• Title/Summary/Keyword: mineralogical composition

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Mineralogical Study of Sericite in the Daehyun Mine: Formation, Chemistry and Polytype (대현광산 견운모의 생성과정과 화학조성 및 폴리타잎)

  • 이병임;김수진
    • Journal of the Mineralogical Society of Korea
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    • v.11 no.2
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    • pp.69-84
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    • 1998
  • The Daehyun sericite deposit in socheon-myun, Bongwha-gun, Kyungsangbuk-do, Korea, has been formed by the hydrothermal alteration of the Hongjesa granite of Precambrian age, leaving the muscovite granite between ore body and the Hongjesa granite as the wall rock alteration zone. The process of sericitization of granitic rock as well as chemistry and structures of sericites were studied using polarizing microscope, X-ray diffractometer (XRD), electron probe microanalyzer (EPMA) and high resolution transmission electron microscope (HRTEM). There are two genetic types of sericites having different chemistry and structure. The early sericite is of 2M1 polytype and has octahedral composition close to muscovite. It has been formed from the primary muscovite, tourmaline and quartz under a relatively high temperature. The late sericite is of 1M, 2M1 and 3T polytypes and has phengitic composition. It has been formed form feldspar, biotite, muscovite and tourmaline under a relatively low temperature. Chemical analyses show t, the early sericite has less Mg+FeT content and lower Si/AlIV ratio in tetrahedral site than the late sericite.

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The Study of the Basic Physical Properties in the Concrete Used Aggregates with the Different Mineralogical Features (골재의 암석학적 특징이 콘크리트 기본특성에 미치는 영향)

  • 엄태선;최상흘
    • Proceedings of the Korea Concrete Institute Conference
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    • 1996.10a
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    • pp.1-9
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    • 1996
  • The aggregates with the different mineralogical features are studied how to affect the basic physical properties of concretes according to the changes of the chemical composition, mineralogical composition, crystal size, the standard qualities in the aggregates in using chemical analysis, X.R.D. DT-TGA, polarized light microscope, streoscopic microscope, standard test method of aggregates & concretes. At this studies, we found that aggregates without the seathered mineral such as muscovite & kaolin mineral etc, is superior to the others with the weathered mineral, even if it's standard qualities are inferiored to the other's. For examples, in manufacturing high strength concretes. The strength of concretes used aggregates without weathered mineral are improved about 15% than the other's and also. For general mixture to manufacture remicon, more about 10-20% than the other's strength and workability.

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Environmental Control of Chemical Composition of the Secondary Hydroxyapatite from Japan

  • Kashima, Naruhiko;Tazaki, Kazue;Fyfe, W.S.
    • Journal of the speleological society of Korea
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    • no.8
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    • pp.11-18
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    • 1998
  • The mineral hydroxyapatite is very common species in secondary phosphates originating from guanos(HILL et at., 1997). Several mineralogical analyses of spelean hydroxyapatite exist(e.g., KASHIMA, 1968, 1979 ; MAKI et at., 1977 ; SUH et at., 1978 ; WANG, 1982 a, b), whereas detailedeochemical composition of secondary hydroxy apatites has not been reported in Japan.(omitted)

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Studies on Mineral Composition of Fault Clay in Quaternary Ipsil Fault: High Resolution Powder Diffraction Analysis (제4기 입실 단층 파쇄대에서 나타나는 단층점토의 산출상태에 따른 광물조성 연구: 고해상도분말회절 분석을 중심으로)

  • Park, Sung-Min;Kang, Han;Jang, Yun-Deuk;Im, Chang-Bock;Kim, Jeong-Jin
    • Journal of the Mineralogical Society of Korea
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    • v.20 no.2 s.52
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    • pp.83-89
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    • 2007
  • XRD, HRPD and SEM were used for mineralogical characterization of fault clay in fracture zone from Ipsil. Variations of color in fault clay exhibit significant mineral composition difference. Fault clays from Ipsil are composed mainly of smectite, laumontite, and quartz. Laumontite, a distinct fault clay in Ipsil fault, might be resulted from alteration of bed rock in fracture zone based on the result that no laumontite was found near fault rock. Fault clays from Ipsil are composed mainly of smectite.

Basic Study for the Recycling of Phosphogypsum (인산부생석고(燐酸副生石膏)의 재활용(再活用)을 위한 기초연구(基礎硏究))

  • Park, Woon-Kyoung;Song, Young-Jun;Lee, Jung-Mi;Lee, Gye-Seung;Kim, Youn-Che;Shin, Kang-Ho;Yoon, Sin-Ae;Park, Charn-Hoon
    • Resources Recycling
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    • v.15 no.2 s.70
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    • pp.58-68
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    • 2006
  • This study is carried out for the purpose of investigating the property of phosphogypsum, and suggesting the proper recycling system for it. The chemical composition, mineralogical composition, particle size distribution and shape of phosphogypsum were investigated. The size distribution and constitution of impurities, distribution of heavy metals are also investigated. In conclusion, the grade and yield of recoverable phosphogypsum were discussed.

Mono-layer Compositional Analysis of Surface of Mineral Grains by Time-of-Flight Secondary-Ion Mass Spectrometry (TOF-SIMS).

  • Kim, Ju-Yeong;Chryssoulis, S.;Gong, Bong-Seong
    • Proceedings of the Mineralogical Society of Korea Conference
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    • 2005.05a
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    • pp.50-57
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    • 2005
  • Although the bulk composition of materials is one of the major considerations in extractive metallurgy and environmental science, surface composition and topography (edges and dislocations are preferred sites for physicochemical reactions) control surface reactivity, and consequently play a major role in determining metallurgical phenomena and pollution by heavy metals and organics. An understanding of interaction mechanisms of different chemical species with the mineral surface in an aqueous media is very important in natural environment and metallurgical processing. X-ray photoelectron spectroscopy (XPS) has been used as an ex-situ analytical technique, but the material to be analyzed can be any size from $100{\mu}m$ up to about 1 cm. It can also measure mixed solids powders, but it is impossible to ascertain the original source of resulting x-ray signals where they were emitted from, since it radiates and scans the macro sample surface area.

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Mineralogy and Cheimical Composition of Soils with Relation to the Types of Parent Rocks in the Northern Pusan Area (부산 북부지역의 모암유형에 따른 토양의 구성광물 및 화학성분)

  • 김의선;황진연;김진섭;함세영;김재곤
    • Journal of the Mineralogical Society of Korea
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    • v.14 no.1
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    • pp.58-72
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    • 2001
  • The Cretaceous granite, andesite and sedimentary rocks are widely distributed in the northern Pusan area. The present study investigates mineralogical and geochemical charateristics of residual and cultivated soils derived from these rocks. The soils of granite area contain a large amount of quartz relative to clay minerals, whereas the soils of the andesite area contain more clay minerals than quartz. Clay minerals consist mainly of kaolin minerals illite hydroxy interlayered vermiculite interstratified mica/vermiculite and chlorite. Kaolin minerals are abundant in paddy soils while illite is abundant in less weathered soils. Si and K are major elements in the soils of granite area while Fe and Al in the soils of andesite area. In all the soils Ca, Mg and Na were generally depleted in comparison to those in parent rocks. Analysis data of trace element show that the enrichment pattern in soils depends on parent rock type with high oncentration of some elements over 100 ppm: Ba and Rb in granite area Zn, Bn, and V in andesite area, and Ba and V in sedimentary rock. In granite area, Rb and Th were greatly enriched in soil than in parent rocks. However, Cr, Ni and Sr commonly decrease, whereas Pb increases in all the soils. Exchangeable cation capacity(CEC) is relatively high in the soils of andesite are including abundant clay minerals. Collective evidences prove that the mineralogical and chemical compositions of soils are strongly dependent on the parent rock type. The mineralogy and chemistry of long cultivated soils are not significantly different from those of residual soils.

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Behavior of Pt, Sb, Te during Crystallizaion of Ore Magma (I) (광화마그마내에서의 백금, 안티모니, 테루리움 거동에 관한 연구(I))

  • 김원사
    • Journal of the Mineralogical Society of Korea
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    • v.9 no.2
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    • pp.93-101
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    • 1996
  • Behavior of platinum group elements during crystallization within ore magma is of interest. In this study platinum is selected and its mineralogical and geochemical behavior in the presence of antimony and tellurium is investigated at 600$^{\circ}C$. High purity Pt, Sb, and Te are used as starting material and silica quartz tubings are as container. Rection products have been examined by use of ore microscope, X-ray diffractometer, electron microprobe analyser and micro-indentation hardness tester. stable phases at 600$^{\circ}C$ are platinum (Pt), Pt5Sb, Pt3Sb, PtSb, stumpflite (PtSb), geversite (PtSb), PtTe, Pt3Te4, Pt2Te3, moncheite (PtTe2), tellurantimony (Sb2Te3), and antimony (Sb). Geversite is the mineral showing the most significant extent of solid solution by up to 27 at% between Sb and Te elements. Isothermal section of 600$^{\circ}C$ is established in this study. It is noted that platinum cannot coexists with stumpflite or geversite under equilibrium condition, and stumpflite composition in equilibrium with geversite may be used as geothermometer.

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Applied-mineralogical Study on the Mineral Facies and Characteristics of Domestic High-Ca Limestone (국내산 고품위 석회석의 광물상 및 광물특성에 관한 응용광물학적 연구)

  • Noh Jin Hwan;Oh Sung Jin;Kim Kyong Jin
    • Journal of the Mineralogical Society of Korea
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    • v.17 no.4
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    • pp.339-355
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    • 2004
  • Locality of domestic high-Ca limestones can be divided into three districts, i.e., (1) the Jecheon-Danyang area, (2) the Samcheok-Taebaek-Jungsun area, and (3) the Uljin-Andong area, in accordance with their geologic background and type of the deposits. Except for some crystalline limestones from the Jecheon-Danyang area, domestic high-Ca limestones were mostly recrystallized and Ca-enriched by the effects of hydrothermal alteration and/or thermal metamorphism. The lime-stones can be also divided into crystalline limestone type, marble type, micro- and mega-crystalline calcite types on the basis of their composition, crystallinity, and mineral facies. An applied-mineralogical characterization of the high-Ca limestones was done through the systematic analyses and tests for the limestones. The high-Ca limestones from the area (1), which are megascopic ally close to the original limestone in lithology, display lower whiteness, higher contents of CaO (51 ~ 54 wt.%), low crystallinity, and fine-grained texture. Two typical hydrothermal types of the high-Ca limestones from the area (2), i.e., micro- (mostly 0.2~0.3 mm) and mega-crystalline (2~15 em) calcite types, have comparatively higher whiteness and rather variable CaO contents (50~55 wt.%) with exhibiting quite different crystallinity each other. The micro-crystalline calcite type is especially dominant in this area, and has comparatively uniform crystallinity and homogeneous composition. Compared to these limestones, the high-Ca limestones from the area (3) show remarkable differences in grade and quality according to their types of deposit and occurrence. Based on these mineral characters and chemical composition, a possible scheme for industrial uses of the domestic high-Ca limestones was suggested.

Physical and Mineralogical Properties of Pottery-Making Soils in Korea (국내 도자기용 태토의 토질 및 광물 특성)

  • Kim, Hak Joon;Lee, Yong Cheon;Lee, Yu Jin;Lee, Ho Jeong;Jeong, Chan Ho
    • The Journal of Engineering Geology
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    • v.32 no.4
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    • pp.685-696
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    • 2022
  • Although the use of pottery-making soils has a long history, its use in the pottery industry requires that physical and geotechnical properties of the materials be established to define the suitability for various purposes. The main purpose of this study is to identify the different types of clays and mineral composition and to perform the geotechnical evaluation of the clays for making pottery products. Soils investigated in this study include raw materials used for making Baekja (white porcelains), Chungja (celadons), Buncheong, Sancheong, and Johyung. Pottery-making soils are manufactured by using different types of soils and sold by individual ceramic clay company. This study includes physical tests of soil and chemical analysis of major elements using XRF and XRD instrumentation. Grain size distributions, mineralogical composition, and a range of plasticities of soils for making different types of potteries are presented. Correlations between specific type of pottery clays and geotechnical and mineralogical characteristics are determined by comparing the test results. Since quantitative research using laboratory tests for pottery-making soils are rarely performed in Korea, further research should be done in the future to improve the Korean pottery industry.