The Effect of Roasting on the Mineralogical Structure and Cyanidation Performance of Gossan Type Oxidized Refractory Gold‑Silver Ores - Mining, Metallurgy & Exploration (2023)
- Organization:
- Society for Mining, Metallurgy & Exploration
- Pages:
- 13
- File Size:
- 2491 KB
- Publication Date:
- Aug 21, 2023
Abstract
This article includes the application of roasting pretreatment by assisting the cyanidation process in the recovery of
Au–Ag from Bolkardağ Gossan refractory ore and the characterization studies of the ore, roasting sample, and postcyanidation
waste sample. While ore contained many metals along with gold and silver, the environment in which these
metals were found was carbonate, sulfated, silicated, and iron oxide-containing deposits that have undergone oxidation.
In mineralogical studies, there were Fe oxy/oxyhydroxides, Pb/Zn carbonates, and jarosite-bearing structures such as
beudantite, calcite, dolomite, clay, and quartz in the ore. The sample used in the experiments was d80
= 29.6 μm, and
the test parameters were determined by examining the TG analysis made to the ore. Preroasting experiments were carried
out at a roasting temperature range of 200–800 °C, during a roasting period of 10.0 min. Three different samples
were characterized by TG for temperature changes, FT-IR for bond structures and permeability, SEM/EDX for visual
inspection of structural changes, and XRD Rietveld’s analysis for mineral % content differences. As a result of the
cyanidation experiments carried out after the pretreatment, gold was recovered with 80–90% yields and silver with
40–48% yields, respectively.
Citation
APA: (2023) The Effect of Roasting on the Mineralogical Structure and Cyanidation Performance of Gossan Type Oxidized Refractory Gold‑Silver Ores - Mining, Metallurgy & Exploration (2023)
MLA: The Effect of Roasting on the Mineralogical Structure and Cyanidation Performance of Gossan Type Oxidized Refractory Gold‑Silver Ores - Mining, Metallurgy & Exploration (2023). Society for Mining, Metallurgy & Exploration, 2023.