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  4. Benchmarking performance: A round-robin testing for liquid alkaline electrolysis
 
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2024
Journal Article
Title

Benchmarking performance: A round-robin testing for liquid alkaline electrolysis

Abstract
Liquid alkaline water electrolysis has gained considerable interest in recent years due to its promising role in an energy sector based on renewable energy sources. Its main advantage is the low investment cost of industrial alkaline water electrolyzers compared to other electrolysis technologies. A challenge remains in developing cost-efficient materials, stable in corrosive electrolytes, and offering competitive cell performance. Although there are many publications in liquid alkaline electrolysis, there is insufficient standardization of experimental conditions and procedures, reference materials, and hardware. As a result, comparability and reproducibility suffer, significantly slowing down research progress. This manuscript presents the initial efforts towards the development of such reference hardware and procedures within the framework of Task 30 Electrolysis in the Technology Collaboration Programme on Advanced Fuel Cells (AFC TCP) of the International Energy Agency (IEA). For this purpose, a homogenized setup including the electrolysis cell, functional materials, experimental conditions, and a test protocol was developed. The protocol and hardware were tested simultaneously at eleven different institutions in Europe and North America. To evaluate the success of this approach, polarization and run-in data were collected and analyzed for comparison, and performance differences were calculated. Significant disparities between the laboratories were observed and some key influence factors were identified: iron content in the electrolyte resulted to be a main source of deviation between experiments, along with temperature control and the conditioning of the cells. The results suggest that additional attention to detailed experimental conditions should be paid to obtain meaningful performance data in future research.
Author(s)
Appelhaus, Simon
Technische Universität Clausthal
Ritz, Lukas
Forschungszentrum Jülich GmbH
Pape, Sharon Virginia
Forschungszentrum Jülich GmbH
Lohmann-Richters, Felix P.
Forschungszentrum Jülich GmbH
Kraglund, Mikkel Rykær
Technical University of Denmark
Jensen, Jens Oluf
Technical University of Denmark
Massari, Francesco
F2N Green Hydrogen srl
Boroomandnia, Mehrdad
F2N Green Hydrogen srl
Romanò, Maurizio
F2N Green Hydrogen srl
Albers, Justin Georg
Fraunhofer-Institut für Fertigungstechnik und Angewandte Materialforschung IFAM  
Kubeil, Clemens
Fraunhofer-Institut für Fertigungstechnik und Angewandte Materialforschung IFAM  
Bernäcker, Christian Immanuel  
Fraunhofer-Institut für Fertigungstechnik und Angewandte Materialforschung IFAM  
Lemcke, Michelle Sophie
Fraunhofer-Institut für Windenergiesysteme IWES  
Menzel, Nadine
Fraunhofer-Institut für Windenergiesysteme IWES  
Bender, Guido
National Laboratory of the Rockies
Chen, Binyu
Simon Fraser University
Holdcroft, Steven J.
Simon Fraser University
Delmelle, Renaud
UCLouvain
Proost, Joris
UCLouvain
Hnát, Jaromír
University of Chemistry and Technology, Prague
Kauranen, Pertti S.
LUT University
Ruuskanen, Vesa V.
LUT University
Viinanen, Toni
LUT University
Müller, Martin
Forschungszentrum Jülich GmbH
Turek, Thomas
Technische Universität Clausthal
Shviro, Meital
National Laboratory of the Rockies
Journal
International Journal of Hydrogen Energy  
Funder
Office of Energy Efficiency and Renewable Energy
Open Access
DOI
10.1016/j.ijhydene.2024.11.288
Additional link
Full text
Language
English
Fraunhofer-Institut für Fertigungstechnik und Angewandte Materialforschung IFAM  
Fraunhofer-Institut für Windenergiesysteme IWES  
Keyword(s)
  • AFC TCP task 30

  • Alkaline water electrolysis

  • Benchmarking

  • Reproducibility

  • Round robin

  • Test protocol

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