n-Butane Dehydrogenation on PtSn/Carbon Modified MgO Catalysts

Authors
Shashikala, VeldurthiJung, HeonShin, Chae-HoKoh, Hyoung-LimJung, Kwang-Deog
Issue Date
2013-07
Publisher
SPRINGER
Citation
CATALYSIS LETTERS, v.143, no.7, pp.651 - 656
Abstract
Carbon modified magnesium oxides (CMgO-600, CMgO-700 and CMgO-800) were prepared from pyrolyzing n-hexane vapors at 600, 700 and 800 A degrees C, respectively, on the surface of the MgO. Modification of magnesium oxide (CMgO) with carbon increased the covalent character of the Mg-O bond, consequently decreasing the basicity. TEM and H-2 chemisorption showed that the average metal particle size on CMgO was ca. 3.0 nm and the HRTEM images showed that the metal particles consisted of Pt-Sn alloys with different Pt/Sn composition. PtSn/CMgO catalysts showed much higher activity and selectivity than PtSn/MgO for the butane dehydrogenation, because a high metal dispersion on PtSn/CMgO resulted from preventing MgO dissolution during the impregnation step of metal salts on the support. The PtSn/CMgO-600 catalyst among the prepared catalysts gave the highest butenes yield.
Keywords
NANOCRYSTALLINE MGO; PERFORMANCE; BEHAVIOR; SUPPORT; PT/MGO; HYDROGENOLYSIS; REDISPERSION; OXIDATION; PLATINUM; SIZE; NANOCRYSTALLINE MGO; PERFORMANCE; BEHAVIOR; SUPPORT; PT/MGO; HYDROGENOLYSIS; REDISPERSION; OXIDATION; PLATINUM; SIZE; CMgO; PtSn/CMgO; PtSn alloy; n-Butane dehydrogenation
ISSN
1011-372X
URI
https://pubs.kist.re.kr/handle/201004/127918
DOI
10.1007/s10562-013-1009-3
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KIST Article > 2013
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