Membrane reactor, Chemical engineering, Hydrogen, Steam reforming and Hydrogen production are his primary areas of study. His work carried out in the field of Membrane reactor brings together such families of science as Fluidized bed, Methane reformer, Methanol and Methane. His Fluidized bed research is multidisciplinary, relying on both Nuclear engineering and Packed bed, Chromatography.
His work deals with themes such as Organic chemistry, Permeation and Nuclear chemistry, which intersect with Chemical engineering. The study incorporates disciplines such as Analytical chemistry, Countercurrent exchange, Diffusion welding and Palladium in addition to Hydrogen. The various areas that he examines in his Steam reforming study include Operating temperature and Oxygen.
Fausto Gallucci spends much of his time researching Chemical engineering, Membrane reactor, Fluidized bed, Hydrogen production and Hydrogen. His Chemical engineering study combines topics in areas such as Chemical looping combustion, Syngas, Catalysis and Permeation. His studies in Chemical looping combustion integrate themes in fields like Work and Process engineering.
His Membrane reactor research integrates issues from Waste management, Methanol, Methane reformer, Steam reforming and Methane. His biological study deals with issues like Mass transfer, which deal with fields such as Concentration polarization. His Hydrogen research is multidisciplinary, incorporating perspectives in Metal and Palladium.
The scientist’s investigation covers issues in Chemical engineering, Hydrogen, Membrane reactor, Permeation and Hydrogen production. A large part of his Chemical engineering studies is devoted to Packed bed. He interconnects Concentration polarization, Carbon and Metal in the investigation of issues within Hydrogen.
The Membrane reactor study which covers Fluidized bed that intersects with Porosity. Fausto Gallucci works on Hydrogen production which deals in particular with Steam reforming. The concepts of his Steam reforming study are interwoven with issues in Waste management, Natural gas, Chemical looping combustion and Work.
This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.
Recent advances on membranes and membrane reactors for hydrogen production
F Fausto Gallucci;E Ekain Fernandez;P Corengia;M Martin van Sint Annaland.
Chemical Engineering Science (2013)
A simulation study of the steam reforming of methane in a dense tubular membrane reactor
F Fausto Gallucci;L Paturzo;A Angelo Basile.
International Journal of Hydrogen Energy (2004)
A Search for Natural Hydrophobic Deep Eutectic Solvents Based on Natural Components
Dannie J. G. P. van Osch;Carin H. J. T. Dietz;Jaap van Spronsen;Maaike C. Kroon.
ACS Sustainable Chemistry & Engineering (2019)
An experimental study of CO2 hydrogenation into methanol involving a zeolite membrane reactor
F Fausto Gallucci;L Paturzo;A Angelo Basile.
Chemical Engineering and Processing (2004)
Experimental study of the methane steam reforming reaction in a dense Pd/Ag membrane reactor
Fausto Gallucci;Luca Paturzo;and Angelo Famà;Angelo Basile.
Industrial & Engineering Chemistry Research (2004)
An in-situ IR study on the adsorption of CO2 and H2O on hydrotalcites
KT Kai Coenen;F Fausto Gallucci;B Brahim Mezari;Ejm Emiel Hensen.
Journal of CO 2 Utilization (2018)
Synthesis, characterization, and applications of palladium membranes
Angelo Basile;Fausto Gallucci;Silvano Tosti.
Membrane Science and Technology (2008)
Membranes for Membrane Reactors: Preparation, Optimization and Selection
Angelo Basile;Fausto Gallucci.
(2011)
Design and process study of Pd membrane reactors
Silvano Tosti;Angelo Basile;Livio Bettinali;Fabio Borgognoni.
International Journal of Hydrogen Energy (2008)
Pd–Ag membrane reactor for steam reforming reactions: A comparison between different fuels
F Fausto Gallucci;A Angelo Basile.
International Journal of Hydrogen Energy (2008)
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