Article citationsMore>>
Fujita, T., Fujieda, S., Shinoda, K. and Suzuki, S. (2012) Scorodite Solubility and Storage Management System for Arsenic-Bearing Compounds. In: Wang, S., Dutrizac, J.E., Free, M.L., Hwang, J.Y. and Kim, D., Eds., T.T. Chen Honorary Symposium on Hydrometallurgy, Electrometallurgy and Materials Characterization, The Minerals, Metal &Materials Society (TMS), Orlando, 407-417.
https://doi.org/10.1002/9781118364833.ch36
has been cited by the following article:
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TITLE:
Pyrometallurgical Removal of Arsenic from Electrostatic Precipitators Dusts of Copper Smelting
AUTHORS:
Hector Henao, Ignacio Paredes, Rodrigo Diaz, Javier Ortiz
KEYWORDS:
Copper Smelter Dust, Electrostatic Precipitators of Copper, Removal of Arsenic, Sulfidation, Roasting Process
JOURNAL NAME:
Journal of Minerals and Materials Characterization and Engineering,
Vol.9 No.6,
November
5,
2021
ABSTRACT: This work describes the experimental results of pyrometallurgical removing of arsenic from the dust collected in the electrostatic copper precipitators within the gas cleaning system of a Copper Flash Smelting Furnace. The generation of dust in the copper smelting worldwide ranges from 2 - 15 wt% per ton of a copper concentrate. In Chile, copper smelters produce approximately 110 kt/y of dust with a concentration of arsenic between 1 and 15 wt%. The dust is a complex of metals oxides and sulfurs with copper concentrations greater than 10 wt% and relatively high silver concentrations. Since its high arsenic concentration, it is difficult to recover valuable metals through hydrometallurgical processes or by direct recirculation of the dust in a smelting furnace. Thus, the development of pyrometallurgical processes aimed at reducing the concentration of arsenic in the dust (