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Acceleration of biodiesel production from off-grade oil over waste-based CaO catalyst

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2022
Pavlovic-Conference+Report+2022.pdf (2.863Mb)
Autori
Pavlović, Stefan
Kosić, Višnja
Lončarević, Davor
Kostić, Milan
Marinković, Dalibor
Konferencijski prilog (Objavljena verzija)
Metapodaci
Prikaz svih podataka o dokumentu
Apstrakt
Waste-based CaO was synthesized from chicken eggshell, which calcined form (900 ºC, 5 ºC/min, 4 h) was hydrated (80 ºC, S:L=1:5, 24 h) and rehydrated/calcined (600 ºC, 5 ºC/min, 4 h). The obtained catalyst was characterized (Hg-porosimetry and TPD-CO2) and tested in biodiesel synthesis from off-grade sunflower oil by transesterification to analyse the influence of water addition on reaction intensification. Water content was varied in the range from 1 wt% to 9 wt% by weight of oil. It is shown that water addition positively affects the catalytic activity leading to a reduction in induction time and to faster achievement of the reaction equilibrium (fatty acid methyl esters content > 95%), which for a water content higher than 1 wt% is achieved in 90 min. On the other hand, the equilibrium for the reaction without water addition was achieved considerably later (after 150 min).
Ključne reči:
green catalysts / waste utilization / transesterification / reaction intensification / energy
Izvor:
Conference report/Book of abstracts-10th International Conference "Fuel Science - From Production to Propulsion", 2022, 83-84
Izdavač:
  • Aachen, Germany : Fuel Science Center, RWTH Aachen University
[ Google Scholar ]
Handle
https://hdl.handle.net/21.15107/rcub_cer_5304
URI
https://www.fuelcenter.rwth-aachen.de/cms/Fuelcenter/Austausch/Internationale-Konferenz/~rwsva/10-Internationale-Konferenz-2022/?lidx=1
https://cer.ihtm.bg.ac.rs/handle/123456789/5304
Kolekcije
  • Radovi istraživača / Researchers' publications
Institucija/grupa
IHTM
TY  - CONF
AU  - Pavlović, Stefan
AU  - Kosić, Višnja
AU  - Lončarević, Davor
AU  - Kostić, Milan
AU  - Marinković, Dalibor
PY  - 2022
UR  - https://www.fuelcenter.rwth-aachen.de/cms/Fuelcenter/Austausch/Internationale-Konferenz/~rwsva/10-Internationale-Konferenz-2022/?lidx=1
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/5304
AB  - Waste-based CaO was synthesized from chicken eggshell, which calcined form (900 ºC, 5 ºC/min, 4 h) was hydrated (80 ºC, S:L=1:5, 24 h) and rehydrated/calcined (600 ºC, 5 ºC/min, 4 h). The obtained catalyst was characterized (Hg-porosimetry and TPD-CO2) and tested in biodiesel synthesis from off-grade sunflower oil by transesterification to analyse the influence of water addition on reaction intensification. Water content was varied in the range from 1 wt% to 9 wt% by weight of oil. It is shown that water addition positively affects the catalytic activity leading to a reduction in induction time and to faster achievement of the reaction equilibrium (fatty acid methyl esters content > 95%), which for a water content higher than 1 wt% is achieved in 90 min. On the other hand, the equilibrium for the reaction without water addition was achieved considerably later (after 150 min).
PB  - Aachen, Germany : Fuel Science Center, RWTH Aachen University
C3  - Conference report/Book of abstracts-10th International Conference "Fuel Science - From Production to Propulsion"
T1  - Acceleration of biodiesel production from off-grade oil over waste-based CaO catalyst
SP  - 83
EP  - 84
UR  - https://hdl.handle.net/21.15107/rcub_cer_5304
ER  - 
@conference{
author = "Pavlović, Stefan and Kosić, Višnja and Lončarević, Davor and Kostić, Milan and Marinković, Dalibor",
year = "2022",
abstract = "Waste-based CaO was synthesized from chicken eggshell, which calcined form (900 ºC, 5 ºC/min, 4 h) was hydrated (80 ºC, S:L=1:5, 24 h) and rehydrated/calcined (600 ºC, 5 ºC/min, 4 h). The obtained catalyst was characterized (Hg-porosimetry and TPD-CO2) and tested in biodiesel synthesis from off-grade sunflower oil by transesterification to analyse the influence of water addition on reaction intensification. Water content was varied in the range from 1 wt% to 9 wt% by weight of oil. It is shown that water addition positively affects the catalytic activity leading to a reduction in induction time and to faster achievement of the reaction equilibrium (fatty acid methyl esters content > 95%), which for a water content higher than 1 wt% is achieved in 90 min. On the other hand, the equilibrium for the reaction without water addition was achieved considerably later (after 150 min).",
publisher = "Aachen, Germany : Fuel Science Center, RWTH Aachen University",
journal = "Conference report/Book of abstracts-10th International Conference "Fuel Science - From Production to Propulsion"",
title = "Acceleration of biodiesel production from off-grade oil over waste-based CaO catalyst",
pages = "83-84",
url = "https://hdl.handle.net/21.15107/rcub_cer_5304"
}
Pavlović, S., Kosić, V., Lončarević, D., Kostić, M.,& Marinković, D.. (2022). Acceleration of biodiesel production from off-grade oil over waste-based CaO catalyst. in Conference report/Book of abstracts-10th International Conference "Fuel Science - From Production to Propulsion"
Aachen, Germany : Fuel Science Center, RWTH Aachen University., 83-84.
https://hdl.handle.net/21.15107/rcub_cer_5304
Pavlović S, Kosić V, Lončarević D, Kostić M, Marinković D. Acceleration of biodiesel production from off-grade oil over waste-based CaO catalyst. in Conference report/Book of abstracts-10th International Conference "Fuel Science - From Production to Propulsion". 2022;:83-84.
https://hdl.handle.net/21.15107/rcub_cer_5304 .
Pavlović, Stefan, Kosić, Višnja, Lončarević, Davor, Kostić, Milan, Marinković, Dalibor, "Acceleration of biodiesel production from off-grade oil over waste-based CaO catalyst" in Conference report/Book of abstracts-10th International Conference "Fuel Science - From Production to Propulsion" (2022):83-84,
https://hdl.handle.net/21.15107/rcub_cer_5304 .

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