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Two-step continuous upgrading of sawdust pyrolysis oil to deoxygenated hydrocarbons using hydrotreating and hydrodeoxygenating catalysts

Authors
Kim, GayoungSeo, JangwooChoi, Jae-WookJae, JunghoHa, Jeong-MyeongSuh, Dong JinLee, Kwan-YoungJeon, Jong-KiKim, Jae-Kon
Issue Date
1-4월-2018
Publisher
ELSEVIER SCIENCE BV
Keywords
hydrotreating; hydrodeoxygenation; ruthenium; tungstate-zirconia; palladium
Citation
CATALYSIS TODAY, v.303, pp.130 - 135
Indexed
SCIE
SCOPUS
Journal Title
CATALYSIS TODAY
Volume
303
Start Page
130
End Page
135
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/76171
DOI
10.1016/j.cattod.2017.09.027
ISSN
0920-5861
Abstract
The two-step hydrodeoxygenation of pine sawdust pyrolysis oil, or bio-oil, is performed using pairs of first-step hydrotreating and second-step hydrodeoxygenating catalysts. The reaction results demonstrate that the combination of hydrotreating carbon-supported 5 wt% Pd (5 wt% Pd/C) and hydrodeoxygenating tungstate-zirconia-supported 3 wt% Ru (3 wt% Ru/WZr) catalysts produced the highest yield of oil products and the lowest yield of cokes and tars. The hydrodeoxygenated liquid products are further analyzed using FT-IR, which indicates the removal of carbonyls and hydroxyls along with an increase of methyls. The roles of hydrotreating Pd/C are further studied using GC/MS results of the hydrotreated liquid products; these results indicate that the hydrogenation of carbonyls to alcohols and the saturation of furans occur during the first step of the hydrotreating process. The removal of carbonyls and unsaturated furans can suppress their strong adsorption to noble metal surfaces and then their carbonization to cokes.
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공과대학 (화공생명공학과)
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