• 제목/요약/키워드: BaO3-PbO3

검색결과 223건 처리시간 0.03초

대봉 금-은광상의 모암변질과 원소분산 특성 연구 (Element Dispersion and Wall-rock Alteration from Daebong Gold-silver Deposit, Republic of Korea)

  • 유봉철;지세정;이길재;이종길;이현구
    • 자원환경지질
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    • 제40권6호
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    • pp.713-726
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    • 2007
  • 대봉광상은 선캠브리아기 경기육괴의 호상편마암 또는 화강편마암내에 발달된 단층($N10{\sim}20^{\circ}W,\;40{\sim}60^{\circ}SW$)을 따라 충진한 중열수 함금-은 괴상 석영맥광상이다. 이 광상의 광화작용은 여러번의 단열작용에 의해 형성된 괴상 백색 석영맥(광화I시기)과 투명 석영맥(광화II시기)으로 구성된다. 광화I시기의 열수작용에 의한 변질작용은 견운모화, 녹니석화, 탄산염화, 황철석화, 규화 및 점토화작용 등이 관찰되며, 견운모대는 석영맥과 접촉한 부분에서, 녹니석대는 석영맥으로부터 멀어짐에 따라 관찰된다. 견운모대의 모암변질광물은 대부분이 견운모 및 석영이며, 일부 일라이트, 탄산염광물, 녹염석으로 구성된다. 녹니석대의 모암변질광물은 주로 녹니석, 석영과 소량 견운모, 탄산염광물 및 녹염석으로 구성된다. 견운모의 Fe/(Fe+Mg) 값은 $0.36{\sim}0.59(0.51{\pm}0.10)$이며, 백운모-페차이트족에 해당되고 녹니석의 Fe/(Fe+Mg) 값은 $0.66{\sim}0.73(0.70{\pm}0.02)$이고 대부분 브룬스비자이트에 해당된다. 견운모와 녹니석에 대한 $Al_{IV}-Fe/(Fe+Mg)$의 다이어그램은 변질 시 같은 광종의 견운모와 녹니석의 형성온도를 나타내는 지시자로서 유용하다. 이것은 계산된 녹니석 단종의 활동도가 $a3(Fe_5Al_2Si_3O_{10}(OH){_6}:0.00964{\sim}0.0291,\;a2(Mg_5Al_2Si_3O_{10}(OH){_6}:9.99E-07{\sim}1.87E-05,\;a1(Mg_6Si_4O_{10}(OH){_6}:5.61E-07{\sim}1.79E-05$로서 대봉광상의 녹니석은 철이 풍부한 녹니석으로 비교적 고온($T>450^{\circ}C$)에서 모암과 평형상태에서 온도가 감소함에 따라 형성되었음을 알 수 있다. 모암변질시 $log\;{\alpha}K^+/{\alpha}H^+,\;log\;{\alpha}Na^+/{\alpha}H^+,\;log\;{\alpha}Ca^{2+}/{\alpha}^2H^+$ 값은 각각 $4.6(400^{\circ}C),\;4.1(350^{\circ}C),\;4.0(400^{\circ}C),\;4.2(350^{\circ}C),\;1.8(400^{\circ}C),\;4.5(350^{\circ}C)$이고 pH는 각각 $5.4{\sim}6.5(400^{\circ}C),\;5.1{\sim}5.5(350^{\circ}C)$로서 모암변질시 열수용액은 약산성이었음을 알 수 있다. 모암변질시 이득원소(부화원소)는 $K_2O,\;P_2O_5,\;Na2O$, Ba, Sr Cr, Sc, V, Pb, Zn, Be, Ag, As, Ta, Sb이며 특히 Sr, V, Pb, Zn, As, Sb등의 원소는 현저하게 증가하므로 중열수 및 천열수 금-은광상의 탐사에 지시원소로서 활용될 수 있을 것이다.

충남탄전, 대동누층군의 셰일과 탄질암에 관한 암석화학 및 환경지구화학적 특성 (Petrochemistry and Environmental Geochemistry of Shale and Coal from the Daedong Supergroup, Chungnam Coal Field, Korea)

  • 이찬희;이현구;김경웅
    • 자원환경지질
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    • 제30권5호
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    • pp.417-431
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    • 1997
  • Characteristics of sedimentary rocks and enrichment of toxic elements in shale and coal from the Chungnam coal field were investigated based upon geochemistry of major, trace and rare earth elements. Shale and coal of the area are interbedded along the Traissic to the Jurassic Daedong Supergroup, which can be subdivided into grey shale, black shale and coal. The coal had been mined, however all the mines are abandonded due to the economic problems. The shale and coal are characterized by relatively low contents of $SiO_2$, and $Al_2O_3$ and high levels of loss-on-ignition (LOI), CaO and $Na_2O$ in comparison with the North American Shale Composite (NASC). Light rare earth elements (La, Ce, Yb and Lu) are highly enriched with the coal. Ratios of $Al_2O_3/Na_2O$ and $K_2O/Na_2O$ in shale and coal range from 30.0 to 351.8 and from 4.2 to 106.8, which have partly negative correlations against $SiO_2/Al_2O_3$ (1.24 to 6.06), respectively. Those are suggested that controls of mineral compositions in shale and coal can be due to substitution and migration of those elements by diagenesis and metamorphism. Shale and coal of the area may be deposited in terrestrial basin deduced from high C/S (39 to 895) and variable composition of organic carbon (0.39 to 18.40 wt.%) and low contents of reduced sulfur (0.01 to 0.05 wt.%). These shale and coal were originated from the high grade metamorphic and/or igneous rocks, and the rare earth elements of those rocks are slightly influenced with diagenesis and metamorphism on the basis of $Al_2O_3$ versus La, La against Ce, Zr versus Yb, the ratios of La/Ce (0.38 to 0.85) and Th/U (3.6 to 14.6). Characteristics of trace and rare earth elements as Co/Th (0.07 to 0.86), La/Sc (0.31 to 11.05), Se/Th (0.28 to 1.06), V/Ni (1.14 to 3.97), Cr/V (1.4 to 28.3), Ni/Co (2.12 to 8.00) and Zr/Hf (22.6~45.1) in the shale and coal argue for inefficient mixing of the simple source lithologies during sedimentation. These rocks also show much variation in $La_N/Yb_N$ (1.36 to 21.68), Th/Yb (3.5 to 20.0) and La/Th (0.31 to 7.89), and their origin is explained by derivation from a mixture of mainly acidic igneous and metamorphic rocks. Average concentrations in the shale and coal are As=7.2 and 7.5, Ba=913 and 974, Cr=500 and 145, Cu=20 and 26, Ni=38 and 35, Pb=30 and 36, and Zn=77 and 92 ppm, respectively, which are similar to those in the NASC. Average enrichment indices for major elements in the shale (0.79) and coal (0.77) are lower than those in the NASC. In addition, average enrichment index for rare earth elements in coal (2.39) is enriched rather than the shale (1.55). On the basis of the NASC, concentrations of minor and/or environmental toxic elements in the shale and coal were depleted of all the elements examined, excepting Cr, Pb, Rb and Th. Average enrichment indices of trace and/or potentially toxic elements (As, Cr, Cu, Ni, Pb, U and Zn) are 1.23 to 1.24 for shale and 1.06 to 1.22 for coal, respectively.

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단결정 Y1.5Ba2Cu3O7-y 벌크 초전도체의 냉각효율에 대한 인공 구멍의 효과 (Effects of artificial holes on the cooling efficiency of single grain Y1.5Ba2Cu3O7-y bulk superconductors)

  • 김광모;박순동;전병혁;고태국;김찬중
    • 한국초전도ㆍ저온공학회논문지
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    • 제14권3호
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    • pp.1-4
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    • 2012
  • Effects of artificial holes on the cooling efficiency of single grain YBCO bulk superconductors were studied. Single grain YBCO bulk superconductors without artificial holes, with six 2.4 mm holes and six holes filled with Bi-Pb-Cd-Sn metal solder were fabricated by a top-seeded melt growth process for powder compacts with/without holes. Simulation for the cooling rate to a liquid nitrogen temperature (77 K) of YBCO samples was carried out using a finite element method (FEM) and the results are compared with the actual cooling rates of samples in liquid nitrogen. The simulated cooling times for the YBCO sample without holes, with six holes and with six holes filled with the metal solder were 80, 47 and 75 sec. respectively, which are similar to the actual cooling times of 84, 52 and 78 sec. estimated for the same samples cooled in liquid nitrogen. The shorter cooling time of the sample with artificial holes are attributed to the increased surface areas associated with the presence of artificial holes. The metal filling into the holes did not give any remarkable effect on the cooling efficiency.

실리콘 혼합 차폐체의 개발과 성능비교 (Development and Performance Comparison of Silicon Mixed Shielding Material)

  • 정회원;민정환
    • 대한방사선기술학회지:방사선기술과학
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    • 제46권3호
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    • pp.187-195
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    • 2023
  • A shield was made by mixing materials such as bismuth(Bi) and barium(Ba) with silicon to evaluate its shielding ability. Bismuth was made into a shield by mixing a bismuth oxide(Bi2O3) colloidal solution and a silicon base and applied to a fibrous fabric, and barium was made by mixing lead oxide(PbO) and barium sulfate(BaSO4) with a silicon curing agent and solidifying it to make a shield. The test was conducted according to the lead equivalent test method for X-ray protective products of the Korean Industrial Standard. The experiment was conducted by increasing the shielding body one by one from the test condition of 60 kVp, 200 mA, 0.1sec and 100 kVp, 200 mA, 0.1 sec. At 60 kVp, 2 lead oxide-barium sulfate shields, 2 bismuth oxide 1.5 mm shields, and 5 bismuth oxide 0.3 mm shields showed shielding ability equal to or higher than that of lead 0.5 mm. At 100 kVp, 2 lead oxide-barium sulfate shields and 2 bismuth oxide 1.5 mm shields showed shielding ability equal to or higher than that of lead 0.5 mm. It was confirmed that when using 2 pieces of lead oxide-barium sulfate and 1.5 mm of bismuth oxide, respectively, it has shielding ability equivalent to that of lead. Bismuth oxide and lead oxide-barium sulfate are lightweight and have excellent shielding ability, thus they have excellent properties to be used as an apron for radiation protection or other shielding materials.

Lead-free inorganic metal perovskites beyond photovoltaics: Photon, charged particles and neutron shielding applications

  • Srilakshmi Prabhu;Dhanya Y. Bharadwaj;S.G. Bubbly;S.B. Gudennavar
    • Nuclear Engineering and Technology
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    • 제55권3호
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    • pp.1061-1070
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    • 2023
  • Over the last few years, lead-free inorganic metal perovskites have gained impressive ground in empowering satellites in space exploration owing to their material stability and performance evolution under extreme space environments. The present work has examined the versatility of eight such perovskites as space radiation shielding materials by computing their photon, charged particles and neutron interaction parameters. Photon interaction parameters were calculated for a wide energy range using PAGEX software. The ranges of heavy charged particles (H, He, C, N, O, Ne, Mg, Si and Fe ions) in these perovskites were estimated using SRIM software in the energy range 1 keV-10 GeV, and that of electrons was computed using ESTAR NIST software in the energy range 0.01 MeV-1 GeV. Further, the macroscopic fast neutron removal cross-sections were also calculated to estimate the neutron shielding efficiencies. The examined shielding parameters of the perovskites varied depending on the radiation type and energy. Among the selected perovskites, Cs2TiI6 and Ba2AgIO6 displayed superior photon attenuation properties. A 3.5 cm thick Ba2AgIO6-based shield could reduce the incident radiation intensity to half its initial value, a thickness even lesser than that of Pb-glass. Besides, CsSnBr3 and La0.8Ca0.2Ni0.5Ti0.5O3 displayed the highest and lowest range values, respectively, for all heavy charged particles. Ba2AgIO6 showed electron stopping power (on par with Kovar) better than that of other examined materials. Interestingly, La0.8Ca0.2Ni0.5Ti0.5O3 demonstrated neutron removal cross-section values greater than that of standard neutron shielding materials - aluminium and polyethylene. On the whole, the present study not only demonstrates the employment prospects of eco-friendly perovskites for shielding space radiations but also suggests future prospects for research in this direction.

Petrogenesis of Mesozoic granites at Garorim Bay, South Korea: evidence for an exotic block within the southwestern Gyeonggi massif?

  • Kim, Ji In;Choi, Sung Hi;Yi, Keewook
    • Geosciences Journal
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    • 제23권1호
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    • pp.1-20
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    • 2019
  • We present data from the Mesozoic Keumkang, Palbong, and Baekhwa granites in Garorim Bay, in the southwestern part of the Gyeonggi massif, South Korea. Using major and trace element concentrations, Sr-Nd-Pb isotopic compositions, and sensitive high-resolution ion microprobe (SHRIMP) zircon U-Pb ages, we aim to constrain the petrogenesis of the granites and explain their origin within a broader regional geological context. SHRIMP U-Pb zircon ages of $232.8{\pm}3.2$, $175.9{\pm}1.2$, and $176.8{\pm}9.8$ Ma were obtained from the Keumkang, Palbong and Baekhwa granites, respectively. The Late Triassic Keumkang granites belong to the shoshonite series and show an overall enrichment in large ion lithophile elements (LILE), a depletion in high field strength elements (HFSE) relative to primitive mantle, compared with neighboring elements in the primitive mantle-normalized incompatible trace element diagram with notable high Ba and Sr contents, and negligible Eu anomalies. The Keumkang granites are typified by highly radiogenic Sr and unradiogenic Nd and Pb isotopic compositions: $(^{87}Sr/^{86}Sr)_i=0.70931-0.70959$, $(^{143}Nd/^{144}Nd)_i=0.511472-0.511484$ [$({\varepsilon}_{Nd})_i=-17.0$ to -16.7], and $(^{206}Pb/^{204}Pb)=17.26-17.27$. The Middle Jurassic Palbong and Baekhwa granites belong to the medium- to high-K calc-alkaline series, and show LILE enrichment and HFSE depletion similar to the Keumkang granites, but exhibit significant negative anomalies in Ba, Sr, and Eu. Furthermore, they have elevated Y and Yb contents at any given $SiO_2$ content compared with other Jurassic granitoids from the Gyeonggi massif. The Palbong and Baekhwa granites have slightly less radiogenic Sr and more radiogenic Nd and Pb isotopic compositions [$(^{87}Sr/^{86}Sr)_i=0.70396-0.70908$, $(^{143}Nd/^{144}Nd)_i=0.511622-0.511660$, $({\varepsilon}_{Nd})_i=-15.4$ to -14.7, $(^{206}Pb/^{204}Pb)=17.56-17.76$] relative to the Keumkang granites. The Keumkang granites are considered to have formed in a post-collisional environment following the Permo-Triassic Songrim orogeny that records continent-continent collision between the North and South China blocks, and may have formed by fractional crystallization of metasomatized lithospheric mantle-derived mafic melts. The Palbong and Baekhwa granites may have been produced from a gabbroic assemblage at pressures of less than ~15 kbar, associated with subduction of the paleo-Pacific (Izanagi) plate at the Eurasian continental margin. Elevated ${\varepsilon}_{Nd}(t)$ values in the granitoids from the southwestern part of the Gyeonggi massif relative to those of the central and northern parts, together with the comparatively shallow depth of origin, imply the presence of an exotic block in the Korean lithosphere.

Comparison of microstructures in T1-1223/Ag tapes with different chemical compositions and J$_c$'s

  • Jeong, D.Y.;Kim, H.K.;Lee, H.Y.;Cha, M.K.;Ha, H.S.;Oh, S.S.;Tsuruta, T.;Horiuchi, S.
    • 한국초전도학회:학술대회논문집
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    • 한국초전도학회 1999년도 High Temperature Superconductivity Vol.IX
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    • pp.280-290
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    • 1999
  • The microstructures of a Tl$_{0.8}Pb_{0.2}Bi_{0.2}Sr_{1.6}Ca_2Cu_3O_{9+{\delta}}$/Ag tape (tape I ) with J$_c$ of 17,600 A/cm$^2$ at 77 K and 0 T and three Tl$_{0.8}Pb_{0.2}Bi_{0.2}Sr_{1.8}Ba_{0.2}Ca_{2.2}Cu_3O_{9+{\delta}}$/Ag tapes with J$_c$'s of 9,300 (tape II), 16,700 (tape III) and 25,200 A/cm$^2$ (tape IV)prepared using the powder-in-tube method and an in-situ reaction method, were investigated using scanning electron microscopy and high-resolution transmission electron microscopy, and compared each other. ln the tape preparation, an intermediate rolling process was incorporated during final heat-treatment for the last tape, but not for the rest of the tapes. The microstructural analysis revealed clear differences in grain-texturing, crystallographic defects and impurity phases, depending on the chemical composition of the tape. Tendency of directional grain-alignment increased in an order of tapes I, II III and IV. In tape IV, T1-1223 grains are textured, at least in local regions. In crystallographic defects, while stacking faults were prevalent in the former composition, dislocations and voids were frequently observed in the latter. Also impurity phases were appeared to be more abundant in the former than in the latter. The relationship between 1,and the microstructure in the tapes was attempted to explain in a term of grain-linking.

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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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Effects of F-doping on perparation and superconducting characteristics of ag-sheathed Tl-1223 tapes

  • 정대영;김희권;이준호;차무경;김영철;이호섭
    • 한국초전도ㆍ저온공학회논문지
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    • 제2권1호
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    • pp.1-6
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    • 2000
  • The effects of partial substitution of fluorine on physical properties were studied in Ag-sheathes tapes of $Tl_{0.8}Pb_{0.2}Sr_{1.8}Ba_{0.2} Ca_{2.2}Cu_3O_yF_x (0{\leq}x{\leq}1)$ nominal compositions. The tapes were prepared using the powder-in-tube method incorporating an in-situ reaction method. $CuF_2$ was used as a source of F. It was found that F-doping in Tl-1223 system resulted in a decrease in formation temperatire of Tl-1223 phase. and thus significantly deteriorated their superconducting properties. Such disadvantages seem to originate by the fromation of non-beneficial phases such as SrF2 in the early stage of the powder preparation process.

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경북(慶北) 봉화군(奉化郡) 장군광산산(將軍鑛山産) 신종광물(新種鑛物) 장군석(將軍石)에 대(對)한 광물학적(鑛物學的) 연구(硏究) (Janggunite, a New Mineral from the Janggun Mine, Bonghwa, Korea)

  • 김수진
    • 자원환경지질
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    • 제8권3호
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    • pp.117-124
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    • 1975
  • 경북(慶北) 봉화군(奉化郡) 소재(所在) 장군광산(將軍鑛山)의 표성산화(表成酸化)망간광석중(鑛石中)에서 필자(筆者)에 의(依)하여 발견명명(發見命名)된 신종건물(新種鍵物) 장군석(將軍石)은 국제(國際) 광물학회내연합(鑛物學會內聯合)에 있는 "신종광물(新種鑛物) 및 광물명위원회(鑛物名委員會)"의 공인(公認)을 받았는바 이에 대(對)한 광물학적(鑛物學的)인 연구결과(硏究結果)를 요약(要約)하면 다음과 같다. (1) 장군석(將軍石)은 표성산화(表成酸化)망간 광석중(鑛石中) cementation zone에서 산출(産出)되며, 엔소타이트, 토도로카이트, 방해석(方解石)을 수반(隨伴)한다. 대체로 공동(空洞)에서 수기상(樹技狀) 또는 방사상(放射狀)을 이루는 엽편상(葉片狀) 세립집합체(細粒集合體)(입자(粒子)의 크기 <0.05mm)로 또는 교질상대(膠質狀帶)로 산출(産出)한다. (2) 색(色)은 흑색(黑色)이며 광택(光澤)은 무염(無艶), 조흔(條痕)은 흑갈(黑褐)~암갈(暗褐色)이다. 벽개(劈開)는 한방향(方向)으로 완전(完全)하다. 경도(硬度)(H)=2-3이며 역쇄성(易碎性)이다. 비중(比重)(G)=3.59(실측시(實測植)), 3.58이론치(理論値)이다. (5) 화학분석치(化學分析値)로부터 계산(計算)된 장군석(將軍石)의 화학식(化學式)은 $Mn^{4+}{_{4.85}}(Mn^{2+}{_{0.90}}Fe^{3+}{_{0.30}})_{1.20}O_{8.09}(OH)_{5.91}$이며, 이상식(理想式)은 $Mn^{4+}{_{5-x}}(Mn^{2+},\;Fe^{3+}){_{1+x}}O_8(OH)_6$ ($x{\approx}0.2$)이다. (6) 장군석(將軍石)은 사방정사 속(屬)하며 X선(線) 분말회절분석(粉末廻折分析) 결과(結果), 단위포(單位胞)의 크기는 $a=9.324{\AA}$, $b=14.05{\AA}$, $c=7.956{\AA}$이며, 단위포(單位胞)의 체적(體積)은 $1042.25{\times}10^{-24}cm$이다. 보솔(輔率) a : b : c=0.663 : 1 : 0.566. 단위포함유수(單位胞含有數) (Z)=4. (7) 시차열분석곡선(示差熱分析曲線)은 $250{\sim}370^{\circ}C$$955^{\circ}C$에서 흡열(吸熱)피크를 보여준다. 전자(前者)는 장군석(將軍石)이 탈수(脫水) 및 산화(酸化)를 받아 $(Mn,\;Fe)_2O_3$이 생성(生成)된데 기인(基因)하며 후자(後者)는 hausmannite 형(型)의 구조(構造)를 갖는 $(Mn,\;Fe)_3O_4$의 생성(生成)에 기인(基因)하는 것이다. $(Mn,\;Fe)_2O_3$는 등보정사이고 $a=9.417{\AA}$이었고 $(Mn,\;Fe)_3O_4$는 정방정사이고 $a=5.76{\AA}$, $c=9.51{\AA}$이었다. (6) 장군석(將軍石)의 적외선흡수분광(赤外線吸收分光)스펙트럼은 $515cm^{-1}$$545cm^{-1}$에서 Mn-O stretching 진동(振動)을, $1025cm^{-1}$에서 O-H bending 진동(振動)을 그리고 $3225cm^{-1}$에서 O-H stretching 진동(振動)을 보여준다. (3) 장군석(將軍石)은 불투명광물(不透明鑛物)이며 현미경하(顯微鏡下)에서 반사도(反射度)는 13~15%이고 복반사율(複反射率)은 공기중(空氣中)에서 현저(顯著)하며 침액중(浸液中)에서 강(强)하다. 반사다색성(反射多色性)은 백색(白色)~담회색(淡灰色)이다. 십자(十字)니콜하(下)에서의 편광색(偏光色)은 공기중(空氣中)에서 청색(靑色)을 띈 황갈(黃褐)~회색(灰色)이고 침액중(浸液中)에서는 黃褐(황갈)~청갈(靑褐)~회색(灰色)이다. 내부반사(內部反射)는 없다. (4) 연마면(硏磨面)에 대(對)한 에칭반응(反應)은 HCl(conc.)와 $H_2SO_4+H_2O_2$ 회색(灰色), 퇴색(褪色), SnCl(sat.): 암색(暗色), $HNO_3$ (conc.) : 회색(灰色), $H_2O_2$ : 거품을 내며 퇴색(褪色). (9) 신종광물(新種鑛物) 장군석(將軍石)은 독특(獨特)한 화학조성(化學組成)과 단위포(單位胞)를 가지고 있어서 이의 발견(發見)은 산화(酸化)망간광물(鑛物)의 분류(分類)와 연구(硏究)에 새로운 방향(方向)과 지침(指針)이 되었다.

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