[HTML][HTML] Anion exchange membrane water electrolyzer: electrode design, lab-scaled testing system and performance evaluation

Q Xu, L Zhang, J Zhang, J Wang, Y Hu, H Jiang, C Li - EnergyChem, 2022 - Elsevier
Green hydrogen produced by water electrolysis is one of the most promising technologies to
realize the efficient utilization of intermittent renewable energy and the decarbonizing future …

Current status, research trends, and challenges in water electrolysis science and technology

SA Grigoriev, VN Fateev, DG Bessarabov… - International Journal of …, 2020 - Elsevier
Water electrolysis has various industrial applications. Over the past years, interest in water
electrolysis technologies has increased largely due to the renaissance of the nuclear …

Essentials of high performance water electrolyzers–from catalyst layer materials to electrode engineering

CV Pham, D Escalera‐López… - Advanced energy …, 2021 - Wiley Online Library
Proton‐exchange membrane water electrolyzers (PEMWEs) will play a key role in future
sustainable hydrogen production for mobility, households or chemical industry. Yet, the …

[HTML][HTML] Life cycle assessment of hydrogen from proton exchange membrane water electrolysis in future energy systems

K Bareiß, C de la Rua, M Möckl, T Hamacher - Applied Energy, 2019 - Elsevier
This study discusses the potential of H 2 production by proton exchange membrane water
electrolysis as an effective option to reduce greenhouse gas emissions in the hydrogen …

Hydrogen crossover in PEM and alkaline water electrolysis: mechanisms, direct comparison and mitigation strategies

P Trinke, P Haug, J Brauns, B Bensmann… - Journal of The …, 2018 - iopscience.iop.org
This study provides a direct comparison of hydrogen crossover in PEM (Nafion 117) and
alkaline water electrolysis (Zirfon) at a temperature of applying state-of-the-art separating …

Improving the performance stability of direct seawater electrolysis: from catalyst design to electrode engineering

W Zheng, LYS Lee, KY Wong - Nanoscale, 2021 - pubs.rsc.org
Direct seawater electrolysis opens a new opportunity to lower the cost of hydrogen
production from current water electrolysis technologies. To facilitate its commercialization …

Technological pathways to produce compressed and highly pure hydrogen from solar power

ME Ivanova, R Peters, M Müller, S Haas… - Angewandte Chemie …, 2023 - Wiley Online Library
Hydrogen (H2) produced from renewables will have a growing impact on the global energy
dynamics towards sustainable and carbon‐neutral standards. The share of green H2 is still …

Potential technology for seawater electrolysis: Anion-exchange membrane water electrolysis

Y Wang, M Wang, Y Yang, D Kong, C Meng, D Zhang… - Chem Catalysis, 2023 - cell.com
Seawater electrolysis is one of the most ideal technologies to utilize intermittent renewable
energy and generate green hydrogen efficiently. This can be utilized in coastal areas where …

Analysis of gas permeation phenomena in a PEM water electrolyzer operated at high pressure and high current density

M Bernt, J Schröter, M Möckl… - Journal of The …, 2020 - iopscience.iop.org
In this study, on-line mass spectrometry is used to determine hydrogen permeation during
proton exchange membrane water electrolyzer (PEM-WE) operation for a wide range of …

Initial approaches in benchmarking and round robin testing for proton exchange membrane water electrolyzers

G Bender, M Carmo, T Smolinka, A Gago… - International journal of …, 2019 - Elsevier
As ever-increasing amounts of renewable electricity enter the energy supply mix on a
regional, national and international basis, greater emphasis is being placed on energy …