Integration of metal hydride devices with polymer electrolyte fuel cells and electrolyzers for stationary applications

This paper presents the experimental results of the system integration of a fuel cell (FC), an electrolyzer and a metal hydride hydrogen storage and purification system. A pilot scale experimental power installation H2Smart with an electric power of 1 kW is developed, and the results of its operatio...

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Main Authors: Blinov Dmitry, Borzenko Vasily, Glagoleva Aliya, Kazakov Alexey
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/40/e3sconf_esr2019_06008.pdf
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author Blinov Dmitry
Borzenko Vasily
Glagoleva Aliya
Kazakov Alexey
author_facet Blinov Dmitry
Borzenko Vasily
Glagoleva Aliya
Kazakov Alexey
author_sort Blinov Dmitry
collection DOAJ
description This paper presents the experimental results of the system integration of a fuel cell (FC), an electrolyzer and a metal hydride hydrogen storage and purification system. A pilot scale experimental power installation H2Smart with an electric power of 1 kW is developed, and the results of its operation in different regimes are presented. The problems of hydrogen desorption for the supply of FC and hydrogen sorption from the electrolyzer at the start are shown. Possible solutions of this problem are proposed.
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spelling doaj.art-f65729c364f34733a136fdeecf1c032d2022-12-21T21:33:33ZengEDP SciencesE3S Web of Conferences2267-12422019-01-011140600810.1051/e3sconf/201911406008e3sconf_esr2019_06008Integration of metal hydride devices with polymer electrolyte fuel cells and electrolyzers for stationary applicationsBlinov DmitryBorzenko Vasily0Glagoleva AliyaKazakov Alexey1Joint institute for high temperatures RASJoint institute for high temperatures RASThis paper presents the experimental results of the system integration of a fuel cell (FC), an electrolyzer and a metal hydride hydrogen storage and purification system. A pilot scale experimental power installation H2Smart with an electric power of 1 kW is developed, and the results of its operation in different regimes are presented. The problems of hydrogen desorption for the supply of FC and hydrogen sorption from the electrolyzer at the start are shown. Possible solutions of this problem are proposed.https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/40/e3sconf_esr2019_06008.pdf
spellingShingle Blinov Dmitry
Borzenko Vasily
Glagoleva Aliya
Kazakov Alexey
Integration of metal hydride devices with polymer electrolyte fuel cells and electrolyzers for stationary applications
E3S Web of Conferences
title Integration of metal hydride devices with polymer electrolyte fuel cells and electrolyzers for stationary applications
title_full Integration of metal hydride devices with polymer electrolyte fuel cells and electrolyzers for stationary applications
title_fullStr Integration of metal hydride devices with polymer electrolyte fuel cells and electrolyzers for stationary applications
title_full_unstemmed Integration of metal hydride devices with polymer electrolyte fuel cells and electrolyzers for stationary applications
title_short Integration of metal hydride devices with polymer electrolyte fuel cells and electrolyzers for stationary applications
title_sort integration of metal hydride devices with polymer electrolyte fuel cells and electrolyzers for stationary applications
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/40/e3sconf_esr2019_06008.pdf
work_keys_str_mv AT blinovdmitry integrationofmetalhydridedeviceswithpolymerelectrolytefuelcellsandelectrolyzersforstationaryapplications
AT borzenkovasily integrationofmetalhydridedeviceswithpolymerelectrolytefuelcellsandelectrolyzersforstationaryapplications
AT glagolevaaliya integrationofmetalhydridedeviceswithpolymerelectrolytefuelcellsandelectrolyzersforstationaryapplications
AT kazakovalexey integrationofmetalhydridedeviceswithpolymerelectrolytefuelcellsandelectrolyzersforstationaryapplications