Dissolution of Nickel and Cobalt from Iron-Rich Laterite Ores Using Different Organic Acids

被引:3
|
作者
Nasab, M. Hosseini [1 ]
Noaparast, M. [1 ]
Abdollahi, H. [1 ]
机构
[1] Univ Tehran, Coll Engn, Sch Min Engn, Tehran, Iran
来源
JOURNAL OF MINING AND ENVIRONMENT | 2020年 / 11卷 / 03期
关键词
Iron-rich laterites; Ni; Co; Leaching; RSM; LIMONITIC LATERITE; CARBOTHERMIC REDUCTION; KINETICS; EXTRACTION; PRESSURE; NI;
D O I
10.22044/jme.2020.9564.1869
中图分类号
TD [矿业工程];
学科分类号
0819 ;
摘要
Due to the decreasing production of nickel and cobalt from sulfide sources, the Ni and Co extraction from the oxide ores (laterites) have become more prevalent. In this research work, the effects of calcination prior to leaching, acid concentration, percent solid, pH, and stirring speed on the nickel and cobalt recoveries from an iron-rich laterite ore sample were investigated using different organic acids. Then the response surface methodology was implemented in order to optimize the various parameters. By the design of experiments, the compound optimal concentrations of the three different organic acids (gluconic acid: lactic acid: citric acid with a ratio of 1:2:3) were 3.18 M, and S/L = 0.1, pH = 0.5, and the stirring speed = 386 rpm. With the aid of kinetic studies, a temperature of 75 degrees C, and a test time of 120 minutes, the highest nickel and cobalt recoveries were 25.5% and 37.6%, respectively. In the optimal conditions, the contribution of the percent solids to the nickel recovery was the most and negative, after which the contribution of pH was negative, and finally, the acid concentration had a positive effect. In the optimal conditions, the acid concentration, pH, and solid content were, respectively, important in the cobalt recovery. The SEM results showed that the surface of feed and residue particles in the optimal conditions was not significantly different, and the laboratory data was fitted to a shrinking core model. The results obtained indicated that the reaction rate was controlled by the diffusion reaction at the particle surface, and the activation energies of 11.09 kJ/mol for nickel and 28.04 kJ/mol for cobalt were consistent with this conclusion.
引用
收藏
页码:779 / 797
页数:19
相关论文
共 50 条
  • [21] A novel method: Nickel and cobalt extraction from citric acid leaching solution of nickel laterite ores using oxalate precipitation
    Astuti, Widi
    Nurjaman, Fajar
    Mufakhir, Fika Rofiek
    Sumardi, Slamet
    Avista, Dira
    Wanta, Kevin Cleary
    Petrus, Himawan Tri Bayu Murti
    MINERALS ENGINEERING, 2023, 191
  • [22] Optimization of the Atmospheric Acid Leaching Process for the Recovery of Nickel and Cobalt from Iron-Rich Lateritic Ore
    Ribeiro, Gabriela da Silva
    Nascimento, Naiara de Deus
    Ribeiro, Rodrigo da Silveira
    Miranda, Marcelo de Paole Moreira
    Martins, Paulo Roberto
    Caetano, Gabriela Costa
    de Andrade, Laiane Alves
    Ostroski, Indianara Conceicao
    MINING METALLURGY & EXPLORATION, 2025, : 1127 - 1140
  • [23] Development of alkali-activated composites from calcined iron-rich laterite soil
    Kaze, Cyriaque Rodrigue
    Tome, Sylvain
    Lecomte-Nana, Gisele Laure
    Adesina, Adeyemi
    Essaedi, Hasan
    Das, Shaswat Kumar
    Alomayri, Thamer
    Kamseu, Elie
    Melo, Uphie Chinje
    MATERIALIA, 2021, 15
  • [24] Solvent extraction behaviour of scandium from lateritic nickel-cobalt ores using different organic reagents
    Ferizoglu, Ece
    Kaya, Serif
    Topkaya, Yavuz A.
    PHYSICOCHEMICAL PROBLEMS OF MINERAL PROCESSING, 2018, 54 (02): : 538 - 545
  • [25] Optimization of process parameters and dissolution kinetics of nickel and cobalt from lateritic chromite overburden using organic acids
    Biswas, Supratim
    Chakraborty, Suparna
    Chaudhuri, Mahua Ghosh
    Banerjee, Pataki C.
    Mukherjee, Siddhartha
    Dey, Rajib
    JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY, 2014, 89 (10) : 1491 - 1500
  • [26] REMOVAL OF IRON FROM IRON-RICH SOLUTIONS OF NICKEL AND CADMIUM SULPHATE.
    Sinka, Gabor
    Vigvari, Mihaly
    Reactive polymers. Ion exchangers, sorbents, 1986, 7 (2-3):
  • [27] Fundamental aspects of the recovery of nickel, cobalt and iron from nontronite laterite using the segregation process
    Grimsey, David E.
    Grimsey, Eric J.
    Ibana, Don C.
    CANADIAN METALLURGICAL QUARTERLY, 2020, 59 (02) : 169 - 179
  • [28] Cobalt and nickel recoveries from laterite tailings by organic and inorganic bioacids
    Coto, Orquidea
    Galizia, Federico
    Gonzalez, Ernesto
    Hernandez, Ianeya
    Marrero, Jeannette
    Edgardo, Donati
    BIOHYDROMETALLURY: FROM THE SINGLE CELL TO THE ENVIRONMENT, 2007, 20-21 : 107 - +
  • [29] Effects of Sulfation Roasting and Sodium Sulfate Addition on Dissolution of Nickel and Cobalt from Laterite
    Parlak, T. Tunc
    Yildiz, K.
    ACTA PHYSICA POLONICA A, 2017, 132 (03) : 629 - 631
  • [30] Leaching of Nickel and Cobalt from a Mixed Nickel-Cobalt Hydroxide Precipitate Using Organic Acids
    Hussaini, Shokrullah
    Tita, Angela Manka
    Kursunoglu, Sait
    Kaya, Muammer
    Chu, Pengbo
    MINERALS, 2024, 14 (03)