Hydrocracking of vacuum residue using NiWS(x) dispersed catalysts

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초록

In this study, unsupported nickel-tungsten sulfide (NiWS(x)) particles, where x is the actual molar ratio of Ni/W (x = 0, 0.005, 0.01, 0.02), were prepared, characterized with XRD, XPS, TEM, and EDX elemental mapping, and applied as a dispersed catalyst for upgrading of extra-heavy oil into good-quality liquid products. The hydrocracking reaction of vacuum residue (VR) was carried out at 400 degrees C with an initial H-2 pressure of 70 bar. It was found that an increase in the Ni content increases the degree of sulfidation of tungsten, promotes formation of Ni-W-S phases, and enhances the overall catalytic activity. Among the NiWS(x) dispersed catalysts, the NiWS(0.02) catalyst showed the highest performance in total liquid product yield (87.0 wt.%), commercial fuel fraction yield (51.9 wt.%), API gravity value of liquid product (14.3 degrees), and sulfur removal conversion (86.5%). In addition, coke formation (4.0 wt.%) was efficiently suppressed, and the C-5-asphaltene conversion (81.8%) was significantly raised. (C) 2016 Elsevier Ltd. All rights reserved.

키워드

Vacuum residueHydrotreatingHydrocrackingDispersed catalystNi-W-S catalystHYDROTREATING CATALYSTSHYDRODESULFURIZATION CATALYSTSSUPPORT-INTERACTIONPROMOTED TUNGSTENWS2 NANOCLUSTERSHEAVY PETROLEUMMODEL CATALYSTSACTIVE PHASEPART 1NICKEL
제목
Hydrocracking of vacuum residue using NiWS(x) dispersed catalysts
저자
Hur, Young GulLee, Dae-WonLee, Kwan-Young
DOI
10.1016/j.fuel.2016.08.027
발행일
2016-12-01
유형
Article
저널명
Fuel
185
페이지
794 ~ 803