2014
DOI: 10.1016/j.ijhydene.2014.02.059
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Production of CO-rich hydrogen gas from glycerol dry reforming over La-promoted Ni/Al2O3 catalyst

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Cited by 74 publications
(35 citation statements)
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“…The 13 C-NMR spectrum of the product was also confirmed the structure of PAMS / PMMA diblock copolymer. The same results are obtained by Morejόn et al [68].…”
Section: Nmr Studysupporting
confidence: 89%
“…The 13 C-NMR spectrum of the product was also confirmed the structure of PAMS / PMMA diblock copolymer. The same results are obtained by Morejόn et al [68].…”
Section: Nmr Studysupporting
confidence: 89%
“…It should be noted that this high glycerol total conversion has been observed by all researchers that have investigated this reaction (Cheng et al 2011;Ebshish et al 2012). GC analysis revealed that the gaseous products were H2, CO2, CO, and CH4, which agreed with previous work showing that these are the major gaseous products of glycerol steam reforming at 400 °C (Hirai et al 2005;Zhang et al 2007;Dou et al 2014;Siew et al 2014;Gallegos-Suárez et al 2015). Hydrogen yield and selectivity (%) are presented in Fig.…”
Section: Catalytic Activity and Selectivitysupporting
confidence: 86%
“…Methane yield is apparently lower than yield of hydrogen and carbon monoxide in the consecutive run. Methane is formed via dehydrogenation of glycerol, which also leads to the deposition of carbonaceous species [16]. Carbon monoxide yield is high for all the catalysts, circa 3 times the yield of hydrogen.…”
Section: Reaction Studymentioning
confidence: 99%