• 제목/요약/키워드: sulfide minerals

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필리핀 만카얀 지역 금.은 광석의 비중선별 특성 (Gravity Separation Characteristic for the Gold.Silver Ores on the Philippine Mankayan District)

  • 김형석;채수천;김정윤;손정수;김상배
    • 한국광물학회지
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    • 제21권4호
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    • pp.383-395
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    • 2008
  • 필리핀 만카얀 지역의 빅토리아 광산에서 입수한 금 은 광석으로부터 금 은 성분의 회수율을 높이기 위해 지질 및 광물학적 특성, 금과 은의 수반상태, 파 분쇄에 따른 단체 분리도, 체 분리에 의한 분립 특성과 요동테이블에 의한 비중 선별 특성을 연구하였다. 필리핀산 금 은 광석은 황철석, 섬아연석, 방연석 등의 황화광물과 석영 및 점토 등의 맥석 광물로 구성되었다. 금 은 성분은 황철석, 섬아연석, 방연석 등의 황화광물에 주로 수반되어 있었다. 황화광물 결정의 크기는 $100{\mu}m$에서 $1{\mu}m$ 이하까지 광범위한 입도분포를 갖기 때문에 금 은이 수반된 황화광물의 단체분리도를 높이기 위해서는 금 은 광석을 최소한 $100{\mu}m$ 이하로 매우 작게 분쇄해야 하는 것으로 나타났다. 금 은 광석을 Jaw crusher $\to$ cone crusher $\to$ rod mill 등으로 단계적으로 파.분쇄하여 입도($d_{90}$)를 $100{\mu}m$ 이하로 조절하면 단체분리도가 92% 정도까지 높아졌다. 금 은 성분이 함유된 황화광물의 결정이 $100{\mu}m$ 이하의 입단에서 고르게 분포되어 있기 때문에 체질에 의한 분립 방법으로는 금 은을 수반한 황화광물을 선택적으로 분리하여 회수할 수 없었다. 파 분쇄한 금 은 광석을 체로 분립한 후 요동테이블로 비중 선별한 결과, 정광에는 황화광물이 주로 농축되어 금과 은의 품위가 각각 40 ppm 및 140 ppm까지 높아졌다. 이때 정광의 금 실수율은 거의 100%에 이르지만, 은 실수율은 50% 수준에 불과하였다.

천연광물을 이용한 황철석 표면 코팅을 통한 폐광산 산성배수 저감 기술 개발 (Developing for Reduction Technology of AMD through Coating on the Surface of Pyrite Using Minerals)

  • 윤현식;지은도;지민규;이우람;양중석;박영태;권현호;지원현;김기준;전병훈;최재영
    • 한국지반환경공학회 논문집
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    • 제12권2호
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    • pp.15-22
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    • 2011
  • 본 연구에서는 폐광산의 산성광산배수(Acid Mine Drainage, AMD)의 발생을 억제하기 위해 산성광산배수의 주원인인 황철석 표면을 천연광물 및 시멘트를 사용하여 화학적으로 코팅하여 산성광산배수의 문제를 해결하고자 한다. 표면 코팅에 필요한 철이온의 생성을 위해 먼저 산화제 $H_2O_2$, NaClO 를 이용하여 표준황철석, 영동탄광, 신림광산 시료의 표면을 산화시켰다. 그리고 천연광물(인회석(Apatite), 석회석(Limestone), 망간광(Mangnite), 돌로마이트(Dolomite), 벤토나이트(Bentonite), 시멘트(Cement))를 이용하여 발생된 철이온과 천연광물의 이온을 결합시켜 표면 코팅을 진행하였다. 그 결과 시멘트와 시료의 양을 1:1로 이용하고 4일 이상 진행하였을 때 위의 실험조건에서 가장 효과적으로 황철석의 표면을 코팅하여 ${SO_4}^{2-}$의 발생이 억제되었다.

Marmatite 鑛의 直接酸浸出에 關한 硏究 (第3報) Marmatite 鑛의 酸浸出과 黃化物의 電極電位에 關한 硏究 (Direct Acid Leaching of Zinc from Marmatite Ores 3 Acid Leaching of Marmatite Ores and the Electrode Potential Behavior of Sulfides)

  • 김재원
    • 대한화학회지
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    • 제11권1호
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    • pp.38-43
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    • 1967
  • In order to explain the positive catalytic action of copper compound for the rate of leaching of zinc sulfide minerals, the electrode and redox potentials of both synthetic and natural sulfides were measured at various conditions of temperatures and pressures. The potentials of Chalcopyrite and copper sulfide were considerably higher than that of zinc sulfide, whereas lead sulfide and Galena had slightly lower potentials than that of zinc sulfide. At elevated temperatures and pressures, the same tendency was obtained. By means of comparing the calculated and measured values of potentials for sulfides, it was suggested that the electrode potentials in acid solution were generated by oxidation of sulfur ion. As a result, it was concluded that the catalytic action of copper compound in the leaching of synthetic zinc sulfide should be arised from the galvanic action between sulfides keeping intimate contact one another in which copper sulfide worked as cathodic and zinc sulfide as anodic part analogous to the metal corrosion under galvanic action.

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고전압 방전 충격펄스를 이용한 유용광물 회수에 관한 실험적 연구 (Experimental Study on the Recovery of Useful Minerals Using High Voltage Discharge Shock Pulse)

  • 조상호;정상선
    • 화약ㆍ발파
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    • 제40권1호
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    • pp.17-28
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    • 2022
  • 고전압 방전에 의한 파분쇄기술 중 ED(Electrical pulse Disintegration)는 고체 내 절연파괴를 유도하여 고체 내 취약한 경계면을 분리하여 유가자원을 분리·회수하는 고효율 자원처리 기술로 알려져 있다. 본 연구에서는 고전압 방전에 의하여 고체 내 발생한 충격파가 황화광물 내 존재하는 아연광물의 단체분리특성을 분석하기 위하여, ED분쇄실험과 기계식 분쇄실험을 수행하고 분쇄산물에 대한 SEM-BSE 분석과 Microfocus X-Ray CT 분석을 수행하여 단체분리도를 비교하였다.

Two-Step Oxidation of Refractory Gold Concentrates with Different Microbial Communities

  • Wang, Guo-hua;Xie, Jian-ping;Li, Shou-peng;Guo, Yu-jie;Pan, Ying;Wu, Haiyan;Liu, Xin-xing
    • Journal of Microbiology and Biotechnology
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    • 제26권11호
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    • pp.1871-1880
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    • 2016
  • Bio-oxidation is an effective technology for treatment of refractory gold concentrates. However, the unsatisfactory oxidation rate and long residence time, which cause a lower cyanide leaching rate and gold recovery, are key factors that restrict the application of traditional bio-oxidation technology. In this study, the oxidation rate of refractory gold concentrates and the adaption of microorganisms were analyzed to evaluate a newly developed two-step pretreatment process, which includes a high temperature chemical oxidation step and a subsequent bio-oxidation step. The oxidation rate and recovery rate of gold were improved significantly after the two-step process. The results showed that the highest oxidation rate of sulfide sulfur could reach to 99.01 % with an extreme thermophile microbial community when the pulp density was 5%. Accordingly, the recovery rate of gold was elevated to 92.51%. Meanwhile, the results revealed that moderate thermophiles performed better than acidophilic mesophiles and extreme thermophiles, whose oxidation rates declined drastically when the pulp density was increased to 10% and 15%. The oxidation rates of sulfide sulfur with moderate thermophiles were 93.94% and 65.73% when the pulp density was increased to 10% and 15%, respectively. All these results indicated that the two-step pretreatment increased the oxidation rate of refractory gold concentrates and is a potential technology to pretreat the refractory sample. Meanwhile, owing to the sensitivity of the microbial community under different pulp density levels, the optimization of microbial community in bio-oxidation is necessary in industry.

남산 금-은광산의 유체포유물 및 안정동위원소 연구 (Studies on Fluid Inclusion and Stable Isotope of the Namsan Gold-Silver Mine)

  • 김세현;최상훈
    • 자원환경지질
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    • 제29권2호
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    • pp.119-127
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    • 1996
  • Electrum-sulfide minerals of the Namsan Au-Ag mine were deposited in two stages of quartz and calcite veins that fill fault planes in Mesozoic granitic rocks (230~155 Ma). The K/Ar radiometric dating of hydrothermal sericite indicates that mineralization is early Cretaceous age ($127{\pm}3.0Ma$). Mineralogic, fluid inclusion and sulfur isotopic data show that ore minerals were deposited at temperatures between $340^{\circ}C$ and $200^{\circ}C$ from fluid with salinities of 3 to 6 equiv. wt % NaCl. Evidence of fluid boiling (and $CO_2$ effervescence) indicates a maximum pressures of 100 bars. The formation temperature and $fs_2$, of Au-mineralization from the Namsan mines are mainly $280{\sim}230^{\circ}C$ and $10^{-11}{\sim}10^{-13}$ atm, respectively. Au deposition was likely a result of boiling caused to chemical change (pH, $f_{O2}$, ${\Sigma}_{H_2S{\cdot}{\cdot}}$) of ore-fluids. Sulfur isotope composition of sulfide minerals (${\delta}^{34}S=5.1$ to 8.2‰) are consistent with ${\delta}^{34}S_{{\Sigma}{H2S}}$ value of +6 to +7‰, suggesting an igneous source of sulfur partially mixed with wall-rock sulfur.

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강원도 옥계 금광상에 관한 광물학적·지화학적 연구 (Mineralogy and Geochemistry of the Ogkye Gold Deposits, Gangwondo Province)

  • 최선규;최상훈;이현구
    • 자원환경지질
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    • 제30권1호
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    • pp.15-23
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    • 1997
  • Gold mineralization of the Ogkye gold mine was deposited mainly in quartz veins up to 150 cm wide which occupy fissures in Cambrian Pungchon limestone. Ore minerals are relatively simple as follows: pyrite, arsenopyrite, pyrrhotite, sphalerite, electrum and galena. On the basis of the Ag/Au ratio on ore grades, mode of occurrence and assoicated mineral assemblages, the Ogkye gold deposit can be classified as pyrite-type gold deposit (Group IIB). Fluid inclusion data indicate that ore minerals were deposited between $400^{\circ}$and $230^{\circ}C$ from relatively dilute fluids (0.2 to 7.3 wt.% eq. NaCl) containing $CO_2$. The ore mineralization resulted from a complex history of $CO_2$ effervescence and local concomitant boiling coupled with cooling and dilution of ore fluids. Gold deposition was likely a result of decrease of sulfur activity caused by sulfide deposition and/or $H_2S$ loss accompanying fluid unmixing. Sulfur isotope compositions of sulfide minerals (${\delta}^{34}S=3.5{\sim}5.9$‰) are consistent with ${\delta}^{34}S_{H_2S}$ value of 4.8 to 6.1‰, suggesting mainly an igneous source of sulfur partially mixed with wall-rock sulfur.

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자동차(自動車) 폐촉매(廢觸媒)의 침출액(浸出液)으로부터 백금족(白金族) 금속(金屬)의 용매추출(溶媒抽出) (Solvent Extraction of Platinum Group Metals from the leach Liquor of Spent Automotive Catalyst)

  • 김미애;이재천;김치권;김민석;김병수;유경권
    • 자원리싸이클링
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    • 제15권5호
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    • pp.3-10
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    • 2006
  • 자동차 폐촉매의 침출액으로부터 백금족 금속의 분리를 위하여 용매추출에 대한 기초연구가 수행되었다. 추출제로 tri-n-butyl phosphate (TBP), tri-n-octylamine (TOA) 그리고 di-n-hexyl sulfide (DHS)를 등유에 희석하여 사용하였다. 추출제의 종류 및 농도가 백금, 팔라듐 그리고 로듐의 추출거동에 미치는 영향을 조사하였다. 또한 세륨, 납, 철, 마그네슘 그리고 알루미늄 등 침출액에 존재하는 주요 금속불순물의 추출거동도 함께 조사하였다. TBP는 백금과 팔라듐, 그리고 TOA는 백금, 팔라듐, 로듐을 동시에 추출하였다. DHS 추출제인 SFI-6에 의한 용매추출 시 백금이 팔라듐과 함께 유기상으로 추출되었으나, SFI-6R은 팔라듐만 선택적으로 추출하였다. SFI-6R은 SFI-6에 비하여 팔라듐에 대한 선택성이 우수하였으나 추출속도가 느렸다. 추출제의 종류에 따라 백금족 금속과 함께 추출되는 금속불순물들이 달라지며 세정 또는 탈거공정에서 이들을 제거하여야 한다. 자동차 폐촉매의 침출액으로부터 백금, 팔라듐 그리고 로듐을 분리하기 위하여 먼저 DHS 추출제인 SFI-6R를 사용하여 팔라듐을 분리한 다음 TBP 또는 TOA으로 백금을 추출하여 로듐과 분리하는 공정이 적절한 것으로 나타났다.

Mineralogical studies and extraction of some valuable elements from sulfide deposits of Abu Gurdi area, South Eastern Desert, Egypt

  • Ibrahim A. Salem;Gaafar A. El Bahariya;Bothina T. El Dosuky;Eman F. Refaey;Ahmed H. Ibrahim;Amr B. ElDeeb
    • 분석과학
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    • 제37권1호
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    • pp.47-62
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    • 2024
  • Abu Gurdi area is located in the South-eastern Desert of Egypt which considered as volcanic massive sulfide deposits (VMS). The present work aims at investigating the ore mineralogy of Abu Gurdi region in addition to the effectiveness of the hydrometallurgical route for processing these ores using alkaline leaching for the extraction of Zn, Cu, and Pb in the presence of hydrogen peroxide, has been investigated. The factors affecting the efficiency of the alkaline leaching of the used ore including the reagent composition, reagent concentration, leaching temperature, leaching time, and Solid /Liquid ratio, have been investigated. It was noted that the sulfide mineralization consists mainly of chalcopyrite, sphalerite, pyrite, galena and bornite. Gold is detected as rare, disseminated crystals within the gangue minerals. Under supergene conditions, secondary copper minerals (covellite, malachite, chrysocolla and atacamite) were formed. The maximum dissolution efficiencies of Cu, Zn, and Pb at the optimum leaching conditions i.e., 250 g/L NaCO3 - NaHCO3 alkali concentration, for 3 hr., at 250 ℃, and 1/5 Solid/liquid (S/L) ratio, were 99.48 %, 96.70 % and 99.11 %, respectively. An apparent activation energy for Zn, Cu and Pb dissolution were 21.599, 21.779 and 23.761 kJ.mol-1, respectively, which were between those of a typical diffusion-controlled process and a chemical reaction-controlled process. Hence, the diffusion of the solid product layer contributed more than the chemical reaction to control the rate of the leaching process. High pure Cu(OH)2, Pb(OH)2, and ZnCl2 were obtained from the finally obtained leach liquor at the optimum leaching conditions by precipitation at different pH. Finally, highly pure Au metal was separated from the mineralized massive sulfide via using adsorption method.

Sulfide MINERALs texture AT THE HUGO DUMMETT PORPHYRY Cu-Au DEPOSIT, OYU TOLGOI, MONGOLIA

  • Myagmarsuren, Sanjaa;Fujimaki, Hirokazu
    • 한국정보컨버전스학회:학술대회논문집
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    • 한국정보컨버전스학회 2008년도 International conference on information convergence
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    • pp.99-102
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    • 2008
  • Mineralogical studies of ore and alteration minerals have been conducted for the Hugo Dummett porphyry copper deposit. The Hugo Dummett porphyry copper gold deposit is located in the South Gobi region, Mongolia and currently being explored. This deposit divided into the Cu-rich Hugo Dummett South and the Cu-Au-rich Hugo Dummett North deposits. The Hugo Dummett deposits contain 1.08% copper(1.16 billion tonnes in total) and 0.23 g/t gold(Oyunchimeg et al., 2006). Copper-gold mineralization at these deposit are centered on a high-grade copper(typically>2.5%) and gold(0.5-2 g/t) zone of intense quartz stockwork veining. The high grade copper and gold zone is mainly within the Late Devonian quartz monzodiorite intrusions and augite basalt, also locally occurs in dacitic rocks. Intense quartz veining forms a lens up to 100 m wide hosted by augite basalt and partly by quartz monzodiorite. Although many explorations have been carried out, only a few scientific works were done in the Oyu Tolgoi mining area. Therefore the nature of copper-gold mineralization and orgin of the deposit is not fully understood. Copper-gold mineralization in the Hugo Dummett deposits occurs in dominantly quartz monzodiorite and minor augite basalt, dacitic rocks and locally biotite granodiorite. Chalcopyrite, pyrite, bornite, molybdenite, tennantite, tetrahedrite, enargite, sphalerite, chalcocite, covellite, eugenite, galena and gold occur as main ore minerals in the Hugo Dummett North and South deposits. These sulfides occur as: (1) a vague vein-like trail 1-3cm long and 2-3 mm wide, (2) minute, discontinuous cracks within quartz(micron scales), and (3) irregular blebs/spots(micron scales)and (4) disseminated within the sericite and plagioclase, commonly concentrated in the quartz. Sulfide minerals commonly display as a replacement, intergrown and minor exsolution texture in the both of the Hugo Dummet deposits.

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