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Catalytic pathwayz and deactivation in alternative sources of fuel production: butene oligomerizaton and ship/shale-gasoils cracking

  • Autores: Sepideh Izaddoust
  • Directores de la Tesis: Eva Epelde Bejerano (dir. tes.), Pedro Castaño Sanchez (dir. tes.), Javier Bilbao Elorriaga (tut. tes.)
  • Lectura: En la Universidad del País Vasco - Euskal Herriko Unibertsitatea ( España ) en 2023
  • Idioma: inglés
  • Programa de doctorado: Programa de Doctorado en Ingeniería Química por la Universidad del País Vasco/Euskal Herriko Unibertsitatea
  • Materias:
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    • Tesis en acceso abierto en: ADDI
  • Resumen
    • Catalytic pathways and deactivation on acid catalysts have been studied for two industrial catalytic processes implemented in the current refinery, oligomerization and FCC units, which are versatile for facing the recent changes in supply/demand of transportation fuels (gasoline and diesel) within the energy transition scenario. For this purpose, each process has been studied separately, in different types of reactors: fixed bed and operando UV-Vis cell reactors, for oligomerization and a riser simulator for FCC. Other feeds have been used: (i) 1-butene (n-butenes in equilibrium) for oligomerization; and non-conventional (shale oil) and conventional VGO, and MARPOL C type residue, for FCC. Likewise, two heterogeneous acid catalysts have been used: HZSM-5 and HY zeolite-based catalysts for oligomerization and FCC, respectively. The main goal has been to establish the effect of operating conditions (temperature, pressure, space time, partial pressure), the use of alternative feeds, especially to be incorporated into FCC units, on the catalytic performance (conversion, main lumped product selectivity-yield, and catalyst stability) and on coke deactivation. Used catalysts have been analyzed using several characterization techniques: TPD-N2/TPO, HeTPD-GC/MS, soluble coke extraction, FTIR, and FT-ICR MS spectroscopies.


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