Ph.D. in Energetica , 33rd cycle (2017-2020)
Ph.D. obtained in 2021
Dissertation:
Conversion of industrial CO2 to value-added fuels and chemicals via Fischer-Tropsch upgrade (Abstract)
Tutors:
Andrea Lanzini Massimo SantarelliProfile
Research topic
Conversion of industrial CO2 to value-added fuels and chemicals via Fischer-Tropsch upgrade
Research interests
Biography
Within the PhD, detailed kinetic modeling studies have been conducted on Co-based Fischer-Tropsch catalysts. Non-linear regression procedure on experimental results have been carried out, with application of statistical analyses to validate such models.
Different carbon capture and utilization routes for power-to-liquid applications have been studied from a process analysis stand point of view, spanning from the capture of CO2 to the generation of synthetic products. The technologies studied and modelled include CO2 recovery from solvent-based biogas upgrading unit, direct air capture or gasification of biomass.
Technologies studied for the conversion of CO2 to useful syngas cover the reverse water gas shift (RWGS) reactor on a modeling level; solid oxide electrolyers (SOEC) on a modeling and experimental point of view. The resulting syngas has been fed to a Fischer-Tropsch (FT) reactor whose behaviour is described by the previosuly described kinetic model for the production of synthetic fuels and chemicals. Such products are under analysis to substitute their fossil-based counterparts.
International collaboration within the PhD have been established with VTT technical research centre of Finland (FI), Northwestern University of Evanston (US), Ineratec Gmbh (DE), Provadis Hoechschule (DE), Altana AG (DE).
Awards and Honors
Publications
Works published during the Ph.D. View all publications in Porto@Iris
- Marchese, Marco; Buffo, Giulio; Santarelli, Massimo; Lanzini, Andrea (2021)
CO2 from direct air capture as carbon feedstock for Fischer-Tropsch chemicals and fuels: Energy and economic analysis. In: JOURNAL OF CO2 UTILIZATION, vol. 46. ISSN 2212-9820
Contributo su Rivista - Marchese, M.; Gandiglio, M.; Lanzini, A. (2021)
A Circular Approach for Making Fischer–Tropsch E-fuels and E-chemicals From Biogas Plants in Europe. In: FRONTIERS IN ENERGY RESEARCH, vol. 9. ISSN 2296-598X
Contributo su Rivista - Marchese, Marco (2021)
Conversion of industrial CO2 to value-added fuels and chemicals via Fischer-Tropsch upgrade. relatore: LANZINI, ANDREA; SANTARELLI, MASSIMO; , 33. XXXIII Ciclo, P.: 223
Doctoral Thesis - Marchese, Marco; Giglio, Emanuele; Santarelli, Massimo; Lanzini, Andrea (2020)
Energy performance of Power-to-Liquid applications integrating biogas upgrading, reverse water gas shift, solid oxide electrolysis and Fischer-Tropsch technologies. In: ENERGY CONVERSION AND MANAGEMENT. X, vol. 6. ISSN 2590-1745
Contributo su Rivista - Marchese, Marco; Heikkinen, Niko; Giglio, Emanuele; Lanzini, Andrea; Lehtonen, Juha; ... (2019)
Kinetic Study Based on the Carbide Mechanism of a Co-Pt/γ-Al2O3 Fischer–Tropsch Catalyst Tested in a Laboratory-Scale Tubular Reactor. In: CATALYSTS, vol. 9, pp. 717-736. ISSN 2073-4344
Contributo su Rivista