• 제목/요약/키워드: Granitic rocks

검색결과 299건 처리시간 0.023초

미국 위시컨신주의 올프리버 저반에 대한 산소동위원소 연구 (Oxygen Isotope Study on the Wolf River Batholith, Wisconsin in U.S.A.)

  • Sun-Joon Kim;Yuch-Ning Shieh
    • 암석학회지
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    • 제4권2호
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    • pp.124-133
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    • 1995
  • 미국 위스콘신주의 울프리버 저반의 산소동위원소의 조성을 분석한 결과, 분화계열에 속하는 심성암들 간의 산소동위원소 조성은 거의 유사한 경향을 보이고 있으며, 미분화계열에 속하는 신성암체 간의 조성도 거의 유사한 경향을 보였다. 이는 고온에서의 극히 미약한 동위원소 분별작용을 보여주는 것이다. 주변 모암인 피노키안 심성암체의 산소동위원소 조성이 울프리버 저반보다 약 1-2 퍼밀이 높기 때문에 울프리버 저반의 근원 암으로 볼 수는 없으나, 울프리버 저반보다 약간 낮은 산소동위원소 조성을 갖는 근원 마그마가 존배하였다면, 이 마그마에 의한 주변 모암의 동화작용에 의해서 울프리버 저반의 산소동위원소조성의 생성이 가능한 것으로 판단된다.

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진동화강암 및 유천-언양화강암의 광화작용에 관한 지화학적 연구 (A Geochemical Study on the Chindong and Yucbeon - Eonyang Granites in Relation to Mineralization)

  • 이재영
    • 자원환경지질
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    • 제22권1호
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    • pp.21-34
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    • 1989
  • Chindong granites are classified into granodiorite, tonalite and quartz-diorite, and Yucheon - Eonyang granites into monzo-granite by the Streckeisen diagram. These granitic rocks of Cretaceous age show trend of calc-alkaline magma, and the magmatic evolution from basic to acidic rocks is consistant with the general crystallization path of the Cretaceous granitic rocks in the Gyeongsang basin. On the basis of petrological and petrochemical data, variation of major elements (K, Na, Ca, Mg) and trace elements (Rb, Sr, Ba) including ore metals (Cu, Pb, Zn) in the Cretaceous granitic rocks were studied in detail in order to investigate geochemical difference of the granitic rocks in relation to mineralization between Cu province and Pb-Zn province in the Gyeongsang basin. There is clear difference in content of the major elements between Chindong granites and Yucheon-Eonyang granites : Chindong granites have low content of K (1.62%) and Na (2.53%), and high content of Ca (3.75%) and Mg (1.42%) whereas Yucheon-Eonyang granites have high content of K (3.56-3.60%), and low content of Ca (0.96-0.26%) and Mg (0.26-0.21%). There is also clear difference in content of trace lithophile elements between Chindong granites and Yucheon-Eonyang, granites : Chindong granites have low content of Rb (86ppm) and Ba (330ppm), and high content of Sr (405ppm) while Yucheon-Eonyang, granites have high content of Rb (144-161ppm) and Ba (983-1030ppm), and low content of Sr (157-136ppm). The lithophile trace elements of Rb and Sr vary with close relationship to major elements of K and Ca, respectively. Therefore, Chindong granites are much easily distinguished from Yucheon-Eonyang granites by using relationship of K with Rb and Ca with Sr : K<3%, Rb<100ppm, Ca<2% and Sr>200ppm for Chindong granites, and K>3%, Rb>100ppm, Ca<2%, and Sr<200ppm for Yucheon-Eonyang granites. There is not clear difference in content of trace ore metals between Chindong granites and Yucheon-Eonyang granites : Chindong granites of the Cu province have low Cu content (15ppm) which is nearly equal to 13-14ppm of Yucheon-Eonyang granites of the Pb-Zn province, and Yucheon-Eonyang granites have Pb content (29-27ppm) which is rather lower than 37ppm of Chindong granites. But Cu is anomalously high in the mineralized part of Chindong granites in Gunbuk-Haman area, and Zn is apparently higher in Yucheon-Eonyang granites (51-37ppm) than in Chindong granites (29ppm). K/Pb ratio is also c1early distinguishable between Chindong granites (<850) and Yucheon-Eonyang granites (>850). Thus, it may be possible to apply geochemical difference of the granites to distinguish whether a Cretaceous granitic body is Cu related rock or Pb-Zn related rock, and whether it belongs to Cu province or Pb-Zn province in the Gyeongsang basin.

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경남 밀양지역 납석광상과 안산암질 모암의 지구화학적 연구 (A Geochemical Study on Pyrophyllite Deposits and Andesitic Wall-Rocks in the Milyang Area, Kyeongnam Province)

  • 오대균;전효택;민경원
    • 자원환경지질
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    • 제25권1호
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    • pp.27-39
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    • 1992
  • Several pyrophyllite deposits occur around the Milyang area where Cretaceous andesitic rocks and spatially related granitic rocks are widely distributed. Pyrophyllite ores consist mainly of pyrophyllite, and quartz with small amount of sericite, pyrite, dumortierite, and diaspore. The andesitic rocks and spatially related granitic rocks in this area suggest that they could be formed from the same series of a calc-alkaline magma series. The contents of $SiO_2$, $Al_2O_3$, LOI(loss on ignition) are enriched, and $K_2O$, $Na_2O$, CaO, MgO, $Fe_2O_3$ are depleted in altered andesitic rocks and ores. Enrichment of As, Cr, Sr, V, Sb and depletion of Ba, Cs, Ni, Rb, U, Y, Co, Sc, Zn are characteristic during mineralization. The pyrophyllite ores can be discriminated from the altered-and unaltered wall-rocks by an increasing of $(La/Lu)_{cn}$ from 4.18~22.13 to 8.98~55.05. In R-mode cluster analysis, Yb-Lu-Y, La-Ce-Hf-Th-U-Zr, $TiO_2-V-Al_2O_3$, Sm-Eu, $CaO-Na_2O-MnO$, Cu-Zn-Ag, $K_2O-Rb$ are closely correlated. In the discriminant analysis of multi-element data, $P_2O_5$, As, Cr and $Fe_2O_3$, Sr are helpful to identify the ores from the unaltered-and altered wall-rocks. In the factor analysis, the factors of alteration of andesitic rocks and ore mineralization were extracted. In the change of ions per unit volume, $SiO_2$, $Al^{3+}$ and LOI are enriched and $Na^+$, $K^+$, $Ca^{2+}$, $Mg^{2+}$, $Mn^{2+}$ and $Fe^{3+}$ are depleted during the alteration processes. The Milyang and the Sungjin pyrophyllite deposits could be mineralized by hydrothermal alteration in a geochemical condition of low activity ratio of alkaline ions to hydrogen ion with reference to spatially related granitic rocks.

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청산 일대에 분포하는 화강암류의 광물조성과 주성분원소 지구화학 (Mineral chemistry and major element geochemistry of the granitic rocks in the Cheongsan area)

  • 사공희;좌용주
    • 암석학회지
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    • 제6권3호
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    • pp.185-209
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    • 1997
  • 청산지역의 화강암류는 기재적인 특징으로부터 백록 화강섬록암, 청산 반상 화강암 및 청산복운모 화강암으로 분류할 수 있다. 백록 화강섬록암의 각섬석은 외각섬석군에 속하고, 중심부의 Mg- 보통각섬석에서 주변부의 양기석질 보통각섬석으로 조성적 변화를 보인다. 청산 지역 화강암류의 흑운모는 금운모와 애나이트의 중간 조성을 나타낸다. 복운모 화강암에서 산출되는 백운모는 그 산출상태와 조성으로부터 마그마 정출의 1차적인 백운모로 판단된다. 주성분 산화물의 변화 경향에서 각각의 화강암류는 체계적인 변화를 나타낸다. 백록 화강섬록암은 청산 반상 화강암 및 복운모 화강암과는 주성분의 변화 경향에서 매우 뚜렷한 차이를 보인다. 반상 화강암과 복운모 화강암의 경우 일부 성분에서는 연속성이 관찰되지만, 몇몇 원소에서는 뚜렷한 차이를 보인다. 따라서 청산 지역의 세 화강암류는 각각 이질적 성인의 다른 조성의 마그마로부터 형성된 것으로 판단된다. 화강암류의 전암 화학조성으로부터 청산 지역 화강암류는 칼크-알칼리질임을 알 수 있다. 한편, 백록 화강섬록암과 청산 반상 화강암은 그 전암 조성이 I-타입과 메타알루미나질임에 비해, 청산 복운모 화강암은 I-/S-타입 양쪽과 과알루미나질을 나타낸다. 불투명광물의 함량과 전암 대자율값으로부터 청산지역 화강암륜느 모도 티탄철석계열에 속해 비교적 환원적인 환경에서 관입·고결되었음을 알 수 있다. 또한 세 화강암류는 활동성 대륙연변부에서 일어난 화성활동의 결과로 형성되었음이 추정된다. 청산 반상 화강암에 나타나는 알칼리장석의 거정은 그 결정의 크기, 형태, 배열 및 포유물의 분포 양상 등으로부터 마그마 기원임을 추정할 수 있다. 반상 화강암의 조직적 특징은 2단계 정출작용으로 설명된다. 즉, 알칼리장석 거정의 크기와 형태는 과냉각 정도가 적은 상태에서 결정의 느린 핵형성과 빠른 성장속도로 말미암아 형성된 반면, 석기는 과냉각 정도가 큰 상태에서 핵형성 밀도와 속도가 증가하여 형성된 것으로 판단된다.

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남극 킹조지섬 바톤반도의 열수변질작용에 관한 K-Ar 연대와 지구화학 (K-Ar Age and Geochemistry of Hydrothermal Alteration in the Barton Peninsula, King George Island, Antarctica)

  • 허순도;이종익;황정;최문영
    • Ocean and Polar Research
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    • 제23권1호
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    • pp.11-21
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    • 2001
  • K-Ar ages of the altered rocks from the Barton Peninsula are belows; altered tuffaceous andesite from southwestern part is 42 Ma, altered rocks contacted with quartz vein from southern part are 28 and 33 Ma, and advanced argillic altered andesite from northeastern part are 33 and 35 Ma. Those K-Ar ages are 10 My younger than granitic rocks of the Barton Peninsula. Hydothermal alteration of the Barton Peninsula was originated from mixing of magmatic water from parent magma of granitic rocks with meteoric water. The Al content in the hostrock is relatively constant during hydrothermal alteration, on the contrary the Mg content is in proportion to total alkali. The variation of total alkali and Mg contents in hydrothermal alteration indicates that those elements was washed out during hydrothermal alteration. The sequences of hydrothermal alteration of the Barton Peninsula is chloritization of amphiboles, sericitization of feldspars and kaolitization of sericite.

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경상분지내 동광상 관련 진동화강암류에 대한 지화학적 연구 (A Geochemical Study on Jindong Granites in Relation to Copper Ore Deposits in Gyeongsang Basin)

  • 이재영;이진국;박법정;이인호;김상욱
    • 자원환경지질
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    • 제27권2호
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    • pp.161-170
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    • 1994
  • Jindong Granites are plotted mainly in the region of granodiorite~diorite of the Streckeisen's diagram, while Yucheon-Eonyang Granites and Onjonri Granites in the region of monzo-granite and monzo-granite~granodiorite, respectively. Jindong Granites show a differenciation trend of calc-alkaline magma, and its magmatic evolution from intermediate to acidic rocks, which might form mineralizing solution, is consistant with the general path of the Cretaceous granitic rocks including Yucheon-Eonyang Granites and Onjongri Granites. The differenciation index (D.I.) is 35~80 for Jindong Granites, which is lower than 85~95 of Yucheon-Eonyang Granites and is partly overlapped by 67~84 of Onjongri Granites. There is clear difference in content of some major and trace elements between Jindong Granites of Cu province and the other granitic rocks of Pb-Zn and Mo provinces. Between these metallogenic provicnes, Cu content is high in Jindong Granites near Haman-Gunbuk mineralized zone, while Pb and Zn are relatively abundant in Yucheon-Eonyang Granites and Mo in Onjongri Granites. Therefore, Jindong Granites of the Cu province are distinguishable by chemical compositions and their related geochemical characteristics from the other Cretaceous granitic rocks of Pb-Zn and Mo provinces. However, the content of Cu and Cl in biotite is applicable to distinguish a productive phase from a barren phase of Jindong Granites, because Cu and Cl show a trend to be concentrated in biotite of Jindong Gratites in the Haman-Gunbuk mineralized zone.

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암석의 종류와 방향에 따른 물리적 특성과 상호관계 (Characteristics of Physical Properties of Rocks and Their Mutual Relations)

  • 원연호;강추원;김종인;박현식
    • 터널과지하공간
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    • 제14권4호
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    • pp.261-268
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    • 2004
  • The main objectives of this study are to investigate the anisotropic characteristics of rocks and to evaluate the relationships between physical properties. A series of experiments were performed in three mutually perpendicular directions for three rock types, which are granite, granitic gneiss and limestone. The relationships of measured physical properties were evaluated. The results of ultrasonic wave velocity measurement show that granite of three rock types gives the largest directional difference, and that the wave velocity in a plane parallel to a transversely isotropic one is dominantly faster than that in a subvertical or vertical plane. It implies that ultrasonic wave velocity for rock could be used as a useful tool for estimating the degree of anisotropy. The ratio of uniaxial compressive strength to Brazilian tensile strength ranges approximately from 13 to 16 for granite. from 8 to 9 for granite gneiss, and from 9 to 18 for limestone. The directional differences for granite and granitic gneiss are very small, and on the other hand, is relatively large for limestone. It is suggested that strength of rock makes quite difference depending on the rock types and loading directions, especially for the anisotropic rocks such as transversely isotropic or orthotropic rocks. The ratio of uniaxial compressive strength to point load strength index ranges from 18 to 20 for granite, from 17 to 19 for granitic gneiss, and from 21 to 24 for limestone. These results show that point load strength index makes also a difference depending on rock types and directions. Therefore. it should be noted that the ratio of uniaxial compressive strength to point load strength index could be applied to all rock types. Uniaxial compressive strength shows relatively good relationship with point load strength index, Schmidt hammer rebound value, and tensile strength. In particulat, point load strength index is shown to be the best comparative relationship. It is indicated that point load test is the most useful tool to estimate an uniaxial compressive strength indirectly.

Natural radioactivity, mineralogy and hazard assessment of syenogranites (ornamental stones) using a statistical approach

  • Sherif A. Taalab;Ahmed M. Ismail;W.M. El Maadawy;Kamal Abdelrahman;Mayeen Uddin Khandaker;Ahmed K. Sakr;Mohamed Y. Hanfi
    • Nuclear Engineering and Technology
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    • 제56권10호
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    • pp.4141-4148
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    • 2024
  • The study focused on syenogranite and its altered variety, and specifically monitored the activities of 226Ra, 232Th, and 40K using NaI(Tl) gamma-ray spectroscopy. Syenogranites in the study area in Egypt were investigated to determine their potential use in industries such as ornamental stones and ceramics. The main outcrops in the study area consist of metasediments, metavolcanics, metagabbro, syn-to late-orogenic granites, and post-orogenic granites (syenogranites). There are also numerous dikes and veins of various shapes and compositions that have intruded and penetrated all the older rocks in the area. The mean activity (± standard deviation, SD) of these radioelements in the granites is 226Ra (63 ± 71 Bq kg-1), 232Th (76 ± 170 Bq kg-1), and 40K (1248 ± 532 Bq kg-1) were found to be greater than the world average. The radiological hazards are mostly attributed to the γ-rays emitted by granitic rocks. The granites studied in this study deviate from international standards mainly due to the presence of minerals containing radioelements such as zircon, allanite, monazite, sphene titanite, apatite, thorite, samarskite, fergusonite, xenotime, columbite, apatite and fluorite. As a result, granitic rocks are unsuitable for home building.

우리 나라 황토(풍화토)의 구성광물 및 화학성분 (Mineralogy and Chemical Composition of the Residual Soils (Hwangto) from South Korea)

  • 황진연;장명익;김준식;조원모;안병석;강수원
    • 한국광물학회지
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    • 제13권3호
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    • pp.147-163
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    • 2000
  • The mineralogy and chemical composition of reddish to brownish yellow residual soils, so called "Hwangto" have been examined according to representative host rocks. The result of the study indicates that Hwangto consists of 40-80% clay minerals and various minerals such as quartz, feldspar, hornblende, goethite, and gibbsite. Clay minerals include kaolinite, halloysite, illite, hydroxy interlayered vermiculite (HIV), mica/vermiculite interstratifield mineral and chlorite. The mineralogical constituents and contents of Hwangto were different depending on the types of host rocks. Moreover, the Jurassic granitic rocks contain relatively more kaolin minerals, whereas the Cretaceous granitic rocks contain more HIV and illite. In addition, reddish Hwangto contains relatively more kaolinite and HIV, and yellowish Hwangto contains more illite and halloysite. It is suggested that feldspars and micas of host rocks were chemically weathered into illite, halloysite, illite/vermiculite interstratified minerals, and HIV, and finally into kaolinite. Compared with their host rocks, the major chemical compositions of Hwangto tend to contain more $Al_2O_3,\;Fe_2O_3,\;H_2O$ in amount and less Ca, Mg, and Na. Hwangto contains relatively high amount of trace elements, P, S, Zr, Sr, Ba, Rb, and Ce including considerable amount of Li, V, Cr, Zn, Co, Ni, Cu, Y, Nb, La, Nd, Pb, Th in excess of 10 ppm. Relatively high amount of most trace elements were detected in the Hwangto. The major and minor chemical compositions of the Hwangto were different depending on the types of host rocks. However, their difference was in the similar range compared with the compositions of host rocks.

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