• 제목/요약/키워드: Hornblende

검색결과 162건 처리시간 0.025초

경상분지 고성지역의 화성암류에 대한 암석학적 연구 II. 미량원소 지구화학과 Rb-Sr 방사성 연대 (Petrology of the Igneous Rocks in the Goseong area, Gyeongsang Basin II. Trace Element Geochemistry and Rb-Sr Radiometric Age)

  • 좌용주
    • 자원환경지질
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    • 제31권6호
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    • pp.473-483
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    • 1998
  • The igneous rocks in the Goseong area are composed of the volcanic rocks (andesitic lapilli tuff and rhyodacite), Bulgugsa granites (Hornblende-biotite granite and two pyroxene granite) and intrusive andesites. In the variation diagrams of the trace and rare earth element contents and elemental ratios as well as the REE patterns, the three igneous rock types show different variational trends and patterns. The geochemical features represent that the igneous rocks in the area were formed from three different magmatic pulses. Two independently carried out Rb-Sr isotope experiments for the Goseong granites show that the whole rock ages and Sr initial ratios of the granites are $66.4{\pm}6.2Ma$, $0.70517{\pm}22(2{\sigma})$ and $71.3{\pm}6.8Ma$, $0.70506{\pm}18(2{\sigma})$, respectively. These results suggest that the granites magma originated from the lower crustal materials of igneous origin intruded into the area during the late Cretaceous period. Masan hornblende-biotite granite emplaced at the vicinity of the Goseong area is very similar to the Goseong granite in its mineral compositions, major, trace and rare earth element contents and patterns. The intruding age (100 Ma) of the Masan granite is order than that of the Geseong granite, however. The similarity of the geochemical natures but the contrast of the intruding ages between the Masan and Goseong granites possibly indicate that the magma generation from the same source materials occurred at a temporal interval of ca. 30 Ma.

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경상분지(慶尙盆地) 북동부(北東部) 영해(盈海)·영덕일대(盈德一帶)의 화강암질암(花崗岩質岩)의 흑운모(黑雲母)와 각섬석(角閃石)의 진화경로(進化經路) (Evolution Trends of Biotite and Hornblende in Granitic Rocks from Yonghae-Yongdok Area, Northeastern Gyeongsang Basin, Korea)

  • 이윤종;김중욱;정원우
    • 자원환경지질
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    • 제26권3호
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    • pp.349-361
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    • 1993
  • The granitic rocks in the study area are divided into the schist and gneiss complex, Yongdok pluton, Yonghae pluton and Onjong pluton by their texture, fabric and relationship to the adjacent rocks in the field, Schist and gneiss complex occurs as xenolith or roof pendant in the Yongdok, Yonghae and Onjong plutons. The Yongdok pluton occurs in association with pegmatite and aplite in many places of its pluton. In the field it is obviously clarified that the Yongdok pluton is unconformably overlay by the Cretaceous sedimentary rocks. The Yonghae and Onjong plutons are gradationally changed each other, and these plutons truncate both the Yongdok pluton and the Cretaceous sedimentary rocks. Petrographically, the Yongdok pluton consists of granodiorite and granite with minor quartz monzonite. The Yonghae pluton is composed of diorite, quartz diorite, tonalite, and granodiorite. The Onjong pluton also ranges granodiorite to granite. Both the Yongdok and Yonghae-Onjong plutons are different in the constituent minerals, such as alkali feld~par, myrmekite, mica, sphene and mafic minerals. This suggests that each pluton might have been different crystallization sequence and characteristically different gological history during the crystallization period. Iron/magnesium ratio in biotite and hornblende from both the Yongdok and Yonghae-Onjong plutons gradually decrease as the differentiation index increasing in the whole rock. The decrease of this ratio strongly depend on the increase of opaque mineral contents. From the results of chemistry in the whole rocks and some mafic minerals, it is suggest that the granite plutons of the two different geological ages would have been suffered the environment of high oxygen fugacity in the process of magmatic emplacement and during the crystallization period.

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영주저반의 부석심성암체 내에서 공간적 조성변화와 그 성인 (Spatial Compositional Variations and their Origins in the Buseok Pluton, Yeongju Batholith)

  • 황상구
    • 자원환경지질
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    • 제33권2호
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    • pp.147-163
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    • 2000
  • The Buseok pluton in the Yeongju Batholith is a comagmatic plutonic rocks which haveconcentrically compositional zoning. The lithofacies of the Buseok pluton comprise hornblende biotite tonalite in the southern part of the pluton, porphyritic and equigranular biotite granodiorite in the northern part and biotite granite in the north-central part. The compositional variations change gradually with continuity both within and between the lithofacies. The concentrically zoned pattern is relatively mafic rocks composed of high-temperature mineral assemblages in margin of the southern part, passing inward and northward gradually to more felsic rock in core of the north-central part. Changes in the textures and microstructures, as well as in the mineral content, take place between rock types of the plutons. Darker colored, generally coarse-grained, well foliated tonalite pass inward to light colored, coarse-grained, poorly foliated granodiorite, and finally give way to lighter colored, medium-grained, nearly nonfoliated granite. The foliation are best developed in the marginal part of the tonalite. Here, the regional myolitic foliation in the tonalite is steep northward and parallels to its southeastern contact with the country rock, but the magmatic foliation from disc-shaped mafic microgranitoid enclaves is subvertical and parallels the contacts with the country rock. As the tonalite approaches biotite granite in composition, the foliation is indistinct. Modal and chemical data for the pluton show quantitative compositional variation from the margin of the southern part to the core of the north-central part. Quartz and K-feldspar increase toward the core of the pluton, whereas hornblende, biotite and color index decrease. /Abundances of $SiO_2$and $K_2O$$_2$O increase toward the core according to the variation in quartz and K-feldspar, whereas those of MnO, CaO, $TiO_2$, $Fe_2O_3$, MgO and $P_2O_5$ decrease corresponding to the variation in mafic and accessaries. The compositional zonation resulted from fractional crystallization involving downward settling of earlier crystals, accompanied by upward movement of melt and volatiles, and followed by accessary marginal accretion of crystalline material in the magma to the marginal part. Although a little crustal contamination by the wall rock is recognized from the isotope data, the contamination is not only dominated over but also appropriate for forming the compositional variation in the pluton.

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상동광산 금스카른광상의 지구화학적 연구 (A Geochemical Study of Gold Skarn Deposits at the Sangdong Mine, Korea)

  • 이부경;전용원
    • 자원환경지질
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    • 제31권4호
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    • pp.277-290
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    • 1998
  • The purpose of this research is to investigate the dispersion pattern of gold during skarnization and genesis of gold mineralization in the Sangdong skarn deposits. The Sangdong scheelite orebodies are embedded in the Cambrian Pungchon Limestone and limestone interbedded in the Myobong Slate of the Cambrian age. The tungsten deposits are classified as the Hangingwall Orebody, the Main Orebody and the Footwall Orebody as their stratigraphic locations. Recently, the Sangdong granite of the Cretaceous age (85 Ma) were found by underground exploratory drillings below the orebodies. In geochemisty, the W, Mo, Bi and F concentrations in the granite are significantly higher than those in the Cretaceous granitoids in southern Korea. Highest gold contents are associated with quartz-hornblende skarn in the Main Orebody and pyroxene-hornblende skarn in the Hangingwall Orebody. Also Au contents are closely related to Bi contents. This could be inferred that Au skarns formed from solutions under reduced environment at a temperature of $270^{\circ}C$. According to the multiple regression analysis, the variation of Au contents in the Main Orebody can be explained (87.5%) by Ag, As, Bi, Sb, Pb, Cu. Judging from the mineralogical, chemical and isotope studies, the genetic model of the deposits can be suggested as follows. The primitive Sangdong magma was enriched in W, Mo, Au, Bi and volatiles (metal-carriers such as $H_2O$, $CO_2$ and F). During the upward movement of hydrothermal ore solution, the temperature was decreased, and W deposits were formed at limestone (in the Myobong Slate and Pungchon Limestone). In addition, meteoric water influx gave rise to the retrogressive alterations and maximum solubility of gold, and consequently higher grade of Au mineralization was deposited.

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부산일원에 분포하는 백악기 화산암류의 암석학적 연구(I) (Petrology of the Cretaceous volcanic rocks in Pusan ares, Korea)

  • 김진섭;윤성효
    • 암석학회지
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    • 제2권2호
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    • pp.156-166
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    • 1993
  • 부산시 남부일원에 분포하는 백악기 화산암류에 대한 화산층서 및 각 암층별 화학성분 변화 그리고 화산활동의 양상을 고찰한 결과, 본역에 분포하는 중성화산암류는 안산암질 화성쇄설암 (pyroclastic rocks)과 안산암으로 구분되며, 이들은 서로 호층을 이루며 두터운 층후의 화산암누층을 형성하는 다윤회 성층화산체의 구성물이다. 안산암류는 반정광물로 휘석(augite), 사장석 및 각섬석이 나타나며 석기는 휘석, 자철석, 각섬석, 인회석 그리고 유색광물의 변질광물인 녹니석, 녹염석, 견운모, 철광립 등으로 구성되어있다. 국부적으로 안산암질 화산암누층의 상부에는 데이사이트질 화산각력암과 유문암질 용결회류응회암(welded ash-flow tuff) 등이 분출 피복하고 있다. 선행연구(부산·가덕도폭)에서 안산암질 각력암 또는 안산암으로 기재한 화산암류들은 화학성분에 따라 구분해 보면 현무암에서 현무암질 안산암, 안산암, 데이사이트 및 유문암의 성분영역에 해당된다. 본역의 화산암류는 칼크-알칼리 계열의 성분변화를 나타내며, 본역에 가장 광범위하게 분포하는 안산암류는 조산대 안산암(Oroge-nic andesite)에 속한다.

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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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무극 함금석영맥광상 주변모암에서의 모암변질과 원소들의 일차분산 (Wallrock Alteration and Primary Dispersion of Elements in the Vicinity of the Mugeug Gold-bearing Quartz Veins)

  • 황인호;전효택
    • 자원환경지질
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    • 제27권4호
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    • pp.387-396
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    • 1994
  • Mineralogical and geochemical studies on gold-bearing quartz veins and wallrock from the Mugeug mine were carried out in order to investigate the variation of mineralogical composition and the geochemical behavior of elements with distance from the gold-bearing quartz veins. Gold-bearing quartz veins occur in early Cretaceous medium- to coarse-grained biotite granite. The unaltered wallrock is composed mainly of quartz, plagioclase, orthoclase, microcline, biotite and hornblende with accessory minerals of sphene and apatite. Mineralogical changes in altered wallrock around the gold-bearing quartz veins were observed as follows; 1) biotite and hornblende altered into chlorite, and next to sericite, 2) plagioclase, orthoclase and microcline altered into sericite, and 3) calcite and quartz introduced into wallrock. Contents of $K_2O$, Rb, Cs, Au, As and Sb in altered wallrock increase, whereas those of $Na_2O$, CaO, Ba, and Sr decrease with proximity to the gold-bearing quartz veins. The loss on ignition also increases with the increase of alteration mineral. The width of primary dispersion increases in order $Au=SiO_2<As=Cs=Rb<K_2O=Sb$ and $MnO<Na_2O=CaO=Ba<Sr$. The sericitization index, $K_2O/(K_2O+Na_2O)$, is an important indicator to interpret the degree of alteration at the Mugeug mine, which is more than 0.8 in strongly and moderately altered granite, 0.5~0.8 in wea altered granite, and less than 0.5 in unaltered granite. Alteration indices for major and trace elements, and the ratio of Rb/Sr are also useful to discriminate alteration zones.

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상동광산(上東鑛山) 지질광상(地質鑛床) 조사보고(調査報告) (Preliminary Report on the Geology of Sangdong Scheelite Mine)

  • 김옥준;박희인
    • 자원환경지질
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    • 제3권1호
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    • pp.25-34
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    • 1970
  • Very few articles are available on geologic structure and genesis of Sangdong scheelite-deposits in spite of the fact that the mine is one of the leading tungsten producer in the world. Sangdong scheelite deposits, embedded in Myobong slate of Cambrian age at the southem limb of the Hambaek syncline which strikes $N70{\sim}80^{\circ}W$ and dips $15{\sim}30^{\circ}$ northeast, comprise six parallel veins in coincide with the bedding plane of Myobong formation, namely four footwall veins, a main vein, and a hangingwall vein. Four footwall veins are discontinuous and diminish both directions in short distance and were worked at near surface in old time. Hangingwall vein is emplaced in brecciated zone in contact plane of Myobong slate and overlying Pungchon limestone bed of Cambrian age and has not been worked until recent. The main vein, presently working, continues more than 1,500 m in both strike and dip sides and has a thickness varying 3.5 to 5 m. Characteristic is the distinct zonal arrangement of the main vein along strike side which gives a clue to the genesis of the deposits. The zones symmetrically arranged in both sides from center are, in order of center to both margins, muscovite-biotite-quartz zone, biotite-hornblende-quartz zone and garnet-diopside zone. The zones grade into each other with no boundary, and minable part of the vein streches in the former two zones extending roughly 1,000 m in strike side and over 1,100 m in dip side to which mining is underway at present. The quartz in both muscovite-biotite-quartz and biotite-hornblende-quartz zones is not network type of later intrusion, but the primary constituent of the special type of rock that forms the main vein. The minable zone has been enriched several times by numerous quartz veins along post-mineral fractures in the vein which carry scheelite, molybdenite, bismuthinite, fluorite and other sulfide minerals. These quartz veins varying from few centimeter to few tens of centimeter in width are roughly parallel to the main vein although few of them are diagonal, and distributed in rich zones not beyond the vein into both walls and garnet-diopside zone. Ore grade ranges from 1.5~2.5% $WO_3$ in center zone to less than 0.5% in garnet-diopside zone at margin, biotite-hornblende-quartz zone being inbetween in garde. The grade is, in general, proportional to the content of primary quartz. Judging from regional structure in mid-central parts of South Korea, Hambaek syncline was formed by the disturbance at the end of Triassic period with which bedding thrust and accompanied feather cracks in footwall side were created in Myobong slate and brecciated zone in contact plane between Myobong slate and Pungchon limestone. These fractures acted as a pathway of hot solution from interior which was in turn differentiated in situ to form deposit of the main vein with zonal arrangement. The footwall veins were developed along feather cracks accompanied with the main thrust by intrusion of biotite-hornblende-quartz vein and the hangingwall vein in shear zone along contact plane by replacement. The main vein thus formed was enriched at later stage by hydrothermal solutions now represented by quartz veins. The main mineralization and subsequent hydrothermal enrichments had probably taken place in post-Triassic to pre-Cretaceous periods. The veins were slightly displaced by post-mineral faults which cross diagonally the vein. This hypothesis differs from those done by previous workers who postulated that the deposits were formed by pyrometasomatic to contact replacement of the intercalated thin limestone bed in Myobong slate at the end of Cretaceous period.

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고성 삼덕리유적 출토 적색마연토기의 제작 특성 연구 (Resarch on Manufacturing Technology of Red-Burnished Pottery Excavated from Samdeok-ri, Goseong, Korea)

  • 한이현;김수경;진홍주;장성윤
    • 헤리티지:역사와 과학
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    • 제53권4호
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    • pp.170-187
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    • 2020
  • 고성 삼덕리유적에서는 청동기시대 후기의 묘역식 지석묘와 석관묘가 발굴되었으며 적색마연토기, 석촉, 석검 등의 부장품이 출토되었다. 고성 삼덕리유적에서 출토된 적색마연토기는 약 50~160㎛ 두께의 안료층이 남아 있으나 대다수의 토기 표면에서 안료층의 박리, 박락현상이 관찰되었다. 적색마연토기의 태토는 중립의 석영, 장석, 각섬석 등으로 구성되어 있으며 부분적으로 철산화물의 불투명 광물도 확인되었다. 6호 석관묘에서 출토된 적색마연토기는 비짐으로 각섬석, 장석이 다량 포함되어 있어 다른 무덤에 부장된 적색마연토기와 차이를 보였다. 적색 안료는 태토와 유사한 광물 조성을 보이고 있으나 적철석(hematite)이 상당량 함유되어 있고, 미립의 석영, 장석, 각섬석 등이 관찰되었다. 광물 조성으로 볼 때 소성 온도는 900℃ 내외였을 것으로 추정된다. 삼덕리 일대 3km 이내에는 장석과 각섬석이 우세한 섬록암과 화강섬록암이 노출된 지역이 확인되므로 이 일대에서 토기 제작을 위한 원료를 채취하였을 가능성이 높다. 적색마연토기는 성형 후 안료를 물에 풀어서 토기 전면에 채색한 후 마연 기법으로 마무리한 것으로 판단된다. 태토와 안료층의 소결 상태를 고려할 때 채색 후 소성하였던 것으로 생각되며 '성형-반건조-채색-마연'의 과정을 거친 후 소성되었을 것으로 추정된다. 다만 토기에 도포하는 안료의 농도, 채색 시점과 방법에 따라 적색마연토기의 표면과 단면 상태가 다르게 나타나는 것으로 확인되었다. 대부분의 삼덕리유적 토기들은 안료층과 태토층이 뚜렷하게 구분되었으나 안료가 태토층에 스며들어가 안료와 태토가 뚜렷이 구분되지 않는 토기편도 관찰되었다. 이는 미립질의 안료가 묽은 농도로 도포되었거나 성형 직후 도포되었기 때문으로 보인다. 또한 대부분의 적색마연토기에서는 안료층의 박락과 마모현상이 관찰되었고 안료층이 일부만 잔존하는 경우도 많았다. 이는 안료를 도포하고 마연 처리한 토기에서 마모에 의한 손상이 더 쉽게 발생한다고 보고되고 있어 삼덕리유적 적색마연토기도 매장 환경에서 풍화에 의해 마모와 박락이 진행된 것으로 생각되며, 매장주체부 출토품보다 고분 외곽에 뿌려진 잔편에서 이러한 손상이 가속화되어 나타났다.

영남육괴(嶺南陸塊)에 분포(分布)하는 고기화강암질암(古期花崗巖質岩)의 지질연대(地質年代)와 성인(成因)에 대(對)한 연구(硏究) (Geochronology and Petrogenesis on the Older Granitic Rocks collected across the Ryeongnam Massif, Korea)

  • 김용준
    • 자원환경지질
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    • 제19권spc호
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    • pp.151-162
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    • 1986
  • The older granitic rocks of the study area are composed of mainly orthogneiss and foliated granite. These rocks shows mostly mortar or fiaser structure by strong mylonitization and thermal metamorphism during several orogenies. $^{40}Ar-^{39}Ar$ incremental·release ages of these rocks have been determined for 6 hornblende. 7 muscovite and 4 biotite concentrates separated from rocks collected across the Ryeongnam massif. Most $^{40}Ar-^{39}Ar$ age are discordant with Rb-Sr whole rock age of the same area. These ages range from 1998 to 172Ma. This discordant age is interpreted to indicate that samples were in contact with Daebo granite body that was characterized by large and variable $^{40}Ar-^{39}Ar$ ratios. Such ratios most likely resulted from widespread diffusion of the argon liberated from older granitic rocks during several metamorphic overprint. The general trend of the chemical composition of these rocks suggest that most of them are some series of differentiated products by fractional crystallization.

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