BIPOLAR PLATES FOR ELECTROLYZERS AND FUEL CELLS – HOW INNOVATION MANAGEMENT IS AS A BASIS FOR SUCCESS THESE COMPONENTS

Authors

DOI:

https://doi.org/10.29121/ijoest.v5.i6.2021.247

Keywords:

Electrolyzer, Fuel Cell, Tianium Plates, Bipolar Plates, Innovation Management, Innovation

Abstract

An almost abrupt change in attitude towards applications in the field of renewable energies has emerged in recent months, both among decision-makers in politics and in companies. [1]

In particular, the topic of hydrogen production by electrolysis plays an eminently important role. In water electrolysis, water is split into its constituent ¬parts hydrogen and oxygen using electrical energy. The resulting hydrogen is of interest to future energy systems for a number of reasons, including the fact that hydrogen can serve as a storage medium for electrical energy from renewable energy conversion systems such as photovoltaic or wind turbines.

Downloads

Download data is not yet available.

References

Communication From The Commission To The European Parliament, The European Council, The Council, The European Economic And Social Committee And The Committee Of The Regions : The European Green Deal, Brussels, 11.12.2019.

Danoiel Bell (2002) On the Threshold of New Communication Technology, in: Hard Manager: Innovation Management, Vol. 1, New York.

Dorothy Leonard-Barton, William A. Kraus (2002) The introduction of new technologies, in: , in Hard Manager: Innovation Management, vol. 1, New York.

Dorothy Leonard-Barton, William A. Kraus (2002) The introduction of new technologies, in: , in Hard Manager: Innovation Management, vol. 1, New York.

Dorothy Leonard-Barton, William A. Kraus (2002) The introduction of new technologies, in: , in Hard Manager: Innovation Management, vol. 1, New York.

Everett C. Hughes (2002) What can research and development actually achieve, in: Hard Manager: Innovation Management, Vol. 1, New York.

Everett C. Hughes (2002) What can research and development actually achieve, in: Hard Manager: Innovation Management, Vol. 1, New York.

Hickmann T. (2008) Plastic applications in PEM fuel cells. VDI Reports, No 2035. 81-83 p

Höh, M (2017) Porous transport layers for polymer electrolyte membrane water electrolysis, Jülich, p. 3.

Höh, M (2017) Porous transport layers for polymer electrolyte membrane water electrolysis, Jülich, p. 3.

Kurt Gaubinger, Michael Rabl, Scott Swan, Thomas Werani (2014): Innovation and Product Management - A Holistic and Practical Approach to Reducing Uncertainty, Springer Verlag, Heidelberg, 2014. Retrieved from https://doi.org/10.1007/978-3-642-54376-0

Martin Kaschny, Matthias Nolden, Siegfried Schreuder (2015): Innovationsmanagement im Mittelstand - Strategien, Implementierung, Praxisbeispiele; Springer Verlag, Wiesbaden. Retrieved from https://doi.org/10.1007/978-3-658-02545-8

Thorsten Hickmann, (2021) Thorsten Derieth: Duennere Bipolarplatten fuer Brennstoffzellen, in Kunststoffe, 6/2021, Munich 2021, p. 60-63

Thorsten Hickmann, (2021) Thorsten Derieth: Duennere Bipolarplatten fuer Brennstoffzellen, in Kunststoffe, 6/2021, Munich 2021, p. 60-63.

Downloads

Published

2021-12-13

How to Cite

Hickmann, T. (2021). BIPOLAR PLATES FOR ELECTROLYZERS AND FUEL CELLS – HOW INNOVATION MANAGEMENT IS AS A BASIS FOR SUCCESS THESE COMPONENTS: . International Journal of Engineering Science Technologies, 5(6), 54–58. https://doi.org/10.29121/ijoest.v5.i6.2021.247