Enhancement of resource recovery from retired tires: Extraction of copper and zinc resources

Повышение восстановления ресурсов из выведенных из эксплуатации шин: извлечение меди и цинка
Ting‐an Zhang, Xingyuan Wan, Kaixi Jiang, Han Yang, Kun Wang
2023-05-29

OH- and O2- mediated dissolutionammonia-hydrogen peroxide leachingbrass-coated steel wirecopper and zinc extractiondensity functional theory (DFT)electrochemical measurementsretired tiresα phase corrosion enhancement
The disposal of scrap rubber, represented by retired tires, has achieved industrial achievements, but the handling of brass-coated steel wire as a structural reinforcement in retired tires has received little attention. A feasible and efficient method of acquiring economical resources is proposed to extract copper and zinc (Cu-Zn) from brass-coated steel wire. With 20% ammonia, 10% hydrogen peroxide, and a liquid-solid ratio of 10, the brass coating almost completely dissolved in 5 minutes. This technique may remedy the challenge of weak dissolving efficiency brought on by the dual phase microstructure of brass. Electrochemical measurements and density functional theory (DFT) simulations assist in verifying that hydrogen peroxide decreases the resistance of the corrosion and that OH- and O-2 in solution are the main contributors to the dissolution. In addition, the AH effectively enhances the corrosion of the α phase in brass, which is notably evident in comparable works. This effective strategy broadens the application of retired tires and provides a new method for extracting Cu-Zn resources.
1
A practical method using 20% ammonia, 10% hydrogen peroxide, and a liquid-solid ratio of 10 dissolves brass coating from steel wire almost completely within 5 minutes.
2
Hydrogen peroxide reduces corrosion resistance, with OH- and O2- species in solution identified as primary contributors to brass dissolution via electrochemical measurements and DFT simulations.
3
The proposed method overcomes poor dissolving efficiency caused by brass's dual-phase microstructure, effectively enhancing corrosion of the α phase.
4
This extraction strategy enables efficient recovery of copper and zinc from brass-coated steel wire in retired tires, expanding resource recovery applications for scrap rubber.

Brass-coated steel wire recovered from retired tires

Extraction and recovery of copper and zinc from the brass coating using an ammonia + hydrogen peroxide leaching method, including dissolution kinetics, corrosion mechanisms (role of OH- and O2-), and phase-selective enhancement of α-phase corrosion validated by electrochemical measurements and DFT simulations

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2023-05-29
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Ting‐an Zhang
Xingyuan Wan
Kaixi Jiang
Han Yang
Kun Wang
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