Leaching Chalcopyrite Concentrate with Oxygen and Sulfuric Acid Using a Low-Pressure Reactor

被引:34
作者
Chaidez, Josue [1 ]
Parga, Jose [2 ]
Valenzuela, Jesus [3 ]
Carrillo, Raid [4 ]
Almaguer, Isaias [5 ]
机构
[1] Serv Especializados Penoles SA CV, Met Proc, Torreon 27300, Mexico
[2] Inst Tecnol Saltillo, Div Grad Studies & Res, Saltillo 25280, Coahuila, Mexico
[3] Univ Sonora, Dept Chem & Met Engn, Hermosillo 83000, Sonora, Mexico
[4] Univ Autonoma Coahuila, Fac Met, Monclova 25710, Mexico
[5] Serv Adm Penoles SA CV, Met Proc, Torreon 27300, Mexico
关键词
Hydrometallurgical processes; Chalcopyrite; kinetics; low-pressure leaching; DISSOLUTION KINETICS; HYDROGEN-PEROXIDE; COPPER;
D O I
10.3390/met9020189
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This article presents a copper leaching process from chalcopyrite concentrates using a low-pressure reactor. The experiments were carried out in a 30 L batch reactor at an oxygen pressure of 1 kg/cm(2) and solid concentration of 100 g/L. The temperature, particle size and initial acid concentration were varied based on a Taguchi L9 experimental design. The initial and final samples of the study were characterized by chemical analysis, X-ray diffraction and particle size distribution. The mass balance showed that 98% of copper was extracted from the chalcopyrite concentrate in 3 h under the following experimental conditions: 130 g/L of initial sulfuric acid concentration, temperature of 100 degrees C, oxygen pressure of 1 kg/cm(2), solid concentration of 100 g/L and particle size of -105 + 75 mu m. The ANOVA demonstrated that temperature had the greatest influence on copper extraction. The activation energy was 61.93 kJ/mol. The best fit to a linear correlation was the chemical reaction equation that controls the kinetics for the leaching copper from chalcopyrite. The images obtained by SEM showed evidence of shrinking in the core model with the formation of a porous elemental sulfur product layer.
引用
收藏
页数:16
相关论文
共 27 条
[1]  
Adebayo AO, 2003, CHEM BIOCHEM ENG Q, V17, P213
[2]   The influence of microwaves on the leaching kinetics of chalcopyrite [J].
Al-Harahsheh, M ;
Kingman, S ;
Hankins, N ;
Somerfield, C ;
Bradshaw, S ;
Louw, W .
MINERALS ENGINEERING, 2005, 18 (13-14) :1259-1268
[3]   Pressure Leaching of Chalcopyrite Concentrate [J].
Aleksei, Kritskii ;
Kirill, Karimov ;
Stanislav, Naboichenko .
METALLURGY AND ADVANCED MATERIAL TECHNOLOGY FOR SUSTAINABLE DEVELOPMENT, 2018, 1964
[4]   INVESTIGATION OF THE KINETICS OF CHALCOPYRITE OXIDATION BY POTASSIUM DICHROMATE [J].
ANTONIJEVIC, MM ;
JANKOVIC, Z ;
DIMITRIJEVIC, M .
HYDROMETALLURGY, 1994, 35 (02) :187-201
[5]   Dissolution kinetics of chalcopyrite in acidic potassium dichromate solution [J].
Aydogan, S ;
Ucar, G ;
Canbazoglu, M .
HYDROMETALLURGY, 2006, 81 (01) :45-51
[6]  
Burrows A., 2015, P LEAD ZINC EUR MET, VVolume 1, P245
[7]  
Chen S., 2015, P PB ZN C DUSS GERM, P257
[8]  
Eksteen J.J., 2016, IMPC 2016 28 INT MIN
[9]  
Frias C., 2015, P PB ZN C DUSS GERM
[10]   LEACHING KINETICS OF COPPER FROM CHALCOPYRITE CONCENTRATE IN NITROUS-SULFURIC ACID [J].
Gok, Ozge ;
Anderson, Corby G. ;
Cicekli, Gorkem ;
Cocen, E. Ilknur .
PHYSICOCHEMICAL PROBLEMS OF MINERAL PROCESSING, 2014, 50 (01) :399-413