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Methanol Steam Reforming over Silica Aerogel Catalyst for Hydrogen Production
Date
2017-09-12
Author
Değirmencioğlu, Pınar
Sezgi, Naime Aslı
Doğu, Timur
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https://hdl.handle.net/11511/84053
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Methanol steam reforming over silica aerogel supported catalyst for hydrogen production
Değirmencioğlu, Pınar; Sezgi, Naime Aslı; Doğu, Timur; Department of Chemical Engineering (2018)
Our energy demand shows an increasing trend parallel to the increase in population. An important issue while we are meeting our energy need is that the source of energy should not pollute the environment. It is seen that hydrogen becomes a suitable choice as energy source when the fact that depletion of fossil fuels is considered. Hydrogen, which is not found in pure form in nature, is to be produced by some methods. In this study, hydrogen was produced from methanol steam reforming reaction. By doing so, m...
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Methanol oxidation by nano Pt C electrocatalysts and DFT studies
Gökağaç Arslan, Gülsün; Çokangın, Aysu (2016-09-15)
Methanol dehydration reaction to produce clean diesel alternative dimethylether over mesoporous aluminosilicate-based catalysts
VARIŞLI, DİLEK; Tokay, Kenan Cem; Ciftci, Ayseguel; DOĞU, TİMUR; Doğu, Timur (2009-06-01)
Due to its good burning characteristics and high cetane number, dimethylether (DME) is considered as a highly attractive and clean alternative to diesel fuel. This ether can be produced by methanol dehydration reaction over solid acid catalysts. In the present study, activities of mesoporous aluminosilicate catalysts prepared by the hydrothermal synthesis route and containing Al/Si atomic ratios ranging between 0.03 and 0.18 were tested in methanol dehydration. The optimum Al/Si ratio was 0.09 for DME synth...
Ethylene and acetaldehyde production by selective oxidation of ethanol using mesoporous V-MCM-41 catalysts
Gucbilmez, Yesim; Doğu, Timur; Balci, Suna (2006-05-10)
Vanadium-incorporated MCM-41 type catalytic materials, which were synthesized by a direct hydrothermal synthesis procedure, showed very high activity and high selectivity in the production of ethylene from ethanol in an oxidative process. Ethylene selectivity showed a significant increase with an increase in temperature over 300 degrees C, while relatively high acetaldehyde selectivities were observed at lower temperatures. An ethylene yield value of 0.66 obtained at 400 degrees C with an O-2/ethanol feed r...
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P. Değirmencioğlu, N. A. Sezgi, and T. Doğu, “Methanol Steam Reforming over Silica Aerogel Catalyst for Hydrogen Production,” 2017, Accessed: 00, 2021. [Online]. Available: https://hdl.handle.net/11511/84053.