Platinum Group Metal Recovery from End-of-Life Ammonia Oxidation Catalysts in Oxidative Chloride Media

Platinum group metals (PGMs) are critical raw materials, and their sustainable recovery from secondary sources supports supply security and a circular economy. End-of-life ammonia oxidation catalysts are considered attractive feedstocks due to their high PGM content. A systematic evaluation of oxidising agents was conducted to assess the dissolution of palladium, platinum and rhodium in chloride media under identical conditions (80°C, 8 h). Near-complete and non-selective dissolution (~100% for palladium, platinum and rhodium) was achieved with aqua regia. Selective palladium dissolution was observed with hydrochloric acid (HCl) combined with oxidants: 92.9% (hydrogen peroxide (H 2 O 2 )), 95.4% (sodium chlorate (NaClO 3 )) and 87.9% (sodium hypochlorite (NaClO)), while platinum and rhodium remained <70% in single-stage runs. The HCl–NaClO system exhibited the highest palladium selectivity (S Pd:Pt 1.8; S Pd:Rh 2.0). A combined HCl–H 2 O 2 –NaClO system increased overall recoveries to palladium 93.3%, platinum 81.4%, rhodium 75.5%, but reduced selectivity. A two-stage dissolution strategy reconciled selectivity and recovery, achieving >99.5% overall dissolution while concentrating 85–92% of palladium in the first stage (S Pd:Rh up to 8.9). Thermodynamic analysis (Eh-pH (Pourbaix) diagrams, standard ΔG°, ΔS° and ΔH°) confirmed that redox control governs selectivity. This work provides a quantitative, mechanistically grounded framework for designing selective hydrometallurgical routes to recover PGM from high-grade catalysts.

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Journal
Platinum Metals Review
Published
2026-10-06
DOI
https://doi.org/10.1595/147106727x17878404542744
Primary Topic
Extraction and Separation Processes
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article
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article

Platinum Group Metal Recovery from End-of-Life Ammonia Oxidation Catalysts in Oxidative Chloride Media

Federica Mudu, Francesco Vegliò, Soroush Rahmati, Roshanak Adavodi et al.
Platinum Metals Review
Extraction and Separation Processes
article

Platinum Group Metal Recovery from End-of-Life Ammonia Oxidation Catalysts in Oxidative Chloride Media

Federica Mudu, Francesco Vegliò, Soroush Rahmati, Roshanak Adavodi, Morten Knauserud
article en

Abstract

Platinum group metals (PGMs) are critical raw materials, and their sustainable recovery from secondary sources supports supply security and a circular economy. End-of-life ammonia oxidation catalysts are considered attractive feedstocks due to their high PGM content. A systematic evaluation of oxidising agents was conducted to assess the dissolution of palladium, platinum and rhodium in chloride media under identical conditions (80°C, 8 h). Near-complete and non-selective dissolution (~100% for palladium, platinum and rhodium) was achieved with aqua regia. Selective palladium dissolution was observed with hydrochloric acid (HCl) combined with oxidants: 92.9% (hydrogen peroxide (H 2 O 2 )), 95.4% (sodium chlorate (NaClO 3 )) and 87.9% (sodium hypochlorite (NaClO)), while platinum and rhodium remained <70% in single-stage runs. The HCl–NaClO system exhibited the highest palladium selectivity (S Pd:Pt 1.8; S Pd:Rh 2.0). A combined HCl–H 2 O 2 –NaClO system increased overall recoveries to palladium 93.3%, platinum 81.4%, rhodium 75.5%, but reduced selectivity. A two-stage dissolution strategy reconciled selectivity and recovery, achieving >99.5% overall dissolution while concentrating 85–92% of palladium in the first stage (S Pd:Rh up to 8.9). Thermodynamic analysis (Eh-pH (Pourbaix) diagrams, standard ΔG°, ΔS° and ΔH°) confirmed that redox control governs selectivity. This work provides a quantitative, mechanistically grounded framework for designing selective hydrometallurgical routes to recover PGM from high-grade catalysts.

Platinum Metals ReviewVol. 71(2)
University of L'Aquila (IT), K.A. Rasmussen (Norway) (NO)
Openalex Percentile: Top 21%
Extraction and Separation Processes
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Platinum Group Metal Recovery from End-of-Life Ammonia Oxidation Catalysts in Oxidative Chloride Media — Federica Mudu, Francesco Vegliò, et al. · Platinum Metals Review (2026) | TGRS Research Map | TGRS