• Title/Summary/Keyword: Ore minerals

Search Result 354, Processing Time 0.033 seconds

Geology and Mineralization of the Iscaycruz Pb-Zn-Cu Project, Central Peru (페루 중부 이스카이크루즈 연-아연-동 프로젝트의 지질 및 광화작용)

  • Heo, Chul-Ho;Nam, Hyeong-Tae
    • Korean Journal of Mineralogy and Petrology
    • /
    • v.34 no.1
    • /
    • pp.57-67
    • /
    • 2021
  • The geology of the Iskaycruz project are mainly composed of sedimentary rocks within Cretaceous basin. The basal part is composed up of dark-gray shale, gray sandstone, and clastic rock of Oyon formation interbedded with coal measures. In the folded zone in the eastern part of the survey area, there is Chimu formation that has medium-grained massive and white quarztite. In terms of geological structure, the Iskaykruz region is located in the folded and overthrust zones of the central part of the Occidental Mountains. Ore body was formed by hydrothermal replacement process and consists of zinc, lead, silver, and copper. Stratabound-type deposits are hosted in limestone of Santa formation. It extends 12 kilometers discontinuously from northern Canaypata to southern Antapampa. Irregular iron oxide and sulfide minerals hosted in Santa and Parihuanca formations are observed. The mineralization observed on the surface consist of primary sulfides consisting of sphalerite with galena and chalcopyrite, and iron and manganese oxide produced from oxidation of primary sulfides. Skarn minerals are accompanied by tremolite, garnet, epidote and quartz.

Au-Ag Minerals and Genetic Environments from the Yeongdeog Gold-Silver Deposits, Korea (영덕(盈德) 금(金)-은광상(銀鑛床)에서 산출(産出)되는 금(金)-은광물(銀鑛物)과 광상(鑛床)의 생성환경(生成環境))

  • Lee, Hyun Koo;Yoo, Bong-Cheal;Kim, Sang Jung
    • Economic and Environmental Geology
    • /
    • v.28 no.6
    • /
    • pp.541-551
    • /
    • 1995
  • The Yeongdeog gold-silver deposits at Jipum, Gyeongsangbugdo, is of a middle Paleogene $(45.52{\pm}1.02Ma)$ vein type, and is hosted in shale and sandstone of Cretaceous age. Based on mineral paragenesis, vein structure and mineral assemblages, the ore mineralization can be divided into two distinct depositional stages. The early stage is associated with base-metals such as pyrite, arsenopyrite (27.99~30.99 at%), hematite, rutile, pyrrhotite, sphalerite (10.53~18.42 FeS mole%), chalcopyrite and galena with wallrock alteration such as chlorite, sericite and pyrite. The late stage is characterized by the Au-Ag mineralization such as electrum, Ag-bearing tetrahedrite, freibergite, pyrargyrite, unidentified mineral, pyrite, sphalerite (1.08~5.57 FeS mole%), chalcopyrite and galena. Fluid inclusion data indicate that fluid temperatures and salinities range from 343 to $227^{\circ}C$ and from 8.3 to 5.7 wt% eq. NaCl in early stage, respectively. Temperatures and salinities of NaCl eq. wt% range from 299 to $225^{\circ}C$ and from 12.9 to 4.3 in late stage, respectively. They suggest that complex cooling histories were occured by the mixing of the fluids. Sulfur fugacity $(-logfs_2)$ deduced by mineral assemblages and composition ranges from 8.3 to 14.7 atm. in early stage, and from 8.8 to 14.5 atm. in late stage. It suggests that the mineralization was related to decrease of temperature in early stage and fluctuations of $fS_2$ with decrease of temperature in late stage. Sulfur and oxygen isotope compositions are 4.48~5.60‰ and 9.25~10.8% in early stage, and late stage is 4.84~7.00‰ and 5.7‰, respectively. It indicated that hydrothermal fluids may be magmatic origin with some degree of mixing of another water during paragenetic time.

  • PDF

Development of Micronutrient Fertilizer -I. Characteristics of Raw Materials and Products (종합미량원소비료(綜合微量元素肥料)의 개발(開發)에 관(關)한 연구 -I. 원료(原料) 및 제품(製品)의 특성(特性))

  • Lim, Dong-Kyu;Seong, Ki-Seog;Shin, Jae-Sung;Park, Young-Sun
    • Korean Journal of Soil Science and Fertilizer
    • /
    • v.14 no.2
    • /
    • pp.88-94
    • /
    • 1981
  • A trial manulacturing of the micronutrient fertilizer made of local mineral ores was conducted. A powdered mixture of raw materials was fused in an electric furnance and the molten matrix was quenched, dried and milled. Some informations from the manufacturing were summarized as followings. 1. Of all the ore minerals, only borax and manganese ores could be molten independently. 2. Borax was the best material for decreasing the molten temperature. 3. The molten temperature was increased with increased Ca and Mg content of the mixture. 4. The amounts of 2 % citric acid soluble Fe, Zn, and Mo were increased rapidly with increased temperature, but those of B and Mn were constant. 5. During the manufacturing process, the nutrient loss was high in order of boron, zinc and molybdenium.

  • PDF

The Optimization of Silver Leaching from the Samjo Mine Concentrate by Thiourea (티오요소를 이용한 삼조광업 정광으로부터 은 용출 최적화)

  • Yang, Gwon-Seung;Kim, Bong-Ju;Choi, Nag-Choul;Park, Cheon-Young
    • Journal of the Mineralogical Society of Korea
    • /
    • v.26 no.1
    • /
    • pp.1-8
    • /
    • 2013
  • This study was carried out to test the possibility of using an environmentally friendly method of leaching silver concentrate from the Samjo mine. The Samjo mine ore contained minerals such as pyrite, chalcopyrite, galena, arsenopyrite, and sphalerite. The concentrate samples tested with the thiourea solution were roasted at $750^{\circ}C$. The results of different experimental conditions showed that the highest silver leaching rate was obtained when the concentration of thiourea was at 0.8 g with ferric sulfate at 0.425 g and the leaching temperature at $60^{\circ}C$. The Ag leaching rate obtained was 91.5% at a pulp density of 10%. However, in the XRD analysis, peaks of pyrite, galena, and hematite were still found in the leached solid residues in which the Ag leaching rate was the highest. it is expected that the unrecovered silver in the solid residue can be lost.

Uranium Occurrences, and Process Development for Recovering Uranium and Vanadium from Uranium Ore in Coaly Meta-Pelites in Ogcheon Terrain, Korea (I) (한반도(韓半島) 옥천대(沃川帶) 탄질이암층중(炭質泥岩層中)의 저품위(低品位) 우라늄광(鑛)의 부존상태(賦存狀態) 및 우라늄, 바나듐 회수공정개발연구(回收工程開發硏究) ( I ))

  • So, Chil-Sup;Choi, Cheong-Song
    • Economic and Environmental Geology
    • /
    • v.17 no.1
    • /
    • pp.35-47
    • /
    • 1984
  • Combined mineralogical and geochemical studies were made on two hundred eighty one representative samples from uraniferous coaly meta-pelites of the Ogcheon metamorphic terrain. Different mineral occurrence of the areas investigated should be taken into account for chemical processes for uranium extraction. Secondary uranium minerals identified are metauranocircite, metatorbernite and autunite. These are disseminated mostly on the laumontites which infused and filled secondary openings in the coaly matrix, and are often closely associated with iron oxides. The uranium distribution show distinctly log normal. Geochemical correlation coefficient of uranium and organic carbon displays +0.624~+0.796. The relationship of the major components to uranium can be expressed by the following regression equation: Log $(U_3O_8{\times}10^4)$=1.40117-0.00076 (quartz) -0.00118 (muscovite) +0.00235 (biotite) +0.00323 (other silicates) - 0.01114 (apatite) +0.01124 (hematite) +0.00149 (limonite) -0.01823 (opaques)+0.03049 (organic carbon). Uranium in the coaly meta-pelites of the Ogcheon Group was deposited together under same physico-chemical environmental conditions. There is a considerable variation in the ${\delta}^{34}S$ values (11.2~16.8 per mil) of the pyrites from the U-bearing meta-pelites, which implies sedimentary origin. The two U-bearing coaly rocks analyzed have ${\delta}^{13}C$ values between -16.88~-18.00 per mil, which suggests organic.

  • PDF

Ore Minerals, Fluid Inclusions and Stable Isotopes of the Yucheon Bismuth Deposits, Korea (류천(柳川) 창연광상(蒼鉛鑛床) 광석광물(鑛石鑛物), 유체포유물(流體包有物) 및 안정동위원소(安定同位元素))

  • Lee, Hyun Koo;Yoo, Bong-Cheal;Kim, Sang Jung
    • Economic and Environmental Geology
    • /
    • v.29 no.2
    • /
    • pp.139-150
    • /
    • 1996
  • The Yucheon Bi deposits at Cheongha, Gyeongsangbugdo, is of a middle Paleogene (49 Ma) vein type, and is hosted in sandstone and shale of Banyawal formation in Cretaceous age. Based on mineral paragenesis, vein structure and mineral assemblages, two minera1ization stages were distinguished. The stage I consists of quartz with small amount of chlorite, pyrite, epidote, hal1oysite, vermiculite, serpentine and rutile associated with sericitization. The stage II is characterized by Bi minera1ization such as bismuthinite, Bi-Cu-Pb-S mineral, tetradymite, native gold, pyrite, pyrrhotite, arsenopyrite, wolframite, rutile, hematite, sphalerite, chalcopyrite, galena with alteration of sericite, chlorite, K-feldspar, albite and epidote. Fluid inclusion data indicate that fluid temperature and NaCl equivalent wt.% salinity range from 431 to $150^{\circ}C$ and from 19.2 to 0.18wt.% in the stage II. Evidence of boiling during the base-metal minera1ization indicates pressures 241 to 260 bars. Sulfur fugacity($-log\;f_{S2}$) deduced by mineral assemblages and compositions ranges from 5.1 to 5.7atm in early stage, from > 8.4 atm in middle stage and from 13.5 to 19.3 atm in late stage. It suggests that complex histories of progressive coo1ing, dilution and boiling were occurred by the mixing of the fluids. The ${\delta}^{34}S$, ${\delta}^{18}O$ and ${\delta}D$ data range from 2.5 to 3.9%, -0.5 to -4.1% and -29.7 to -47%, respectively. It indicated that hydrothermal fluids may be magmatic origin with boiling and mixing of meteoric water increasing paragenetic time.

  • PDF

Analysis of Regional Potential Mapping Factors of Metal Deposits using Machine Learning (머신러닝을 이용한 광역 금속 광상 배태 잠재성 평가 인자 분석)

  • Park, Gyesoon
    • Geophysics and Geophysical Exploration
    • /
    • v.23 no.3
    • /
    • pp.149-156
    • /
    • 2020
  • The genesis of ore bodies is a very diverse and complex process, and the target depth of mineral exploration increases. These create a need for predictive mineral exploration, which may be facilitated by the advancement of machine learning and geological database. In this study, we confirm that the faults and igneous rocks distributions and magnetic data can be used as input data for potential mapping using deep neural networks. When the input data are constructed with faults, igneous rocks, and magnetic data, we can build a potential mapping model of the metal deposit that has a predictive accuracy greater than 0.9. If detailed geological and geophysical data are obtained, this approach can be applied to the potential mapping on a mine scale. In addition, we confirm that the magnetic data, which provide the distribution of the underground igneous rock, can supplement the limited information from the surface igneous rock distribution. Therefore, rather than simply integrating various data sets, it will be more important to integrate information considering the geological correlation to genesis of minerals.

Laboratory Study for Phosphate Coating on Pyrite Surface for Reduction of Acid Rock Drainage (건설현장의 산성암반배수 발생저감을 위한 철인산염 피막형성 최적조건 도출 실내연구)

  • Lee, Gyoo-Ho;Kim, Jae-Gon;Lee, Jin-Soo;Kim, Tack-Hyun;Lee, Sang-Hoon;Song, Yun-Goo
    • Proceedings of the Korean Geotechical Society Conference
    • /
    • 2006.03a
    • /
    • pp.1083-1089
    • /
    • 2006
  • Acid drainage occurs when sulfide minerals are exposed to an oxidizing environment. The objective of this study was to examine the optimum condition for creating a phosphate coating on standard pyrite surfaces for reduction of pyrite oxidation. The solution of $10^{-2}M\;KH_2PO_4\;10^{-2}M\;H_2O_2$ pH 6 was identified as the best phosphate coating agent for the reduction of pyrite oxidation. The formation of an iron phosphate coating on pyrite surfaces was confirmed with ore microscope and scanning electron microscope equipped with energy dispersive spectroscopy. The temperature did not significantly affect on the formation of phosphate coating on the surface of pyrite. However, the phosphate coating was less stable at higher temperature than at lower temperature. The phosphate coating was quitely stable at wide range of pH and $H_2O_2$ concentration. The less than 3.4% of phosphate was dissolved at pH 2.79 and 10.64 and less than 1.0% of phosphate was dissolved at 0.1M $H_2O_2$. On the basis of these results, the phosphate coating can effectively reduce the negative environmental of acid rock drainage.

  • PDF

Occurrence of the Nb-Ta Ore Bodies in Pegmatites, Mujoo (무주 페그마타이트 내 Nb-Ta 광화대의 산출상태)

  • Kang, Min-Woo;Kim, Ji-Hyun;Choi, Jin-Beom
    • Journal of the Mineralogical Society of Korea
    • /
    • v.24 no.2
    • /
    • pp.133-143
    • /
    • 2011
  • In Mujoo area, the granitic pegmatites are developed in the granitic gneiss complex with Jurassic gneissic granites, where Nb-Ta mineralization were reported. Pegmatites are mainly composed of large crystals of quartz, feldspars of end-member orthoclase and albite, and muscovite. Nb-Ta minerals in study area are columbite (Nb > Ta) in composition. Chemistry of muscovites shows post-magmatic in origin and they are closely related with columbite. Large columbite, in pegmatites occurred with quartz and feldspars, while microcrystalline columbite is associated with muscovite. The Nb contents in large columbite are relatively higher than those in microcrystalline ones. Two pegmatites, 4~15 m in width and 120 m, 250 m in extension respective1y, are developed. Five drilling cores with total 600 m in length are finally obtained and revealed no possible potential for economic rare metals of Na-Ta deposits.

Analysis of Mineral Resource Exploration and Strategy in Australia (호주 광물자원탐사와 전략분석)

  • Kim, Seong-Yong;Heo, Chul-Ho
    • Economic and Environmental Geology
    • /
    • v.51 no.3
    • /
    • pp.291-307
    • /
    • 2018
  • Australia is the world's top gold, nickel, iron ore, lead, zinc and uranium, and is ranked in the top five in many other important minerals. Extension to existing resources will continue to support well-established local production. There are perceptions by some that Australia is a mature exploration destination where the easily won near-surface deposits were largely discovered many decades ago. In recent years, Australia faces increasing global competition for investment spending in all jurisdictions in which mineral exploration is encouraged. Many regional communities face the threat of losing their main economic driver as a number of long-term mines are reaching the end of their economic life. However, given the trend of increasing mineral demand due to the 4th industrial revolution, it is considered that Korea is also an opportunity to acquire global competitiveness of geoscience and mining technology by smart and digital mining, and by ICT-convergence technology R&D.