Hydrocracking of vacuum residue using nano-dispersed tungsten carbide catalyst

  • Kim, Chan Hun
  • Hur, Young Gul
  • Lee, Seong Ho
  • Lee, Kwan-Young
Citations

WEB OF SCIENCE

20
Citations

SCOPUS

21

초록

In this study, nano-sized tungsten carbide (2.8 nm) particles with enhanced properties were successfully synthesized using removable ceramic coating method and then applied as dispersed catalysts to hydrocracking of vacuum residue, which was carried out at 673 K for 4 h with initial hydrogen pressure of 70 bar. The nano-sized particles were then characterized with XRD, TEM, and BET analysis. The temperature programmed desorption analysis results showed that nano-sized tungsten particles are capable of superior hydrogen adsorption (compared to bulk tungsten carbide) as well as high catalytic performance not only in commercial liquid yield (Naphtha, middle distillate, and gas oil; 46.7 wt%) but also in coke formation (5.9 wt%). Finally, the characterization and performance correlation of the nano-sized tungsten carbide catalyst were analyzed.

키워드

Tungsten carbideDispersed catalystExtra-heavy oilHydrocrackingVacuum residueHydrogenationHEAVY OILETHYLENE HYDROGENATIONFUEL-CELLSPETROLEUMBEHAVIORHYDRODESULFURIZATIONHYDROCONVERSIONPYROLYSIS
제목
Hydrocracking of vacuum residue using nano-dispersed tungsten carbide catalyst
저자
Kim, Chan HunHur, Young GulLee, Seong HoLee, Kwan-Young
DOI
10.1016/j.fuel.2018.05.091
발행일
2018-12-01
유형
Article
저널명
Fuel
233
페이지
200 ~ 206