Chemical and Environmental Engineering Group

Pedro Megía Hervás obtained his Graduate Degree in Chemical Engineering from Rey Juan Carlos University in 2014. Subsequently, in 2015, he completed his Master's Degree in Chemical Engineering from the Universidad Rey Juan Carlos and Universidad Autónoma de Madrid where he was able to carry out internships as a research fellow at the Instituto Madrileño de Estudios Avanzados de la Energía. He obtained his Ph.D. degree in 2020, his research is focused on hydrogen production systems through steam reforming using metal-supported mesoporous catalysts. He has completed two research stays, a predoctoral fellowship at the Università degli studi di Salerno under the supervision of Prof. Dr. Vincenzo Palma, and a postdoctoral fellowship at the Universidade do Porto under the supervision of Prof. Dr. Luis Miguel Madeira.





Bioethanol Steam Reforming for Hydrogen Production over Ni-Cr/SBA 15: Influence of Metal Loading and Ni/Cr Ratio

Megía, P.J.; García-Moreno, L.; Vizcaíno, A.J.; Calles, J.A.; Carrero, A.


Thermodynamic comparison between conventional, autothermal, and sorption-enhanced bio-oil steam reforming

Megía, P.J.; Rocha, C.; Vizcaíno, A.J.; Carrero, A.; Calles, J.A.; Madeira, L.M.; Soria, M.A.


Study of Mesostructured CeO2 Synthesis via Nanocasting Using SBA-15 as a Template: Influence of the Cerium Precursor

Moreno de la Calle, A.; Vizcaíno, A.J.; Carrero, A.; Calles, J.A.; Megía, P.J.


Influence of Rh addition to transition metal-based catalysts in the oxidative steam reforming of acetic acid

Megía, P.J.; Soria, M.A.; Cerqueira, P.; Vizcaíno, A.J.; Carrero, A.; Calles, J.A.; Madeira, L.M.


Oxidative steam reforming of acetic acid on Ni catalysts: Influence of the La promotion on mesostructured supports

Megía, P.J.; Morales, A.; Vizcaíno, A.J.; Calles, J.A.; Carrero, A.


Hydrogen Production through Oxidative Steam Reforming of Acetic Acid over Ni Catalysts Supported on Ceria-Based Materials

Megía, P. J.; Morales, A.; Vizcaíno, A. J.; Calles, J. A.; Carrero, A.


Hydrogen Production Technologies: From Fossil Fuels toward Renewable Sources. A Mini Review

Megia, P. J.; Vizcaino, A. J.; Calles, J. A.; Carrero, A.


On the support effect and the Cr promotion of Co based catalysts for the acetic acid steam reforming

Cortese, M.; Ruocco, C.; Palma, V.; Megía, P. J.; Carrero, A.; Calles, J. A.


Effect of the incorporation of reducibility promoters (Cu, Ce, Ag) in Co/CaSBA-15 catalysts for acetic acid steam reforming

Megía, P.J.; Calles, J.A.; Carrero, A.; Vizcaíno, A.J.


Coke evolution in simulated bio-oil aqueous fraction steam reforming using Co/SBA-15

Megía, P.J.; Vizcaíno, A.J.; Ruiz-Abad, M.; Calles J.A.; Carrero, A.


Catalytic behavior of Co-based catalysts in the kinetic study of acetic acid steam reforming

Megía, P.J.; Cortese, M.; Ruocco, C.; Vizcaíno. A.J.; Calles, J.A.; Carrero, A.; Palma, V.


Agglomerated Co–Cr/SBA-15 catalysts for hydrogen production through acetic acid steam reforming

Calles, J. A.; Carrero, A.; Vizcaíno, A. J.; Megía, P. J.


Hydrogen production from steam reforming of acetic acid as a model compound of the aqueous fraction of microalgae HTL using Co-M/SBA-15 (M: Cu, Ag, Ce, Cr) catalysts

Megía, P. J.; Carrero, A.; Calles, J. A.; Vizcaíno, A. J.


Steam reforming of model bio-oil aqueous fraction using Ni-(Cu, Co, Cr)/SBA-15 catalysts

Calles, J. A.; Carrero, A.; Vizcaíno, A. J.; García-Moreno, L.; Megía, P. J.


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