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Supercritical CO2 Extraction of Palladium Oxide from an Aluminosilicate-Supported Catalyst Enhanced by a Combination of Complexing Polymers and Piperidine.


ABSTRACT: Precious metals, in particular Pd, have a wide range of applications in industry. Due to their scarcity, precious metals have to be recycled, preferably with green and energy-saving recycling processes. In this article, palladium extraction from an aluminosilicate-supported catalyst, containing about 2 wt% (weight%) of Pd (100% PdO), with supercritical CO2 (scCO2) assisted by complexing polymers is described. Two polymers, p(FDA)SH homopolymer and p(FDA-co-DPPS) copolymer (FDA: 1,1,2,2-tetrahydroperfluorodecyl acrylate; DPPS: 4-(diphenylphosphino)styrene), were tested with regards to their ability to extract palladium. Both polymers showed relatively low extraction conversions of approximately 18% and 30%, respectively. However, the addition of piperidine as activator for p(FDA-co-DPPS) allowed for an increase in the extraction conversion of up to 60%.

SUBMITTER: Ruiu A 

PROVIDER: S-EPMC7865370 | biostudies-literature | 2021 Jan

REPOSITORIES: biostudies-literature

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Supercritical CO<sub>2</sub> Extraction of Palladium Oxide from an Aluminosilicate-Supported Catalyst Enhanced by a Combination of Complexing Polymers and Piperidine.

Ruiu Andrea A   Bauer-Siebenlist Bernhard B   Senila Marin M   Li W S Jennifer WSJ   Seaudeau-Pirouley Karine K   Lacroix-Desmazes Patrick P   Jänisch Thorsten T  

Molecules (Basel, Switzerland) 20210128 3


Precious metals, in particular Pd, have a wide range of applications in industry. Due to their scarcity, precious metals have to be recycled, preferably with green and energy-saving recycling processes. In this article, palladium extraction from an aluminosilicate-supported catalyst, containing about 2 wt% (weight%) of Pd (100% PdO), with supercritical CO<sub>2</sub> (scCO<sub>2</sub>) assisted by complexing polymers is described. Two polymers, p(FDA)SH homopolymer and p(FDA-<i>co</i>-DPPS) copo  ...[more]

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