Search results for "Galena"

showing 5 items of 5 documents

Characterization of prehispanic cosmetics found in a burial of the ancient city of Teotihuacan (Mexico)

2012

The present paper reports the chemical data obtained on samples of pigmenting materials contained in 31 miniature vessels found in a burial found in Teopancazco, a multiethnic neighborhood center located in the southeastern sector of the archaeological site of Teotihuacan (Central Mexico) and the analytical protocol established for the complete characterization of these archaeological materials. For this purpose a multi-technique approach based on the combination of several non destructive and micro-destructive instrumental techniques, namely, light microscopy (LM), scanning electron microscopy-X-ray micro-analysis (SEMe EDX), transmission electron microscopy (TEM), voltammetry of micropart…

XRD/ m XRDArcheologyMesoamericaVoltammetry of microparticlesEnergy-dispersive X-ray spectroscopyPyroclastic rockengineering.materialElectron Microscopy Service of the UPVMicroanalysisGalenaTeotihuacanJarositeCosmeticLight microscopySEM e EDXArchaeologyGC e MSCharacterization (materials science)FTIR spectroscopyPINTURATEMUV e Vis spectrophotometryengineeringMicaGeologyJournal of Archaeological Science
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PETTERDITE, THE Cr-DOMINANT ANALOGUE OF DUNDASITE, A NEW MINERAL SPECIES FROM DUNDAS, TASMANIA, AUSTRALIA AND CALLENBERG, SAXONY, GERMANY

2000

Petterdite is a newly discovered hydrated lead chromium hydroxyl carbonate, the Cr 3+ -dominant analogue of dundasite, with a formula PbCr 2 (CO 3 ) 2 (OH) 4 ·H 2 O. The type locality is the Red Lead mine, on the Zeehan–Dundas mining field in northwestern Tasmania, Australia. The mineral also occurs in small amounts at the Callenberg nickel deposit, Saxony, Germany. Petterdite forms thin crusts made up of tiny platy crystals up to about 15 μm across, associated with crocoite and anglesite at the type locality, and with crocoite, cerussite, bindheimite, pyromorphite, and relict galena at Callenberg. The petterdite crusts are pale greyish to pinkish violet and non-fluorescent; they have an ea…

Mineralchemistry.chemical_elementengineering.materialCrocoiteCrystallographyPyromorphiteChromiumchemistryGeochemistry and PetrologyGalenaAnglesiteengineeringPleochroismMohs scale of mineral hardnessThe Canadian Mineralogist
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Distribution of trace elements in willemite from the Belgium non-sulphide deposits

2019

Samples of willemite (Zn2SiO4) mineralization from the historical non-sulphide Zn–Pb deposits of La Calamine (eastern Belgium) have been recovered from collections of the Geological Survey of Belgium. Textural and chemical analyses are used to evaluate the critical element distribution (Ge, In, Ga) and deportment. willemite occurs as a variety of types that continuously formed between the protore stage (sulphides) and the late supergene stage (carbonates and hydrated phases). Different types of willemite may be distinguished on the basis of their shape and zoning characteristics, supporting a polyphase non-sulphide mineralization after the protore stage. This is also marked by a significant…

Mineralization (geology)ChemistryGermanium05 social sciencesWillemiteGeochemistrychemistry.chemical_element[SDU.STU]Sciences of the Universe [physics]/Earth SciencesWillemiteZincengineering.materialHydrothermal circulationSupergeneNon-sulphide zinc depositsSphaleriteGeochemistry and PetrologyGalena[SDU]Sciences of the Universe [physics]0502 economics and businessCritical elementsengineering050211 marketingInductively coupled plasma050203 business & management[SDU.STU.MI]Sciences of the Universe [physics]/Earth Sciences/MineralogyEuropean Journal of Mineralogy
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Sulfide ore facies, fluid inclusion and sulfur isotope characteristics of the Tappehsorkh Zn-Pb ( ± Ag-Ba) deposit, South Esfahan, Iran

2020

International audience; The stratiform, stratabound Tappehsorkh Zn-Pb (± Ag-Ba) deposit, located in the southeastern part of the Malayer-Esfahan Metallogenic Belt of Iran, formed during Lower Cretaceous back-arc extension. Sulfide mi-neralization occurs within dolostone, black siltstone, and crystal lithic tuff and andesite associated with the Gushfil-Baghabrisham synsedimentary normal fault. Three sulfide ore facies (massive, bedded, and stockwork) occur in the deposit. Sulfide minerals are sphalerite, galena, tetrahedrite and pyrite with minor chalcopyrite and bornite, and gangue minerals are barite, dolomite and quartz. Sulfide mineralization textures are massive, replacement , vein-vein…

chemistry.chemical_classificationStockworkMineralization (geology)SulfideChalcopyriteGeochemistryengineering.material010502 geochemistry & geophysics01 natural sciencesSulfide mineralsGeophysicsSphaleritechemistryGeochemistry and PetrologyGalenavisual_artengineeringvisual_art.visual_art_mediumBorniteGeology0105 earth and related environmental sciences[SDU.STU.MI]Sciences of the Universe [physics]/Earth Sciences/Mineralogy
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Lead isotopes of the carbonate-hosted Kabwe, Tsumeb, and Kipushi Pb-Zn-CU sulphide deposits in relation to Pan African orogenesis in the Damaran-Lufi…

1999

Lead isotope ratios of galena from the carbonate-hosted massive sulphide deposits of Kabwe (Pb-Zn) and Tsumeb (Pb-Zn-Cu) in Zambia and Namibia, respectively, have been measured and found to be homogeneous and characteristic of upper crustal source rocks. Kabwe galena has average isotope ratios of 206/204Pb = 17.997 ± 0.007, 207/204Pb = 15.713 ± 0.010 and 208/204Pb = 38.410 ± 0.033. Tsumeb galena has slightly higher 206/204Pb (18.112 ± 0.035) and slightly lower 207/204Pb (15.674 ± 0.016) and 208/204Pb (38.276 ± 0.073) ratios than Kabwe galena. The isotopic differences are attributed to local differences in the age and composition of the respective source rocks for Kabwe and Tsumeb. The homog…

[SDE] Environmental SciencesRadiogenic nuclideContinental crust[SDV]Life Sciences [q-bio]DolomiteGeochemistryMineralogyFold (geology)engineering.materialMantle (geology)MINERALOGIE[SDV] Life Sciences [q-bio]chemistry.chemical_compoundGeophysicschemistryGeochemistry and PetrologyGalenaGEOCHIMIE[SDE]Environmental SciencesengineeringCarbonateEconomic GeologyPyriteGeology
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