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Process intensification using CO2 as cosolvent under supercritical conditions applied to the design of biodiesel production

Autor
Maçaira, J.; Santana, A.; Oliveira, A.; Ramirez, E.; Larrayoz, M.
Tipus d'activitat
Article en revista
Revista
Industrial and engineering chemistry research (Online)
Data de publicació
2014-03-12
Volum
53
Número
10
Pàgina inicial
3985
Pàgina final
3995
DOI
https://doi.org/10.1021/ie402657e Obrir en finestra nova
Projecte finançador
EXTRACCIÓN Y FRACCIONAMIENTO CON FLUIDOS SUPERCRITICOS DE SEMILLAS OLEAGINOSAS PARA LA PRODUCCIÓN CONJUNTA DE BIODIESEL Y ALIMENTOS
Repositori
http://hdl.handle.net/2117/22980 Obrir en finestra nova
URL
http://pubs.acs.org/doi/abs/10.1021/ie402657e Obrir en finestra nova
Resum
In this work, a new process for biodiesel production under supercritical conditions in presence of cosolvent (CO2) is designed and simulated using the process simulator Aspen Plus. The model was developed using experimental reaction data of continuous catalytic biodiesel synthesis at a 74:25:1 CO2 to methanol to triglycerides molar ratio, temperature range between 150 and 300 C, at 250 bar. To decrease the temperature and pressure of operation and increase the conversion efficiency of biodiesel,...
Citació
Maçaira, J. [et al.]. Process intensification using CO2 as cosolvent under supercritical conditions applied to the design of biodiesel production. "Industrial and engineering chemistry research (Online)", 12 Març 2014, vol. 53, núm. 10, p. 3985-3995.
Paraules clau
Computer software, Engineering controlled terms: Biodiesel, Synthesis (chemical), Synthetic fuels
Grup de recerca
FLUIDS - Enginyeria de Fluids

Participants

  • Maçaira Nogueira, Jose Miguel Lopes  (autor)
  • Santana Scotelari de Souza, Aline  (autor)
  • Oliveira Costa, Ana Carolina  (autor)
  • Ramirez Rangel, Eliana  (autor)
  • Larrayoz Iriarte, Maria Angeles  (autor)