Archaeometry · 2020 · 20 citations · 56 references
EngineeringTrace Element GeochemistryMetallurgical Operational ChainCu Sulphide OreChemistryMineral ProcessingCu Isotope EvolutionChemical EngineeringExperimental ApproachGeochronologyTrace ElementIsotope AnalysisMaterials ScienceTrace MetalGeologyElemental MetalExtractive MetallurgyOre GenesisIsotope GeochemistryCu IsotopesCopper Isotope FractionationStable Isotope ProbingGeochemistryChemical KineticsPetrology
Until today, raw material information of copper (Cu) objects is mostly gained from impurities and trace elements and not from the Cu itself. This might be obtained using its stable isotopes. However, isotopic fingerprinting requires the absence of fractionation during the smelting process. The Cu isotope evolution during outdoor smelting experiments with Cu sulphide ore was investigated. It is shown that external materials, in particular furnace lining, clay, manure and sand, alter the isotopic composition of the smelting products. Cu isotopes are fractionated within low viscosity slag derived from matte smelting. The produced metallic Cu has a Cu isotope signature close to the ore.
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The Isotope Geochemistry of Zinc and Copper
Frédéric Moynier, Derek Vance, Toshiyuki Fujii et al. · Reviews in Mineralogy and Geochemistry · 2017 · 367 citations · Full text