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우영균,이동우,Woo, Young-Kyun,Lee, Dong-Woo 한국지구과학회 2001 한국지구과학회지 Vol.22 No.6
충남 예산지구 활석광상지역에는 선캄브리아기의 유구편마암을 관입하고 쥬라기 흑운모화강암과 백악기의 산성 및 염기성 암맥의 관입을 받은 시대미상의 초염기성암체가 있다. 이 초염기성암체는 주로 사문암이고, 소량의 각섬암과 주로 사문암으로부터 형성된 활석광체를 포함한다. 이 사문암들은 사문석 반정과 layering의 발달정도에 따라 S1 ${\sim}$ S5의 5개 암석단위로 구분된다. 그러나 이들의 구성광물 및 화학조성들이 유사한 것으로 보아 사문암의 기원암은 동일마그마 기원의 감람암(dunite와 pyroxene peridotite)으로 해석된다. 사문암의 기원암인 감람암은 유구편마암이 받은 각섬암상의 광역변성작용시에 사문석화작용을 받아 사문암으로 되었고, 이 사문암으로부터의 주 활석화작용은 파쇄대를 따라 상승한 열수에 의한 열수변질작용으로 해석된다. Ultramafic rocks in the Yesan talc ore deposits area are unknown age plutonic rocks which intruded PreCambrian Yoogoo gneiss, and were intruded by Jurassic biotite granite, and Cretaceous acidic and mafic dykes. The ultramafic rocks consist mainly of serpentinite with some amphibolite and talc ore body. The serpentinites are divided 5 rock types (S1${\sim}$S5) on the basis of the developed degree of serpentine phenocrysts and layerings. It seems that the original rocks of the serpentinites were co-magmatic peridotites (dunite and pyroxene peridotite). Main serpentinization from the original rocks was occurred during amphibolite facies regional metamorphism in Choongnam area which Yoogoo gneiss was affected. Main steatitization from the serpentinites was hydrothermal alteration by ascended hydrothermal fluid through crush zones.
경남지구(慶南地區)의 스카른형(型) 광상(鑛床)의 성인(成因)과 스카른광물(鑛物)에 관(關)한 연구(硏究)
우영균,이민성,박희인,Woo, Young Kyun,Lee, Min Sung,Park, Hee-In 대한자원환경지질학회 1982 자원환경지질 Vol.15 No.1
Many skarn type iron ore deposits are distributed in Kimhae-Mulgeum area of Gyeongnam Province. Integrated field, mineralogic, geochemical and fluid inclusion studies were undertaken to illustrate the character and origin of the ores in this area. The iron ore deposits in this area are NS or NNE trending fracture filling magnetite veins which are developed in andesitic rocks near the contact with late Cretaceous micrographic granite bodies. Symmetrically zoned skarns are commonly developed in the magnetite veins of this area. Zoning of skarn from center to margin of the vein are as follows; garnet quartz skarn-epidote skarn-epidote orthoclase skarn-altered andesitic rocks. Major ore mineral is magnetite and small amount of hematite, pyrite, pyrrhotite, chalcopyrite and sphalerite are associated. Vein paragenesis reveals four depositional stages; 1) skarn stage, 2) iron sulfide and oxide stage, 3) skarn stage, 4) sulfide stage Minute halite-bearing polyphase inclusions and liquid inclusions are contained in quartz. Filling temperatures range from $257^{\circ}$ to $370^{\circ}C$.
충남(忠南) 예산지구(禮山地區) 활석광상(滑石鑛床)의 성인(成因)에 관(關)한 연구(硏究)
우영균,최석원,박기화,Woo, Young-Kyun,Choi, Suck-Won,Park, Ki-Hwa 대한자원환경지질학회 1991 자원환경지질 Vol.24 No.4
Field and microscopic evidence, XRD,EPMA and chemical data suggest that parent rock of talc ore deposits of Yesan district was originated from ultramafic igneous rock. Parent rock can be divided into serpentinized dunite, serpentinized peridotite, metagabbro, amphibolite and hornblende schist. The ore deposits are highly sheared, and show many evidences of hydrothermal alteration and metamorphism at the greenschist and albite-epidote amphibolite facies. The process of steatitization is variable depending upon the composition, and the degree of alteration and metamorphism of the parent rocks. Steatitization can be divided into two processes with or without serpentinization. The parent rocks with serpentinization are serpentinized dunite, serpentinized peridotite and metagabbro, showing the following alteration process; olivine ${\rightarrow}$ serpentine${\rightarrow}$ talc. The rocks without serpentinization are amphibolite and hornblende schist showing the following sequence; hornblende${\rightarrow}$ chlorite${\rightarrow}$ talc. Formation of talc deposits is summarized as following six stages; I) Intrusion of ultramafic rocks, 2) autometamorphism, 3) metamorphism at greenschist and albite-epidote-amphibolite facies, 4) brittle deformation, 5) hydrothermal alteration, 6) purification of low-grade talc by late dyke intrusion.