• 제목/요약/키워드: Magnesite

검색결과 34건 처리시간 0.023초

마그네사이트(MgCO$_3$)의 수열합성에 관한 연구 (Synthesis of Magnesite by Hydrothermal Method)

  • 오기동
    • 한국세라믹학회지
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    • 제11권3호
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    • pp.14-18
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    • 1974
  • Magnesite single crystals up to 250 microns were synthesized from an equi-molar solution of MgCl2 and Na2CO3 in the micro-autoclave at 180-20$0^{\circ}C$. The lattice constant of synthetic magnesite was obtained a=4.6369(7), c=15.0230(10)A.U. by a least squares analysis based on the UNICS Program (Sakurai 1967) was applied to 28 reflections. Results of X-ray powder diffraction and of DTA, TGA, IRA, and EPMA studies indicate that synthesized magnesite has properties to those of natural magnesite.

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Dissolution of North Korean Magnesite by using Hydrochloric Acid

  • Baek, Ui-Hyun;Park, Hyungkyu;Lee, Jin-Young;Kang, Jungshin
    • Korean Chemical Engineering Research
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    • 제55권5호
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    • pp.711-717
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    • 2017
  • A fundamental study was conducted on the dissolution of North Korean magnesite using hydrochloric acid to understand the dissolution behavior of the magnesium and impurities. The influence of the acid concentration, particle size of the magnesite, reaction temperature, and pulp density on the dissolution of magnesium, iron, calcium, aluminum, and silicon dioxide was studied. The experimental results showed that 98.5% of magnesium, 86.9% of iron, 87.3% of calcium, 23.6% of aluminum, and 20.4% of silicon dioxide were dissolved when magnesite particle sizes within the range of $75{\sim}105{\mu}m$ were reacted using 3 M HCl solution under 6% pulp density at 363 K for 3 h. The residues that remained after the dissolution were silicon dioxide, talc, and clinochlore.

중국 다스챠오벨트 팰로우 마그네사이트 광상의 생성환경 및 북한 대흥 광상과의 비교 (Genetic Environment of the Pailou Magnesite Deposit in Dashiqiao Belt, China, and Its Comparison with the Daeheung Deposit in North Korea)

  • 임헌경;신동복;유봉철
    • 자원환경지질
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    • 제54권6호
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    • pp.767-785
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    • 2021
  • 중국 쟈오랴오지(Jiao-Liao-Ji) 벨트에 속한 다스챠오(Dashiqiao) 광화대에는 세계적 규모의 마그네사이트 광상들이 발달하며, 한반도 북측으로 연장되어 북한 단천지역 주요 마그네사이트 광상도 이에 속한다. 중국 다스챠오 광화대 팰로우(Pailou) 광상의 마그네사이트 광석은 구성광물에 따라 순수한 마그네사이트, 녹니석-마그네사이트, 녹니석-활석-마그네사이트, 그리고 돌로마이트 그룹으로 구분된다. 암석기재 연구결과 마그네사이트는 돌로마이트가 변질작용을 받아 형성되었음을 보여주며, 이를 다시 교대하는 후기 변질광물로 활석, 녹니석, 인회석 등이 산출된다. 마그네사이트내에 관찰되는 유체포유물은 액상포유물로서 균일화온도는 121~250 ℃, 염농도는 1.7~22.4 wt% NaCl equiv.의 범위를 보여준다. 열수변질작용의 온도를 지시하는 녹니석 지온계는 137~293 ℃로서 유체포유물의 균일화온도에 비해 약간 높으며, 이들의 생성압력은 3.2 kb 이하로 나타난다. 연구지역 마그네사이트 광화작용은 초기 형성된 돌로마이트가 Mg가 부화된 유체에 의한 교대작용을 받아 마그네사이트 광체를 형성하고, 이후 광역변성작용과 열수변질작용을 거치며 부화되였으며, Si 및 Al이 부화된 후기 열수에 의해 활석 등의 변질광물이 정출된 것으로 보인다. 이러한 결과는 북한의 대표적인 대흥 마그네사이트 광상의 정출환경과 유사하며 두 광상이 상호 유사한 지질광상학적 생성과정을 거치며 광화작용이 진행된 것으로 여겨진다.

천연 Brucite의 물성분석 및 이산화황 흡수제로의 응용 (Property Analysis of Natural Brucite and Its Application as Sulfur Dioxide Absorbent)

  • 강성구;김명환;김진배
    • 청정기술
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    • 제15권4호
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    • pp.239-244
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    • 2009
  • 중국 Liaoning에서 산출된 천연 brucite를 원료로 $Mg(OH)_2$ slurry를 제조하고, 그 탈황 성능을 magnesite를 원료로 열분해 및 수화반응으로 제조된, $Mg(OH)_2$ slurry와 비교하였다. Brucite와 magnesite를 원료로 제조된 $Mg(OH)_2$ 분말의 물리/화학적 특성은 유사했지만, brucite를 원료로 제조된 $Mg(OH)_2$ 결정입자의 판상구조가 보다 안정적으로 발달되어 있었다. Brucite와 magnesite를 원료로 제조된 $Mg(OH)_2$ slurry의 탈황효율은 brucite가 조금 높았다. Brucite를 배연탈황용 흡수제로 충분히 적용할 수 있을 것으로 기대된다.

마그네사이트의 적외선 흡수 스펙트럼 해석 (Analysis of the Infrared Absorption Spectrums of Magnesite)

  • 오기동
    • 한국세라믹학회지
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    • 제14권4호
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    • pp.226-229
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    • 1977
  • The infrared absorption spectrum of Synthesized magnesite is shown in the wve number region 2510 and 745cm-1. By using Wilson's GF matrices the force constants' of the Urey-Bradley force field were deterined from the infrared absorption frequencies. For magnesite the stretching force constant K=5.41, the bending force constant H=0.46, the repulsive force constant F=1.97, and the force constant for the out-of-plane vibration fθ=0.65md/Å. For calcite they are K=5.51, H=0.38, F=1.88 and fθ=0.64md/Å.

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마그네사이트 (MgCO$_3$)의 결정구조에 관한 연구 (Studies on the Crystal Structure of Magnesite)

  • 오기동
    • 한국세라믹학회지
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    • 제12권3호
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    • pp.8-12
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    • 1975
  • The crystal structure of synthetic magnesite has been studied by X-ray method. Magnesite is trigonal R3c, with a=4.637$\AA$, c=15.023$\AA$ and Z=6. Intensity data were collected with a Rigaku automated four-circle diffractometer and Mo-K$\alpha$ radiation. The structure was refined by the full-matrix least squares method using anisotropic thermal parameters. The final R index for 234 reflections is 0.037. The C-O and Mg-O bond lengths were 1.283 and 2.105$\AA$, respectively. The interatomic angles of three kinds of O-Mg-O were 88.25, 91.75 and 180.00$^{\circ}$, respectively. It is clarified that the distortion of the Mg-O6 octahedron in magnesite is smaller than that of Ca-O6 in calcite.

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Study on the Kinetics and Mechanism of Grain Growth during the Thermal Decomposition of Magnesite

  • Fu, Da-Xue;Feng, Nai-Xiang;Wang, Yao-Wu
    • Bulletin of the Korean Chemical Society
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    • 제33권8호
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    • pp.2483-2488
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    • 2012
  • The X-ray line broadening technique was used to calculate the grain size of MgO at 1023, 1123, 1223 K respectively either in $CO_2$ or during the thermal decomposition of magnesites in air as well as in vacuum. By referring to the conventional grain growth equation, $D^n=kt$, the activation energy and pre-exponential factor for the process in air are gained as 125.8 kJ/mol and $1.56{\times}10^8\;nm^4/s$, respectively. Ranman spectroscopy was employed to study the surface structure of MgO obtained during calcination of magnesite, by which the mechanism of grain growth was analyzed and discussed. It is suggested that a kind of highly reactive MgO is produced during the thermal decomposition of magnesites, which is exactly the reason why the activation energy of the grain growth during the thermal decomposition of magnesite is lower than that of bulk diffusion or surface diffusion.

조암광물의 분쇄특성을 이용한 마그네사이트 정제기술 연구 (A study on the Beneficiation for Magnesite by the Grinding Characteristic of Rock Forming Minerals)

  • 김상배;박형규;김완태;김윤종
    • 한국재료학회지
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    • 제17권11호
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    • pp.606-611
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    • 2007
  • This study was conducted to beneficiation of magnesite by dry grinding and air classification. The raw ore was ground in a ball mill and pin mill controlled with grinding time and linear velocity of grinding media and fractionated in an air classifier. Pin mill is more efficient than the ball mill for liberation. As a result, the MgO grade of concentrate was 47.1% with recovery of 51.51% for classified with 3,000rpm of air classifier for ground at 13,000rpm in pin mill.

Hot Press에 의한 마그네시아의 소결 (Sintering of Magnesia During Hot Pressing)

  • 오기동
    • 한국세라믹학회지
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    • 제19권2호
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    • pp.152-156
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    • 1982
  • The behavior of magnesite during hot pressing is studied from 80$0^{\circ}C$ to 110$0^{\circ}C$ by Knoop hardness test, X-ray diffraction and electron microscopy. The growth of magnesia crystallite in magnesite is observed at 110$0^{\circ}C$ and crystallite size is about 2 microns. It is also observed that hot pressing showes enhanced sinterability comparing to ordinary pressure-less sintering. The magnesia body with 95 per cent of theoretical density is obtained by hot pressing at relatively low temperature such as 110$0^{\circ}C$.

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