4.7 Article

Thermal treatment of Lanxess Lewatit® AF 5 resin used in the atmospheric chalcopyrite leaching process: Regeneration and sulfur recovery

期刊

CHEMOSPHERE
卷 295, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chemosphere.2022.133890

关键词

Sulfur; Chalcopyrite; Lewatit AF 5; Desulfurization; Carbon catalyst; Thermal process

资金

  1. Natural Sciences and Engineering Research Council of Canada (NSERC)
  2. Glencore Technology [CRDPJ 531189-18]

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This study investigates the use of Lanxess Lewatit(R) AF 5 catalyst to eliminate elemental sulfur during the leaching process in acidic Albion. AF 5 showed high recoveries of copper and iron, and collected 100% of the elemental sulfur. High temperature treatment successfully removed sulfur from the catalyst, and the regenerated catalyst could be reused without significant loss in sulfur absorption. The activation energy for AF 5 desulfurization was found to be 164.5 kJ/mol.
Elemental sulfur is a key component in the acidic Albion chalcopyrite atmospheric leaching process and is a challenging issue in the residue. It has been proposed to use Lanxess Lewatit (R) AF 5 (AF 5) catalyst during the leaching of copper concentrates in the acidic Albion leach process, to eliminate the elemental sulfur from the leach residue. When using AF 5 during leaching, the copper and the iron recoveries were above 95% and 80%, respectively. The AF 5 collected 100% of the elemental sulfur and for a 1:1 ratio of AF 5 to concentrate, the loaded AF 5 gained 12.3 wt% sulfur after the first acidic Albion leach test and contained 24.3 wt% sulfur after two leaching tests. In this study, the optimum conditions for the removal of sulfur from the catalyst were investigated using a high temperature process in a laboratory tube furnace. The results indicated that the maximum desulfurization of 90.1% was achieved at 550 degrees C after 10 min. The regenerated AF 5 could be reused for several chalcopyrite leaching-AF 5 cycles. For the recycled AF 5, the sulfur absorption decreased by only 1.0% while the recoveries of copper and iron were not affected. The kinetic study showed that the activation energy for AF 5 desulfurization was 164.5 kJ/mol;

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