Yubiao Li, Zhenlun Wei
To better understand chalcopyrite leach mechanisms and kinetics, for improved Cu extraction during hydrometallurgical processing, chalcopyrite leaching has been conducted at solution redox potential 750 mV, 35–75 ˝C, and pH 1.0 with and without aqueous iron addition, and pH 1.5 and 2.0 without aqueous iron addition. The activation energy (Ea) values derived indicate chalcopyrite dissolution is initially surface chemical reaction controlled, which is associated with the activities of Fe3+ and H+ with reaction orders of 0.12 and -0.28, respectively. A surface diffusion controlled mechanism is proposed for the later leaching stage with correspondingly low Ea values. Surface analyses indicate surface products (predominantly Sn2´and S0) did not inhibit chalcopyrite dissolution, consistent with the increased surface area normalised leach rate during the later stage. The addition of aqueous iron plays an important role in accelerating Cu leaching rates, especially at lower temperature, primarily by reducing the length of time of the initial surface chemical reaction controlled stage.
@article{bc59fb01-18ee-4d71-b131-9bcfd2077364,
title={Kinetics and Mechanisms of Chalcopyrite Dissolutionat Controlled Redox Potential of 750 mV in Sulfuric Acid Solution},
author={Yubiao Li and Zhenlun Wei},
year={2016},
language={en}
}TY - JOUR TI - Kinetics and Mechanisms of Chalcopyrite Dissolutionat Controlled Redox Potential of 750 mV in Sulfuric Acid Solution AU - Yubiao Li AU - Zhenlun Wei PY - 2016 LA - en ER -
İbrahim Sönmez, Kemal Şahbudak
Chalcopyrite (CuFeS2) is commonly used ore in the production of copper, but leaching of this ore is very slow and inefficient due to “passivation” dur
Mari LUNDSTRÖM, Jari AROMAA
This study presents a microscopy investigation of chalcopyrite surface product layers formed in concentrated cupric chloride solutions, similar to tho
Deepak Malhotra
This work discusses the essential components of a rigorous auditing process aimed at enhancing metallurgical plant performance. The objective is to id
Jennifer Namias, Dr. Nickolas J. Themelis
This study explores the future of electronic waste recycling in the United States, addressing the challenges and proposing domestic solutions. The rap
Lkhamtogmid Nyamjargal, Ganbat Batdemberel, Gunchin Burmaa, Dashdendev Burmaa
This study was undertaken to develop a cost-effective method of copper leaching in sulfide concentrate involving minerals as chalcopyrite and pyrite.
Unknown, Unknown
This chapter discusses metal casting processes, highlighting the diversity and common characteristics among them. The objective is to elucidate the fu