• 제목/요약/키워드: minerals and rocks

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고등학생들의 광물과 암석에 대한 흥미도 (High School Students' Interest on Minerals and Rocks)

  • 최준경;위수민
    • 한국지구과학회지
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    • 제23권8호
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    • pp.625-631
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    • 2002
  • 이 연구는 광물과 암석에 대해 고등학생들이 얼마나 흥미를 가지고 있는지를 조사 ${\cdot}$ 분석하여 광물 및 암석 단원의 학습에 시사점을 얻는데 그 목적이 있다. 이를 위해 서울, 경기, 충북 및 제주 지역의 인문계 고등학교 3학년생 783명(남학생: 429명, 여학생: 354명)을 연구 대상으로 선정하였다. 광물과 암석에 대한 학생들의 관심과 호기심 정도의 조사 결과, 우리 주변에 있는 광물이나 암석에 대한 관심과 관련하여 많은 학생들이 흥미가 다소 부족한 것으로 나타났다. 또한 이 단원에 대해 전체적으로 여학생들이 남학생보다 더 긍정적인 반응을 보여 여학생들이 남학생 보다 더 흥미를 가지고 있는 것으로 나타났다.

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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변성암의 분광특성 (Spectral Characteristics Visible and Near-infrared of Metamorphic Rocks)

  • 조민조;강필종;이봉주
    • 대한원격탐사학회지
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    • 제8권1호
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    • pp.1-13
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    • 1992
  • The study is to analize the spectral characteristics of metamorphic rocks by their spectral reflectance curves obtained from CARY 17-D Spectrophotometer. Coarse grained rocks generally show strong absorption at 1.4 and 1.9 $\mu\textrm{m}$ due to preserved water inclusion in quartz of feldspar. The basic rocks show a broad absorption due to Fe$^{++}$ ion rich in mafic minerals. Strong absorption near 2.0$^+\mu\textrm{m}$ suggests existence of carbonate or clay minerals.

한반도 서해안 변산-태안지역 연안 퇴적물과 육상지질과의 지화학적 상관관계 (Geochemical Relationship Between Shore Sediments and Near Terrestrial geology in Byunsan-Taean Area, West Coast of Korea)

  • 서경원;지정만;장윤호
    • 자원환경지질
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    • 제31권1호
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    • pp.69-84
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    • 1998
  • A geochemical study was carried out to define how marine shore sediments are related to their terrestrial source rocks in the region of Taean and Byunsan Peninsula, western Korea. The lithology of the coastal part of the study area is composed of Pre-Cambrian granite gneiss, schist, Jurassic terrestrial sedimentary rocks, and Cretaceous plutonic intrusives. Shore sediments are transported from three drainage tributaries. The sediments consist of quatrz with clay minerals, such as illite, kaolinite, smectite, chlorite. Heavy minerals include hematite, ilmenite, rare amount of zircon and apatite. Compared to those in coastal rocks, amount of heavy minerals in the sediments is considerably low. The low content of heavy minerals is thought to be attributed to the heavy mineral detainment in the river beds and influences of tidal currents which cause heavy minerals to accumulate in specific spots. Chemical composition of the major and trace elements, trace elements, and REE chondrite normalized pattern suggest that shore sediments transported from the corresponding drainage tributary show close mineralogical and geochemical relationships with the source rocks distributed in the Taean and Byunsan Peninsula.

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

  • 김의선;황진연;김진섭;함세영;김재곤
    • 한국광물학회지
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    • 제14권1호
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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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Analysis and Comparison of Rock Spectroscopic Information Using Drone-Based Hyperspectral Sensor

  • Lee, So-Jin;Jeong, Gyo-Cheol;Kim, Jong-Tae
    • 지질공학
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    • 제31권4호
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    • pp.479-492
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    • 2021
  • We conducted a fundamental study on geological and rock detection via drone-based hyperspectral imaging on various types of small rock samples and interpreted the obtained information to compare and classify rocks. Further, we performed hyperspectral imaging on ten rocks, and compared the peak data value and reflectance of rocks. Results showed a difference in the reflectance and data value of the rocks, indicating that the rock colors and minerals vary or the reflectance is different owing to the luster of the surface. Among the rocks, limestone used for hyperspectral imaging is grayish white, inverted rock contains various sizes and colors in the dark red matrix, and granite comprises colorless minerals, such as white, black, gray, and colored minerals, resulting in a difference in reflectance. The reflectance of the visible ray range in ten rocks was 16.00~85.78%, in the near infrared ray range, the average reflectance was 23.94~86.43%, the lowest in basalt and highest in marble in both cases. This is because of the pores in basalt, which caused the difference in reflectance.

화성암과 퇴적암의 분광특성분석 (Spectral Analysis of Igneous and Sedimentary Rocks)

  • 강필종;조민조;이봉주
    • 대한원격탐사학회지
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    • 제6권1호
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    • pp.49-62
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    • 1990
  • The study is aimed to analize the spectral characteristics of igneous and sedimentary rocks in their reflectance curves obtained from CARY 17-D Spectrophotometer, and correlation between chemical complsition and HHRR data. The reflectance is higher in acidic igneous rocks, while lower in basic igneous rocks. Especially acidic plutonic rocks show sharp absorption bands at 1.4 and 1.9 $\mu\textrm{m}$ due to water inclusion in felsic minerals and basic rocks a broad absoption band near 1.mu.m due to Fe$^{++}$ ion in mafic minerals. Sandstones generally have higher reflectance than siltstones and shales, and show strong absorption at 1.4 and 1.9 $\mu\textrm{m}$. Arkosic sandstones have lower reflectance at blue band due to Fe$^{+++}$ ion exsolved from feldspars. The HHRR data have a positive correlation with SiO$_2$ and $K_2$O, while they have a negative correlation with FeO and MgO.

Assessing the effects of mineral content and porosity on ultrasonic wave velocity

  • Fereidooni, Davood
    • Geomechanics and Engineering
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    • 제14권4호
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    • pp.399-406
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    • 2018
  • The influences of mineral content and porosity on ultrasonic wave velocity were assessed for ten hornfelsic rocks collected from southern and western parts of the city of Hamedan, western Iran. Selected rock samples were subjected to mineralogical, physical, and index laboratory tests. The tested rocks contain quartz, feldspar, biotite, muscovite, garnet, sillimanite, kyanite, staurolite, graphite and other fine grained cryptocrystalline matrix materials. The values of dry unit weight of the rocks were high, but the values of porosity and water absorption were low. In the rocks, the values of dry unit weight are related to the presence of dense minerals such as garnet so not affected by porosity. The statistical relationships between mineral content, porosity and ultrasonic wave velocity indicated that the porosity is the most important factor influencing ultrasonic wave velocity of the studied rocks. The values of P-wave velocity of the rocks range from moderate to very high. Empirical equations, relevant to different parameters of the rocks, were proposed to determine the rocks' essential characteristics such as primary and secondary wave velocities. Quality indexes (IQ) of the studied samples were determined based on P-wave velocities of them and their composing minerals and the samples were classified as non-fissured to moderately fissured rocks. Also, all tested samples are classified as slightly fissured rocks according to the ratio of S-wave to P-wave velocities.

황사와 몽골 남부 기반암의 광물학적 비교 (Mineralogical Comparison between Asian Dust and Bedrock in Southern Mongolia)

  • 정기영
    • 광물과 암석
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    • 제35권4호
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    • pp.397-407
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    • 2022
  • 황사 구성 광물의 지질학적 근원을 추적하기 위해, 발원지인 몽골 남부 고비사막 기반암의 광물학적 특성을 분석하였다. 황사 발원지 기반암은 고생대 화산암 및 화산쇄설성 퇴적암, 고생대 화강암류, 중생대 퇴적암으로 구성되어 있다. 고생대 화산암 및 퇴적암은 매우 치밀하게 고화 및 변형되어 산지를 형성하며, 중생대 백악기 퇴적암은 고생대 화산암 및 퇴적암으로 이루어진 산맥 사이의 분지를 충전한다. 고생대층 암석은 녹니석과 사장석 함량이 높고, 녹색편암상의 변성작용을 받았다. 중생대 퇴적암층은 녹니석이 드물고, 스멕타이트, 일라이트-스멕타이트 혼합층, 카올리나이트 등의 점토광물이 풍부하다. 고생대 화강암류에는 각섬석과 흑운모가 특징적으로 함유되어 있다. 발원지 기반암의 광물학적 특성과 비교하면, 황사는 고생대층과 중생대층 기원 쇄설물의 혼합물이나, 중생대 퇴적암에 더 가깝다. 점토 함량이 높고, 덜 고화된 중생대 퇴적암류는 잘 부스러져 침식되기 쉬운 실트질 표토가 되어 황사 광물 구성에 기여한다.

주기적으로 침수되는 퇴적암의 풍화특성 (Weathering Characteristics of Sedimentary Rocks Affected by Periodical Submerging)

  • 이석훈;김수진
    • 한국광물학회지
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    • 제17권1호
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    • pp.23-35
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    • 2004
  • 울산시 사연댐 상류에 위치하여 주기적으로 침수되는 퇴적암의 풍화특징을 연구하였다. 현장조사, 전자현미분석기, Χ-선 회절분석기 및 Χ-선 형광분석기를 이용하여 암석의 풍화조직 및 광물의 조성변화 조사를 통해 주기적으로 침수되는 암석의 기계적 및 화학적 풍화양상을 연구하였다. 수장암석의 풍화작용은 퇴적층리와 수직방향으로 발달한 파쇄대 및 균열과 박리현상과 같은 기계적 풍화작용이 현저하다. 이러한 물리적인 풍화현상은 물과 암석과의 접촉면적을 넓혀 화학적 풍화작용을 가속화시킨 결과 풍화대와 약풍화대에서 석영을 제외한 거의 모든 광물이 용해작용 또는 변질작용을 받았으며, 특히, 탄산염광물의 용해작용이 현저하여 약풍화대에서 조차 방해석이 완전히 용해되어 빈 공간으로 남아있다. 그러나 점토광물과 같은 이차광물의 형성은 미약한 특징을 보인다. 이 지역의 암석은 일정기간 동안 물에 잠긴 상태로 유지되고, 동결과 해빙이 반복됨으로써 물리적 풍화작용이 상대적으로 빠르게 진행되어 물의 침투가 용이한 투수성 구조를 형성하였고, 그 결과 탄산염광물의 용해작용이 급속하게 일어났다. 자유로운 물의 순환으로 인하여 용해된 원소들이 점토광물과 같은 풍화광물로 침전되지 않고 용탈됨으로써 암석조직이 이완되어 풍화작용이 가속되었다. 퇴적암중 풍화에 극히 약한 탄산염광물의 높은 함량이 강한 화학적 풍화작용의 주 요인으로 보인다.