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Clean Syn-Fuels via Hydrogenation Processes: Acidity–Activity Relationship in O-Xylene Hydrotreating
Publikováno v:
ChemEngineering, Vol 4, Iss 1, p 4 (2020)
ChemEngineering 4 (2020). doi:10.3390/chemengineering4010004
info:cnr-pdr/source/autori:Alessandra Palella, Katia Barbera, Francesco Arena, Lorenzo Spadaro/titolo:Clean Syn-Fuels via Hydrogenation Processes: Acidity-Activity Relationship in O-Xylene Hydrotreating/doi:10.3390%2Fchemengineering4010004/rivista:ChemEngineering/anno:2020/pagina_da:/pagina_a:/intervallo_pagine:/volume:4
ChemEngineering
Volume 4
Issue 1
ChemEngineering 4 (2020). doi:10.3390/chemengineering4010004
info:cnr-pdr/source/autori:Alessandra Palella, Katia Barbera, Francesco Arena, Lorenzo Spadaro/titolo:Clean Syn-Fuels via Hydrogenation Processes: Acidity-Activity Relationship in O-Xylene Hydrotreating/doi:10.3390%2Fchemengineering4010004/rivista:ChemEngineering/anno:2020/pagina_da:/pagina_a:/intervallo_pagine:/volume:4
ChemEngineering
Volume 4
Issue 1
Transition metal sulfide catalysts are actually the most performing catalytic materials in crude oil hydrotreating (HDT), for energetic purposes. However, these systems suffer from several drawbacks that limit their exploitation. Aiming to meet the e
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