• 제목/요약/키워드: polymetallic ore

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STUDY ON GY NEW MINERAL PROCESSING TECHNOLOGY FOR SHIZHUYUAN POLYMETALLIC ORE

  • Zhang, Zhonghan;Li, Xiaodong;Ye, Zhiping;Guo, Jianguan
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2001년도 The 6th International Symposium of East Asian Resources Recycling Technology
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    • pp.325-330
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    • 2001
  • Shizhuyuan W-Mo-Bi-Ca $F_2$polymetallic ore is classified to the refractory one due to its complex property, fine dissemination and close association of minerals. Through several years of researches, in line with GY new mineral processing technology developed by Guangzhou Research Institute of Nonferrous Metals, in sulfide flotation circuit, an iso-flotability flowsheet is used to replace original overall bulk flotation flowsheet, and in tungsten flotation circuit, a new chelating type-GY reagent and a special pulp-conditioning system and a new technology of wolframite slime flotation are used to replace the traditional "Caustic Soda Method"$_{[1]}$, the metallurgical performance is greatly improved. Besides, GY New Method has created a favorable condition for comprehensive recovery of fluoride from tungsten flotation tailings. Notable economic benefit has been achieved.d.

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태백산광화대내의 원동 다금속광상의 성인 (Ore Genesis of the Wondong Polymetallic Mineral Deposits in the Taebaegsan Metallogenic Province)

  • 황덕환;이재영
    • 자원환경지질
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    • 제31권5호
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    • pp.375-388
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    • 1998
  • The purpose of this study is to investigate the ore genesis and occurrence of the Wondong polymetallic mineral deposits. The Pb-Zn, Fe and W-Mo mineralizations are found in skarn zones which formed mainly in or along the fault shear zones with the $N25-40^{\circ}W$ and $N10-50^{\circ}E$ directions, whereas the Cu-Mo mineralization is appeared hydrothermal replacement zone. The skarn minerals consist mainly of garnet and epidote, which were the last alteration phases between pneumatolytic and hydrothermal stages. The mineral paragenesis toward the late stage are as follows: arsenopyrite, scheelite, magnetite, pyrite, pyrrhotite, sphalerite, galena, chalcopyrite and molybdenite. Average ore grades are 0.33 g/t Au, 46.29 g/t Ag, 0.06% Cu, 4.4% Pb, 2.61% Zn and 29.39% Fe in tunnels, and 0.31 % Cu, 0.52% Pb, 6.29% Zn, 29.29% Fe, 0.03% Mo and 0.12% $WO_3$ in drill cores. Fluid inclusion data shows that Type I (liquid-rich), Type II (vapor-rich) and Type III (halite-bearing) inclusions are coexisted and their homogenization temperatures are quite similar. This indicates that boiling conditions have been reached during the mineralization. It is also likely that the ore solutions were evolved through the mixing between magmatic and meteoric waters. Rhyolite and quartz porphyry far the mineralization probably are not responsible of the Wondong polymetallic mineral deposits.

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태백산광화대 북부 낙천, 은치, 중봉 금-은광상의 안정동위원소 연구 (Stable Isotope of the Nakcheon, Eunchi and Jungbong Gold-Silver Deposits in the Northern Taebagsan Mining District)

  • 황정;박희인
    • 자원환경지질
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    • 제29권2호
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    • pp.159-170
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    • 1996
  • The gold-silver deposits of the Nakcheon, Eunchi and Jungbong mine in the northern Taebagsan mining district are composed of fissure fil1ing veins emplaced in Precambrian meta-sediments and Jungbongsan granite. Based on the changes of ore texture and mineralogy, ore mineral chemistry, fluid inclusion and mineralizing condition, a regional zoning is recognized from the Nakcheon to the Eunchi and Jungbong ore deposits, and this trend of zoning is also recognized by stable isotope compositions. Stable isotope compositions show that the source of su1fur and carbon is mainly igneous origin, and the water of ore fluid in the Nakcheon ore deposits is mainly magmatic origin but much of meteoric water is involved in ore fluid of the Eunchi and Jungbong ore deposits. The ore deposits of study area is polymetallic meso to epithermal type genetically related to the acidic igneous pluton. Due to the differntial erosion level and mineralized depth, each ore deposits has a slightly different characteristic of mineralization; The Nakcheon ore deposits belong to meso-epithermal type, but the Eunchi and Jungbong ore deposits belong to epithermal type.

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울산광산산(蔚山鑛山産) 유비철석(硫砒鐵石)의 조성변화(組成變化) 및 지질온도계(地質溫度計)에 대(對)한 적용(適用) (Compositional Variation of Arsenopyrites in Arsenic and Polymetallic Ores from the Ulsan Mine, Republic of Korea, and their Application to a Geothermometer)

  • 최선규;정재일;이마이 나오야
    • 자원환경지질
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    • 제19권3호
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    • pp.199-218
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    • 1986
  • 울산(蔚山)의 철 중석 스카른광상에서 산출되는 유비철석(硫砒鐵石)은 그의 산출상태(産出狀態) 광물공생관계(鑛物共生關係) 화학조성(化學組成)을 근거로 세 가지 유형으로 구분된다. 유비철석(硫砒鐵石) I 은 다금속광화작용(多金屬鑛化作用) 초기에 정출된 것으로 주로 스카른대 내에서 산점상으로 분포하며, Ni-Fe-Co계 유화물과 밀접한 공생관계를 보여준다. 유비철석(硫砒鐵石) I 의 화학조성은 Ni, Co의 함량이 현저하게 높고 As/S(원자비(原子比))>1으로 과잉(過剩)의 비소를 함유한다. 유비철석(硫砒鐵石) II는 Cu 또는 As 광석중에서 산출되며, 비독사석 휘창연석 비스무스 황동석 섬아연석과 밀접한 공생관계를 보여준다. 유비철석(硫砒鐵石) II의 화학조성은 Ni, Co의 함량이 극히 미량이며, As/S>1으로 과잉(過剩)의 비소를 함유한다. 유비철석(硫砒鐵石) III은 최후기 열수광맥 형성시기에 정출되었으며, 황철석 방연석 섬아연석 자류철석과 밀접한 공생관계(共生關係)를 보여준다. 유비철석(硫砒鐵石) III의 화학조성(化學組成)은 $$As/S1{\leq_-}1$$로 과잉(過剩)의 S를 함유한다. 유비철석(硫砒鐵石) I 은 Ni, Co의 함유량이 1%이상이므로 지질온도계(地質溫度計)로 사용할 수 없지만, 유비철석(硫砒鐵石) II 는 비스무스-휘창연석의 공생관계(共生關係)를 보여 주고 있으므로, 이를 Kretschmar and Scott (1976)에 의한 $1/T-f(S_2)$도에 적용시켜보면 유비철석(硫砒鐵石) II의 정출환경은 $T=460{\sim}470^{\circ}C$, log $f(S_2)=-7.4{\sim}7.0$이고, 유비철석(硫砒鐵石) III의 정출환경은 $T=320{\sim}440^{\circ}C$, log $f(S_2)=-9.0{\sim}7.0$으로 추정된다.

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전북 번암광산의 지질과 지화학적 연구 (Studies on the Geology and Geochemistry in the Beonam Mine, Korea)

  • 정재일;나춘기;이영엽;전서령;김선영
    • 자원환경지질
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    • 제28권6호
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    • pp.623-633
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    • 1995
  • 번암광산은 소백산 육괴의 남서부에 위치하며, 소백산은 편마암 복합체를 $N20{\sim}30^{\circ}E$ 방향으로 관입하여 나타난다. 주변 화강암들은 변성화강암류의 재용융 혹은 부분용융에 의해 생성된 calc-alkaline계열의 마그마로부터 분화 생성된 산화물로 추정된다. 광상을 배태시킨 광화용액을 화강암체를 형성한 마그마로부터 유래하였다해도 시기적으로 훨씬 후기에 생성되었을 것이다. 공생광물군에 대한 연구결과 광화작용은 크게 3시기로 I기: 기저 유화광물의 생성시기, II기: 후기 유화광물, 엘렉트럼 및 함은 유영 광물의 생성시기, III기: 소량의 함은 광물, 백색석영 및 탄산염광물의 생성시기로 나눌 수 있다. 번암광산의 생성온도, 염농도 및 압력은 광물공생과 화학성분, 유체포유물, 유황동위원소 지질온도계를 이용하여 측정되었으며 다음과 같다. I기: $200{\sim}315^{\circ}C$. 3.5~6.5 NaCl eq. wt.%. 0,28~0.61 Kbar. II기: $150{\sim}235^{\circ}C$, 4.5~7.4 NaCl eq. wt.%. 0.11~0.15 Kbar로 나타난다. 초기 광화작용동안산소와 유황분압은 각각, $10^{-35.1}{\sim}10^{-39.7}$ atm., $10^{-11.0}{\sim}10^{-13.4}$atm. 으로 나타난다. 이와 같은 연구결과 번암광산은 polymetallic meso-epithermal type의 광상으로 생각된다.

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옥천지향사대(沃川地向斜帶)의 진화(進化)와 광화작용(鑛化作用) (Evolution and Mineralizations in the Ockcheon Geosynclinal Zone)

  • 윤석규
    • 자원환경지질
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    • 제4권2호
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    • pp.77-90
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    • 1971
  • About four hundred deposits of iron, talc, fluorite, tungsten, molybdenum, lead, zinc and other polymetallic mineral deposits were plotted on the Ore Distribution Map of the Ockcheon Geosynclinal Area. These mineral deposits plotted on the map can be divided into the several metallogenic zones by the consideration of their geologic background including the sedimentary and tectonic cycles and the igneous activities in the geosynclinal evolution, as follows: a. Chungju iron and talc zones. b. Cheong-san copper bearing iron sulphide zone c. Kumsan-Muju fluorite-polymetallic zones. d. Cheong-an Puyong and Ein Suckseong gold zone e. Hwang-gan Seolcheon and Sangju gold zones. Chungju iron zone originated in the iron bed in the Kemyongsan Series corresponding to the Pre-Ockcheon Cycle of evolution history. In early period of the Ockcheon Cycle, Hyangsanri quartzite and Munjuri phyllitic formation corresponding to the lower terrigenous sequence were not mineralized while the next sequence of the Samsungsan basic igneous-metamorphic formation and the Changri limestone formation were mineralized by the copper bearing iron sulphide and the fluorite-polymetallic deposits respectively. Two generations of the gold zones are recognized. The earlier generation distributes directionaly in the outside of the Ockcheon sedimentary belt was followed by the earlier grantitic invasion of Jurasic in age, while the later generation scatters at random which was related to the nondirectional Cretaceous granitic intrusion of the Post-Ockcheon Cycle. Conclusively speaking, it was disclosed that the endogenic mineralization in the Ockcheon geosyn clinal zone was not conspicuous in its inner sedimentary belt except its limestone area but in its outer peripheral granitic or gneissic zones, and the related igneous activities occured in the Post-Ockcheon Cycle of evolution history.

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동진광산의 지질과 금은광화작용 (Geology and Gold-Silver Mineralization of Dongjin Mine)

  • 정재일;김선영
    • 자원환경지질
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    • 제29권3호
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    • pp.395-405
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    • 1996
  • The Donjin deposits which is located in the Chinan Basin, are emplaced along $N10{\sim}40^{\circ}E$ trending fissure sets. So it is a sort of fissure-filling ore deposits. The results of paragenetic studies suggest two stages of hydrothermal mineralization; stage I: base-metal sulfides stage, stage II: late base-metal sulfides, electrum and silver-bearing sulfosalts stage. Au: Ag ratios of the electrums show that Ag atomic% are higher than that of Au. The temperature and salinity of the Donjin deposits estimated from fluid inclusion and sulfur isotope geothermometry are as follows; stage I: $240{\sim}315^{\circ}C$, 2.4~7.1 NaCl eq. wt.%, stage II: $190{\sim}268^{\circ}C$, 4.6~8.4 NaCl eq. wt.%. The estimated oxygen and sulfur fugacity during first stage mineralization, based on phase relation of associated minerals, range from $10^{-35}{\sim}10^{-39.7}$ atm. and$10^{-11}{\sim}10^{-13.4}$ atm., respectively. All these evidences suggest that the Dongjin deposits are polymetallic meso-epithermal ore deposits.

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한국이 탐사 중인 해저광물자원의 희유금속 함량과 의미 (Rare Metal Contents and Their Implications of Seabed Mineral Resources Explored by Korea)

  • 박상준;문재운;이경용;지상범
    • 자원환경지질
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    • 제43권5호
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    • pp.455-466
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    • 2010
  • 한국이 현재 탐사하고 있는 해저광물자원의 유형은 망간단괴, 망간각, 다금속황화광체 등으로 구분된다. 망간단괴에 함유되어 있는 주요 희소금속은 Pt로 지각함량 대비 최대 400 배까지 부화되어 있다. 망간단괴의 총 희토류 함량은 0.037~0.302 REO %, 평균 0.12 REO %를 보인다. 망간각의 주요 희소금속은 Te 및 Pt로 각각 10800 배, 150배 정도의 부화량을 보인다. 총 희토류 함량은 0.013-0.387 REO %, 평균 0.18 REO %로 망간단괴 보다 다소 높은 함량을 보인다. 다금속화황광체의 주요 희소금속은 Se 및 In으로 각각 1300 배, 110 배의 높은 부화량을 보이며, 금(0.8~26.3 g/t), 은(0.9~348.0 g/t) 등의 귀금속이 함유된다. 해저광물자원에 함유되어 있는 희유금속은 채광 예상 금속 종인 Co, Ni, Cu 등의 채광 경제성을 높여 줄 것으로 생각되며 첨단산업을 위한 희유금속 확보 차원에서 의미가 있다.

베트남 북부 카우록 다중금속 산출지의 특성: 예비연구 (Characteristics of Polymetallic Occurrence in Kau Loc Area within Northern Vietnam: Preliminary Study)

  • 허철호;지세정;박성원;이재호
    • 자원환경지질
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    • 제44권5호
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    • pp.345-357
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    • 2011
  • 베트남 북부 카우록 광화대의 연-아연, 텅스텐 산출지에 대한 지질광상조사를 실시했다. 연-아연 산출지는 석회암층의 층리에 평행하게 광체를 배태하고 었다. 지표품위와 지질학적 매장량을 고려할 때, 연-아연 산출지는 소-중규모로 판단된다. 반면 데본기 석회암을 관입하고 있는 소규모 암주의 분포를 고려할 때, 텅스텐 산출지는 스카른 광화작용의 부존이 기대되는 적절한 조건을 가지고 있다. 그러나, 정밀지질광상조사가 결여되었기 때문에 현재 상황에서 경제적 타당성을 인지할 만한 증거는 없는 것으로 사료된다.

Application of Multivariate Statistics and Geostatistical Techniques to Identify the Distribution Modes of the Co, Ni, As and Au-Ag ore in the Bou Azzer-East Deposits (Central Anti-Atlas Morocco)

  • Souiri, Muhammad;Aissa, Mohamed;Gois, Joaquim;Oulgour, Rachid;Mezougane, Hafid;El Azmi, Mohammed;Moussaid, Azizi
    • 자원환경지질
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    • 제53권4호
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    • pp.363-381
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    • 2020
  • The polymetallic Co, Ni, Cu, As, Au, and Ag deposits of Bou Azzer East are located in the western part of the Bou Azzer inlier in the Central Anti Atlas, Morocco. Six stages of emplacement of the mineralization have been identified. Precious metals (native gold and electrum) are present in all stages of this deposit except the early nickeliferous stage. From the Statistical analysis of the Co, As, Ni, Au, and Ag contents of a set of 501 samples, shows that the Pearson correlation coefficient between As-Co elements (0.966) is the highest followed by that of the Au-Ag couple (0.506). Principal component analysis (PCA) and hierarchical ascending classification (HAC) of the grades show, that Ni is associated with the pair (As-Co) and Cu is rather related to the pair (Au-Ag). The kriging maps show that the highest values of the Co, As and Ni appear in the contact of the serpentinite with other facies, as for those of Au and Ag, in addition to anomalous zones concordant with those of Co, Ni and As, they show anomalies at the extreme South and North of the study area. The development of the anomalous Au and Ag zones is mainly along the N40-50°E and N145°E directions.