Comparative Life-Cycle-Assessment analysis of three major water electrolysis technologies while applying various energy scenarios for a greener hydrogen production

Author:

Gerloff Niklas

Publisher

Elsevier BV

Subject

Electrical and Electronic Engineering,Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment

Reference76 articles.

1. Europäische Kommission. Green Deal: Kommission legt Strategien für das Energiesystem der Zukunft und sauberen Wasserstoff vor, 2020. https://ec.europa.eu/germany/news/20200708-wasserstoffstrategie_de (accessed 5 October 2020).

2. Bundesministerium für Wirtschaft und Energie (BMWI). Die nationale Wasserstoffstrategie, 2020. https://www.bmbf.de/files/die-nationale-wasserstoffstrategie.pdf (accessed 5 October 2020).

3. Energy storage technologies as options to a secure energy supply;Ausfelder;Chem. Ing. Tech. (Weinh.),2015

4. A.M. Bazanella, F. Ausfelder, DECHEMA Gesellschaft für Chemische Technik und Biotechnologie e.V., Technology Study, Low Carbon Energy and Feedstock for the European Chemical Industry, 2017. https://dechema.de/dechema_media/Downloads/Positionspapiere/Technology_study_Low_carbon_energy_and_feedstock_for_the_European_chemical_industry.pdf (accessed 6 October 2020).

5. Life cycle assessment of hydrogen from proton exchange membrane water electrolysis in future energy systems;Bareiß;Appl. Energy,2019

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