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Effect of the Flux-Assisted Thermal Treatment of Industrial Ammonium Jarosite: Thermodynamic Mechanisms and Mineralogical Evolution

delete2026-08-13
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OA
AI
J
Jose Enrique Sanchez Vite
A
Alejandro Cruz‐Ramírez *
A
Alberto Hernandez Casimiro
M
Manuel Eduardo Flores Favela
J
José Antonio Romero Serrano
E
Eduardo Colin García
J
Juan Cancio Jiménez-Lugos
M
Miguel Pérez Labra
L
Ljubiša Balanović
DOI:10.3390/pr14162570delete
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Abstract

Abstract

En 中文
Jarosite-type residues generated during zinc hydrometallurgical processing represent a significant environmental liability and a latent source of valuable metals (Zn, Pb, Ag). In this study, the thermal decomposition and mineralogical evolution of an industrial ammonium jarosite residue were investigated to 600–1400 °C. The behavior of the as-received residue was compared against a designed flux-assisted formulation comprising 45 wt% jarosite, 40 wt% Na2CO3, and 15 wt% SiC. The conventional roasting of pure jarosite forms refractory zinc ferrite (ZnFe2O4) and releases SO2 above 800 °C, while the flux-assisted route stabilized the sulfur as Na2SO4 and CaSO4, decreasing toxic gas emissions. Concurrently, the reducing effect of the SiC significantly inhibited bulk zinc ferrite formation up to 1200 °C and favored the partial reduction of iron to magnetite (Fe3O4). Thermodynamic assessment using FactSage reasonably matches experimental results by X-ray diffraction and SEM-EDS measurements. The thermodynamic evaluation predicts the formation of elemental silver available for subsequent pickup by a collector metal and a liquid slag phase at approximately 1000 °C for the flux-assisted jarosite samples. The ammonium jarosite flux-assisted roasting strategy enhances the potential for metal recovery while increasing environmental sulfur fixation in the slag, aligning with sustainable circular economy principles in non-ferrous metallurgy.
Keywords:
ammonium jarosite
flux-assisted roasting
sulfur fixation
zinc recovery
thermodynamic modelling
circular economy

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instituto politécnico nacional
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university of belgrade
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