Hydrometallurgical Processing of Chalcopyrite by Attrition-Aided Leaching

被引:4
作者
Dakkoune, Amine [1 ]
Bourgeois, Florent [1 ]
Po, Adeline [1 ,2 ]
Joulian, Catherine [2 ]
Hubau, Agathe [2 ]
Touze, Solene [2 ]
Julcour, Carine [1 ]
Guezennec, Anne-Gwenaelle [2 ]
Cassayre, Laurent [1 ]
机构
[1] Univ Toulouse, CNRS, Lab Genie Chim, INP,UPS, F-31432 Toulouse, France
[2] BRGM Bur Rech Geol & Minieres, Water Environm & Processes Analyses Div, F-45100 Orleans, France
来源
ACS ENGINEERING AU | 2023年 / 3卷 / 03期
关键词
hydrometallurgy; chalcopyrite sulfuric leaching; attrition-leaching; particle size; depassivation; PART I; MINERAL CARBONATION; FERRIC ION; DISSOLUTION; KINETICS; PRESSURE; SULFATE; TEMPERATURE; MECHANISM; OXIDATION;
D O I
10.1021/acsengineeringau.2c00051
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
We report the investigation of a chalcopyrite leaching process that implements millimeter-sized glass beads that are stirred in the leach reactor to combine particle grinding, mechanical activation, and surface removal of reaction products. The paper focuses on demonstrating the impact of the so-called attrition-leaching phenomenon on the leaching rate of a chalcopyrite concentrate and provides a first understanding of the underlying mechanisms. For this purpose, we have compared the copper leaching yield for different configurations under controlled chemical conditions (1 kg of glass beads and 84 g of chalcopyrite concentrate in 2.5 L of H2SO4-H2O solution, pH = 1.3, E-h = 700 mV vs SHE, and T = 42 degrees C). On top of elemental analysis of the leach solution with time, we provide a full characterization of the solid residue based on X-ray diffraction, elemental analysis, and sulfur speciation. We demonstrate that glass beads led to a remarkable enhancement of the leaching rate in conditions where particles were already passivated by simple leaching and even when large amounts of solid products (elemental sulfur and jarosite) were present. An in-depth evaluation of particle size distribution showed that particle breakage occurred during a rather short time (a few hours) at the beginning of the runs, transforming the initial particles with d(4/3) = 30 mu m to finer particles with d(4/3) = 15 mu m. Then, particle breakage almost stopped, while an attrition phenomenon was evidenced, inducing the formation of very fine particles (<1 mu m) and aggregates concomitantly with copper leaching.
引用
收藏
页码:195 / 209
页数:15
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