Leaching kinetics of electronic waste for the recovery of copper: Rate-controlling step and rate process in a multisize particle system

被引:13
作者
Davila-Pulido, Gloria I. [1 ]
Salinas-Rodriguez, Armando [2 ]
Carrillo-Pedroza, Francisco R. [3 ]
Gonzalez-Ibarra, Adrian A. [1 ]
Mendez-Nonell, Juan [2 ]
Garza-Garcia, Mitzue [1 ]
机构
[1] Univ Autonoma Coahuila, Escuela Super Ingn, Blvd Adolfo Lopez Mateos S-N, Nueva Rosita 26800, Coahuila, Mexico
[2] CINVESTAV Unidad Saltillo, Ramos Arizpe 25900, Coahuila, Mexico
[3] Univ Autonoma Coahuila, Fac Met, Monclova 25710, Coahuila, Mexico
关键词
electronic waste; kinetic mechanism; leaching; multisize particle system; PRINTED-CIRCUIT BOARD; METALS; GOLD; HYDROMETALLURGY; MANAGEMENT; END;
D O I
10.1002/kin.21450
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Electronic waste (e-waste) contains metallic values that can be recovered by hydrometallurgical methods. This investigation addresses the leaching kinetics of e-waste for the recovery of copper in H2SO4-H2O2 media with the objective of determining the rate-controlling step in monosize particle systems. The results are then used to develop a kinetic model for copper dissolution in multisize particle systems. It is shown that in a monosize particle system, Cu dissolves completely in 150 min at 2 M H2SO4 and 0.2 M H2O2. The rate-controlling step for this process is chemical reaction with an activation energy of 47.8 kJ/mol. The kinetic model for Cu dissolution in multisize particle systems is developed by applying an optimization method that considers the size distribution and the copper content of each of the size fractions. The results show that the model predicts satisfactorily the Cu dissolution kinetics and reveals that Cu particles with mean sizes of 79, 141, 237, 398.5, and 605 mu m react completely in times varying from 15 to 120 min. Coarser Cu particles do not react completely in a time interval of up to 120 min. E-waste losses 57.6% of its initial weight when subjected to the leaching process and solid residue has gold and silver grades of 2 402.35 and 9 035.29 g/ton, respectively.
引用
收藏
页码:379 / 389
页数:11
相关论文
共 24 条
[11]   Electronic waste management approaches: An overview [J].
Kiddee, Peeranart ;
Naidu, Ravi ;
Wong, Ming H. .
WASTE MANAGEMENT, 2013, 33 (05) :1237-1250
[12]  
Kim Y. G., 2018, SCI REPORTS, V8, P1
[13]  
Koyama K, 2006, MATER TRANS, V47, P1788, DOI 10.2320/matertrans.47.1788t
[14]  
Levenspiel O., 1972, Chemical Reaction Engineering, V2nd, P361
[15]   Shrinking core models in hydrometallurgy: What students are not being told about the pseudo-steady approximation [J].
Liddell, KC .
HYDROMETALLURGY, 2005, 79 (1-2) :62-68
[16]   Low grade ores - Smelt, leach or concentrate? [J].
Norgate, T. ;
Jahanshahi, S. .
MINERALS ENGINEERING, 2010, 23 (02) :65-73
[17]   Recent advances on hydrometallurgical recovery of critical and precious elements from end of life electronic wastes-a review [J].
Sethurajan, Manivannan ;
van Hullebusch, Eric D. ;
Fontana, Danilo ;
Akcil, Ata ;
Deveci, Haci ;
Batinic, Bojan ;
Leal, Joao P. ;
Gasche, Teresa A. ;
Kucuker, Mehmet Ali ;
Kuchta, Kerstin ;
Neto, Isabel F. F. ;
Soares, Helena M. V. M. ;
Chmielarz, Andrzej .
CRITICAL REVIEWS IN ENVIRONMENTAL SCIENCE AND TECHNOLOGY, 2019, 49 (03) :212-275
[18]   Printed circuit board recycling: Physical processing and copper extraction by selective leaching [J].
Silvas, Flavia P. C. ;
Jimenez Correa, Monica M. ;
Caldas, Marcos P. K. ;
de Moraes, Viviane T. ;
Espinosa, Denise C. R. ;
Tenorio, Jorge A. S. .
WASTE MANAGEMENT, 2015, 46 :503-510
[19]   A novel eco-friendly hybrid approach for recovery and reuse of copper from electronic waste [J].
Sinha, Rachna ;
Chauhan, Garima ;
Singh, Azad ;
Kumar, Arinjay ;
Acharya, Sanigdha .
JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2018, 6 (01) :1053-1061
[20]   A Cleaner Process for Selective Recovery of Valuable Metals from Electronic Waste of Complex Mixtures of End-of-Life Electronic Products [J].
Sun, Zhi ;
Xiao, Y. ;
Sietsma, J. ;
Agterhuis, H. ;
Yang, Y. .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2015, 49 (13) :7981-7988