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Abstract

The scope of this paper is the development and implementation of a safety risk assessment methodology to highlight hazards potentially prevailing during autothermal reforming of natural gas for hydrogen production in a membrane reactor, as well as to reveal potential accidents related to hydrogen under certain conditions. The newly developed methodology is able to cover all possible risk scenarios. The methodology was applied to a novel autothermal membrane fluidized bed reactor integrated within a micro-CHP system of 5 kWel with a PEM fuel cell. The system modelled is based on a prototype 'developed within the European ReforCELL project. A thorough safety risk assessment methodology was applied examining and evaluating the final outcomes of hydrogen release accident scenarios. The main conclusion of this analysis is that hydrogen may lead to a series of accident types that may pose a threat to the public safety, however, all considered scenarios fall well within the standard criteria, which indicates the adequate safety of this novel technology. (C) Copyright 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.

Year of Publication
2015
Journal
International Journal of Hydrogen Energy
Volume
40
Number of Pages
10090-10102
ISBN Number
0360-3199
Accession Number
WOS:000359030100024
DOI
10.1016/j.ijhydene.2015.06.048
Alternate Journal
Int J Hydrogen Energ
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