• Title/Summary/Keyword: 산출광물

Search Result 635, Processing Time 0.034 seconds

Microsutructures of Carnonaceous Materials within Illite of the Daedong Group Slate from Jeongok Area, Korea (전곡지역 대동층군 점판암의 일랑트내에 협재된 탄질물의 미세구조)

  • 안중호;조문섭
    • Journal of the Mineralogical Society of Korea
    • /
    • v.13 no.1
    • /
    • pp.15-21
    • /
    • 2000
  • 이 연구에서는 대동층군 탄질 점판암내에 산출하는 탄질물의 미세구조를 고분해능 투과전자현미경(HRTEM)을 이용하여 조사하였다. 관찰된 탄질물은 구조가 부분적으로 흑연화된 흑연화과정의 초기단계 물질로서$ 100\AA$ 이하의 매우 얇은 크기로 일라이트 결정들의 경계면 사이나 일라이트 결정내에 협재되어 나타난다. 탄질물의 층상구조는 휘어있거나 불연속적이며, 부분적으로 원형조직을 보이는 "지문" 조직을 이루고 있다. 이러한 특징은 많은 결함구조를 가지고 구조적으로 충분히 흑연화되지 않은 물질에서 볼 수 있는 전형적인 구조다. 미세한 규모로 협재된 조직을 보이는 탄질물은 퇴적물의 속성작용과 저변성작용시 일라이트가 성장하는 동안에 포획되었거나, 또는 일라이트 이전의 점토광물내에 흡착되었던 물질들로부터 유래된 것으로 보인다. 이처럼 탄질물과 일라이트가 미세한 규모로 협재되어 산출하는 특징은 저변성암에서 일어나는 흑연화작용시 복잡한 미세구조의 변화가 수반되었음을 지시한다. 다양한 미세구조를 보여주는 흑연질 물질의 산출은 탄질물이 고온에서 균질한 흑연으로 생성되기까지 불연속적인 단계를 거쳐 반응할 가능성을 지시한다. 끝으로, 이 연구는 이온 빔을 이용하여 제작한 시료를 관찰함으로써 암석내에 함유된 탄질물들의 조직을 훼손하지 않고 관찰할 수 있음을 보여준다.

  • PDF

Controls on Diagenetic Mineralogy of Sandstones and Mudrocks from the Lower Hayang Group (Cretaceous) in the Daegu Area, Korea (대구 부근 하부 하양층군(백악기) 사암과 이암의 속성 광물과 속성 작용의 규제 요인)

  • Shin, Young-Sik;Choo, Chang-Oh;Lee, Yoon-Jong;Lee, Yong-Tae;Koh, In-Seok
    • Journal of the Korean earth science society
    • /
    • v.23 no.7
    • /
    • pp.575-586
    • /
    • 2002
  • Authigenic minerals found in sandstones and mudrocks of the Lower Hayang Group (Cretaceous) in the central part of the Kyungsang Basin are carbonate minerals (calcite, dolomite), clay minerals (illite, chlorite, C/S, I/S and kaolinite), albite, quartz and hematite. Characteristic diagenetic mineral assemblages are as follows: albite-chlorite (including C/S)-hematite in the Chilgog Formation, albite-illite-calcite in the Silla Conglomerate, illite-chlorite-hematite in the Haman Formation and albite-chlorite-dolomite in the Panyawol Formation, respectively. Among clay minerals reflecting the physical and chemical change of the diagenetic process, illite, the dominant clay mineral, occurs in every formation in the study area. Chlorite occurs mainly in green or gray sandstones and mudrocks, or in sandstones and mudrocks of the Chilogok Formation which contains a high content of volcanic materials. Based on the mineral assemblage, diagenetic minerals are strongly related with source rocks. Judging from the illite crystallinity, diagenesis of sandstones and mudrocks in the study area reached the late diagenetic stage or low grade metamorphisim. The diagenetic process was much influenced by intrusion of the Bulguksa granite, content of organic materials, grain size, and depositional environment rather than burial depth.

Mineralogical Characteristics and Genetic Environment of Zeolitic Bentonite in Yeongil Area (영일 지역 제올라이트질 벤토나이트의 광물특성 및 생성환경)

  • 노진환;고상모
    • Journal of the Mineralogical Society of Korea
    • /
    • v.17 no.2
    • /
    • pp.135-145
    • /
    • 2004
  • A zeolitic bentonite, which exhibits whitish appearance and contains considerable amounts (nearly 〉 5%) of zeolites, frequently occurs as thin beds less than 1 m in Yeongil area. The bentonites are mostly found in closely association with zeolite beds in the Nuldaeri Tuff and Coal-bearing formations of the Janggi Croup. A discordant occurrence of the bentonite against the bedding plane is also locally found. Montmorillonite, the major mineral constituent of the bentonite, is mostly associated with clinoptilolite as a zeolite. However, instead of clinoptilolite, mordenite is sometimes included in the case of more silicic bentonite, and heulandite in the less silicic one. It is characteristic that the mordenite is accompanied by lots of opal-CT in the silicic bentonite. SEM observations characteristically indicate that these authigenic phases, especially the montmorillonite and zeolite, nearly coexist as mixtures not forming a fine-scale zoning. The zeolitic bentonite seems to be formed in the comparatively silicic pore fluid at the alkaline condition accompanying pH fluctuation Compared to the zeolite-free normal bentonite, the zeolitic types exhibit somewhat higher REE abundance. These chemical characteristics, together with modes of occurrences and authigenic mineral associations, may suggest that the zeolitic bentonite is not merely diagenetic products and a possible hydrothermal alteration could not be excluded in the bentonite genesis.

Mineralogical Characteristics of Tosudites from the Sungsan and Bubsoo Mines, Korea (성산광산과 법수광산에서 산출되는 토수다이트의 광물학적 특성)

  • Cho, Hyen-Goo;Kim, Won-Sa
    • Journal of the Mineralogical Society of Korea
    • /
    • v.6 no.1
    • /
    • pp.17-26
    • /
    • 1993
  • Mineralogical characteristics of tosudite from the Sungsan and Bubson mines were studied and correlated using X-ray diffraction analysis, chemical analysis and electron microscopy. Tosudite occurs as an alteration product of Cretaceous volcanoclastic rocks in both mines. It is associated with microcrystalline quartz, dickite, illite/smectite or mica/smectite mixed-layer mineral. It forms cryptocrystalline aggregates with flaky habit. XRD analysis suggests that tosudite is an 1:1regularly interstratified dioctahedral smetite/dioctahedral chlorite. Bubsoo tosudite has more(00ℓ ) reflections and more periodice stacking sequence than Syngsan tosudite. Chemical analysis shows that tosudite is a Li-bearing aluminous 1:1 regularly interstrattified mineral composed of K-bedellite and donbassite. Cookeite component may be present in the chlorite layer. Bubsoo tosudite is more Al in tetrahedral site and Ca in interlayer, but less Al in octahedral site than Sugsan tosudite. Tosudite may be formed as the intermediate alteration products, forming after muscovite and before illite/smectite or mica/s$^{\circ}C$mectite, with the range from 100 $^{\circ}C$ to 360 ~ 480 $^{\circ}C$. The hydrothermal solution forming tosudite may be acidic solution with high activities of Si and Al.

  • PDF

Occurence of Ilmenite on the Ti-bearing Ore Bodies in Bukcheon, Hadong Area (하동군 북천면 지역 함티타늄광체 내 티탄철석의 산출특성)

  • Kwak, Ji Young;Choi, Jin Beom
    • Journal of the Mineralogical Society of Korea
    • /
    • v.27 no.4
    • /
    • pp.197-205
    • /
    • 2014
  • Study area (Jikjeon-ri) is located in south end of the Hadong anorthositic rocks. And along the south-western boundary, diorite intruded the Hadong anorthosite. Ilmenite ore bodies are extended in both anorthosite and diorite. And their occurrence in the diorite are not studied yet. While no particular textures are found in the ilmenite within the anorthosite, the ilmenite within the diorite shows characteristic exsolution texture, that is, ilmenite phases are separated into rutile and Fe-oxide and the ilmenite and Fe-oxide. MnO composition in ilmenite ratios are 2.14~3.74wt%, it has higher composition in diorite than that in anorthosite. The plagioclase composition display andesine ($An_{28.7-42.9}$) in the diorite and labradorite ($An_{57.1-72.8}$) in the anorthosite in composition. The exsolution of ilmenite has been developed during the cooling of partly melted ilmenite into rutile and Fe-oxides which is related to the intrusion of the diorite.

Geological Review on the Distribution and Source of Uraniferous Grounwater in South Korea (국내 고함량 우라늄 지하수의 분포와 기원에 관한 지질학적 고찰)

  • Hwang, Jeong
    • The Journal of Engineering Geology
    • /
    • v.28 no.4
    • /
    • pp.593-603
    • /
    • 2018
  • The most of groundwater with high U-concentration occur in the Jurassic granite of Gyeonggi massif and Ogcheon belt, and some of them occur in the Cretaceous granite of Ogcheon belt. On the contrary, they do not occur in the Jurassic granite of Yeongnam massif and the Cretaceou granite of Gyeongsang basin. The Jurassic and Cretacous granite, the host rock of high U-groundwater, were resulted from parental magma with high ratio of crustal material and highly differentiated product of fractional crystalization. These petrogenetic characteristics explain the geological evidence for preferential distribution of uraniferous groundwater in each host rock. It were reported recently that high U-content, low Th/U ratio and soluble mineral occurrence of uraninite in the two-mica granite of Daejeon area which have characteristics of S-type peraluminous and highly differntiated product. It is the mineralogical-geochemical evidences supporting the fact that the two-mica granite is the effective source of uranium in groundwater. The biotite granite and two-mica granite of Jurassic age were reported as biotite granite in many geological map even though two-mica granite occur locally. This fact suggest that the influence of two-mica granite can not be ignored in uraniferous groundwater hosted by biotite granite.