Activated carbon-supported Pt catalysts intended for the hydroprocessing of lipid feedstocks: effects of support surface composition and impregnation protocol
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This work concerns the preparation of Pt/AC catalysts (Pt supported on activated carbon) and their application to the synthesis of hydrocarbon biofuels through the HEFA
(hydroprocessing of esters and fatty acids) route. The key motivation for the work was that
catalysts based on sulfided Mo supported on γ-Al2O3, traditionally employed in the hydroprocessing of petroleum derivatives, (i) are unstable in the HDO (hydrodeoxygenation)
of biomass-derived feedstocks and (ii) can contaminate the resulting biofuels with sulfur.
In this context, a systematic study on the effects of preparation conditions on the properties
of the resulting Pt/AC catalysts and their performance in HEFA was carried out for the first
time. Efficient catalysts were obtained, which led to the complete deoxygenation of lauric
acid and coconut oil, yielding products composed primarily of n-alkanes. The highest
HDO activity was verified for the catalyst prepared using as a support an AC previously
subjected to thermal treatment up to 800 ◦C in a H2 atmosphere (which removed most of
the surface acidic oxygenated groups), depositing Pt over the surface of this support via wet
impregnation using a H2PtCl6 solution acidified with HCl. The obtained results showed the
great potential of the Pt/AC catalysts for the production of hydrocarbon biofuels through
the HEFA route.
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BRANDÃO, Ruana Domingos et al. Activated carbon-supported Pt catalysts intended for the hydroprocessing of lipid feedstocks: effects of support surface composition and impregnation protocol. Molecules, Basel, v. 30, n. 13, e2862, 2025. DOI: 10.3390/moléculas30132862. Disponível em: https://www.mdpi.com/1420-3049/30/13/2862. Acesso em: 31 jul. 2026.