Suppression of ethylene-induced carbon deposition in diesel autothermal reforming

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Diesel has high-hydrogen density and well-developed infrastructure, which are beneficial properties for fuel cell commercialization. However, diesel reforming poses several technical difficulties, including carbon deposition, sulfur poisoning, and fuel delivery. Specifically, carbon deposition can cause catastrophic failures in diesel reformers. in diesel reformate gas, the concentration of ethylene, a carbon precursor, is higher than other shorter hydrocarbons (C(2)-C(4)). In this study, we examine the cause of ethylene formation in diesel reforming. Ethylene formation can be closely related to paraffins' decomposition from homogeneous reaction. A portion of the catalyst active sites can become occupied with aromatic compounds, degrading the activity of the catalyst. Thus, a portion of the paraffins is decomposed via non-catalytic, homogeneous reactions, accounting for much of the observed ethylene formation. In this study, reforming conditions and fuel delivery method are investigated with respect to ethylene formation. By using a diesel ultrasonic injector, reactant mixing was enhanced, resulting in suppression of ethylene formation. This subsequently inhibited the ethylene-induced carbon deposition and improved the long-term performance of diesel ATR (autothermal reforming). (C) 2008 International Association for Hydrogen Energy. Published by Elsevier Ltd. All rights reserved.
Publisher
PERGAMON-ELSEVIER SCIENCE LTD
Issue Date
2009-02
Language
English
Article Type
Article
Keywords

FUEL-CELL SYSTEMS; LIQUID HYDROCARBONS; HYDROGEN; DELIVERY; CATALYST; GASOLINE

Citation

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, v.34, no.4, pp.1844 - 1851

ISSN
0360-3199
DOI
10.1016/j.ijhydene.2008.12.016
URI
http://hdl.handle.net/10203/12246
Appears in Collection
ME-Journal Papers(저널논문)
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