Uses of H2 and CO2 gases in hydrometallurgical processes: Potential towards sustainable pretreatment, metal production and carbon neutrality
Использование газов H2 и CO2 в гидрометаллургических процессах: потенциал для устойчивой предварительной обработки, получения металлов и углеродной нейтральности
2025-03-11
SCID: 54.1/t3kttnwr
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carbon dioxide (CO2) utilizationhydrogen gas (H2) as green reductanthydrometallurgical processespretreatment, leaching and metal recovery stagessupercritical CO2
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Abstract (AI)
Hydrometallurgical practices represent a vital area of focus within the metallurgical sector, and it is critical that these practices are carried out in an environmentally friendly manner in order to promote sustainability and responsible processing. One promising approach is the use of hydrogen gas (H 2 ), known for its ‘green’ properties, along with the pollutant carbon dioxide (CO 2 ), at various stages within the unit operations relevant to hydrometallurgical processes. This review provides a detailed overview of the utilization of H 2 and CO 2 gases, encompassing key stages including pretreatment, leaching, and metal recovery. Theoretical underpinnings are also provided for each stage, along with an overview of cutting-edge approaches such as application of supercritical CO 2 . Challenges and future directions associated with H 2 and CO 2 utilization are also discussed. This review serves an important step towards advancing sustainable hydrometallurgical processes promoting carbon neutrality. • Carbon neutrality in the hydrometallurgical field by utilizing H 2 and CO 2 . • H 2 as a green reductant in the hydrometallurgical processes. • CO 2 utilizations reduce carbon footprint and augment the metal recovery. • Supercritical CO 2 as an advanced CO 2 utilization in the hydrometallurgical field.
Key Findings
1
Application of supercritical CO2 represents an advanced approach for CO2 utilization within hydrometallurgical processes.
2
H2 functions as a green reductant in hydrometallurgical processes, enabling reduction reactions with lower environmental impact.
3
The review identifies theoretical foundations, cutting-edge approaches, challenges, and future directions for integrating H2 and CO2 toward carbon neutrality in hydrometallurgy.
4
Using H2 and CO2 gases across hydrometallurgical stages (pretreatment, leaching, metal recovery) can advance sustainable, environmentally friendly processing.
5
Utilization of CO2 can reduce the carbon footprint of hydrometallurgical operations and can augment metal recovery.
Research Object
Use of H2 and CO2 gases in hydrometallurgical processes (pretreatment, leaching and metal recovery)
Research Subject
Roles and effects of H2 as a green reductant and CO2 (including supercritical CO2) as a reagent/utilization strategy to improve sustainability, metal recovery, and enable carbon neutrality in hydrometallurgy
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2025-03-11
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