TY - JOUR
T1 - Effect of support materials on supported platinum catalyst prepared using a supercritical fluid deposition technique and their catalytic performance for hydrogen-rich gas production from lignocellulosic biomass
AU - Kaya, Burçak
AU - Irmak, Sibel
AU - Hesenov, Arif
AU - Erbatur, Oktay
AU - Erkey, Can
N1 - Funding Information:
Financial supports from Scientific and Technical Research Council of Turkey (TUBITAK) and International Centre for Hydrogen Energy Technologies (UNIDO-ICHET) are gratefully acknowledged (The project numbers: MAG 108M037 and RD07-HP-04, respectively). One of the authors (Burçak Kaya) was supported by TUBITAK and Bursa Technical University. Their contributions were greatly appreciated.
PY - 2012/11
Y1 - 2012/11
N2 - A number of supported Pt catalysts have been prepared by supercritical carbon dioxide deposition technique using various supports. The reduction of Pt precursor to metal performed by heat treatment under nitrogen flow. The prepared catalysts were evaluated for gasification of wheat straw biomass hydrolysates and glucose solution for hydrogen-rich gas production. The activities of the catalysts were highly affected by distribution, amount and particle sizes of platinum on the support. In general carbon-based supported Pt catalysts exhibited better catalytic activity compared to other supports to be used. Compared to biomass hydrolysate feed, gasification of glucose always resulted in higher volume of gas mixture, however, hydrogen selectivity was decreased in all catalyst except multi-walled carbon nanotube. The deposition of Pt particles inner side of that support makes the large organic substrates inaccessible to reach and react with those metal particles.
AB - A number of supported Pt catalysts have been prepared by supercritical carbon dioxide deposition technique using various supports. The reduction of Pt precursor to metal performed by heat treatment under nitrogen flow. The prepared catalysts were evaluated for gasification of wheat straw biomass hydrolysates and glucose solution for hydrogen-rich gas production. The activities of the catalysts were highly affected by distribution, amount and particle sizes of platinum on the support. In general carbon-based supported Pt catalysts exhibited better catalytic activity compared to other supports to be used. Compared to biomass hydrolysate feed, gasification of glucose always resulted in higher volume of gas mixture, however, hydrogen selectivity was decreased in all catalyst except multi-walled carbon nanotube. The deposition of Pt particles inner side of that support makes the large organic substrates inaccessible to reach and react with those metal particles.
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U2 - 10.1016/j.biortech.2012.07.098
DO - 10.1016/j.biortech.2012.07.098
M3 - Article
C2 - 22939187
AN - SCOPUS:84866744682
SN - 0960-8524
VL - 123
SP - 723
EP - 726
JO - Bioresource technology
JF - Bioresource technology
ER -