1-105 ㎍/L). Bentonite samples, collected from South Korea and USA, majorly consisted of Ca- and Na-montmorillonite, showed large cation exchange capacity (CEC, 91.4 and 47.3 meq/100 g) and specific surface area (SSA, 46.1 and 39.7 m2/g). In contrast, illite sample (USA) had relatively low values for 14.4 meq/100g of CEC and 29.3 m2/g of SSA, respectively. Bentonite and illite had different non-linear sorption for Cs along with Cw. At low Cw<10 ㎍/L, illite showed higher sorption capacity than bentonite despite low CEC because of the existence of specific sorption sites at the weathered mineral edge. However, as Cw increased, bentonite represented high sorption capacity because the cation exchange between Cs and interlayer cations was effective at high Cw conditions. These results implicated that the Cs concentration is important to evaluate the sorption performance of bentonite and illite. Finally, the Cuadros' kinetic model for illitization using various K concentrations (2×10-5 and 1.7×10-3 mol/L) and temperature (100-200℃) showed that up to 50% of the montmorillonite in bentonite could be converted to illite, suggesting that the illitization should be considered to evaluate the sorption performance of the bentonite in deep geological disposal repository.