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Hydrochloric Acid Oxidative Leaching Process

     

the process flow and core reaction principles of the hydrochloric acid oxidative leaching technology for recovering precious metals from electronic waste (e-waste). The chemical foundation of this technology is that chloride ions (Cl⁻) act as ligands in an acidic environment, and react with precious metals (such as gold, platinum, palladium, etc.) to form soluble chloro-complexes (e.g., tetrachloroaurate anion [AuCl₄]⁻), thus realizing selective dissolution and separation of precious metals.

the complete procedure from raw material pretreatment, acid leaching, solid-liquid separation to final metal recovery, and elaborates on the dissolution mechanisms of different precious metals through specific chemical reaction equations.that as a non-cyanide alternative process with lower environmental risks, this chloride-based leaching method has significant advantages over conventional processes (especially traditional cyanidation) in terms of both efficiency and environmental performance.

However, the process flow also explicitly reveals the key challenges faced by this technology in practical applications, including severe corrosion of process equipment caused by the highly acidic, chloride-rich environment, the requirement for precise control of reaction conditions (such as temperature and chloride ion concentration) to avoid side reactions, as well as the technical difficulty of efficient separation and purification of target precious metals from the complex pregnant leach solution (PLS).

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