High temperature solid oxide electrolysis for green hydrogen production

H Liu, M Yu, X Tong, Q Wang, M Chen - Chemical Reviews, 2024 - ACS Publications
Global warming and energy crises have motivated the development of renewable energy
and its energy carriers. Green hydrogen is the most promising renewable energy carrier and …

Progress in metal corrosion mechanism and protective coating technology for interconnect and metal support of solid oxide cells

J Mao, E Wang, H Wang, M Ouyang, Y Chen… - … and Sustainable Energy …, 2023 - Elsevier
Solid oxide cell (SOC) is an important technology for hydrogen energy utilization. Durability
and reliability of metal components including interconnect and metal support of metal …

Production of a monolithic fuel cell stack with high power density

S Pirou, B Talic, K Brodersen, A Hauch… - Nature …, 2022 - nature.com
The transportation sector is undergoing a technology shift from internal combustion engines
to electric motors powered by secondary Li-based batteries. However, the limited range and …

The development of alumina-forming austenitic stainless steels for high-temperature structural use

MP Brady, Y Yamamoto, ML Santella, PJ Maziasz… - Jom, 2008 - Springer
A new family of alumina-forming austenitic stainless steels is under development at Oak
Ridge National Laboratory for structural use in aggressive oxidizing environments at 600 …

Overview of strategies for high-temperature creep and oxidation resistance of alumina-forming austenitic stainless steels

Y Yamamoto, MP Brady, ML Santella, H Bei… - … Materials Transactions A, 2011 - Springer
A family of creep-resistant, alumina-forming austenitic (AFA) stainless steel alloys is under
development for structural use in fossil energy conversion and combustion system …

Composition, microstructure, and water vapor effects on internal/external oxidation of alumina-forming austenitic stainless steels

MP Brady, Y Yamamoto, ML Santella, LR Walker - Oxidation of metals, 2009 - Springer
A family of creep-resistant austenitic stainless steels based on alumina (Al 2 O 3) scale
formation (AFA alloys) for superior high-temperature oxidation resistance was recently …

Mechanism of breakaway oxidation of Fe–Cr and Fe–Cr–Ni alloys in dry and wet carbon dioxide

T Gheno, D Monceau, DJ Young - Corrosion Science, 2012 - Elsevier
Model Fe–Cr and Fe–Cr–Ni alloys were exposed to Ar–CO2 and Ar–CO2–H2O gas
mixtures at 650° C. While all alloys initially formed protective Cr2O3 scales, nucleation and …

Oxidation of 316 stainless steel in supercritical water

M Sun, X Wu, Z Zhang, EH Han - Corrosion science, 2009 - Elsevier
The oxide scales of 316 stainless steel (316 SS) have been examined after exposure to
supercritical water (SCW) with 2.0% H2O2 for up to 250h. The exposed samples were …

[HTML][HTML] The effect of hydrogen on the breakdown of the protective oxide scale in solid oxide fuel cell interconnects

KO Gunduz, A Chyrkin, C Goebel, L Hansen, O Hjorth… - Corrosion …, 2021 - Elsevier
In this study, the effect of hydrogen, on the degradation of AISI 441 interconnect, under solid
oxide fuel cell operating conditions was investigated between 500− 800° C for 336 h. As a …

Oxidation of alloys for energy applications in supercritical CO2 and H2O

GR Holcomb, C Carney, ÖN Doğan - Corrosion Science, 2016 - Elsevier
To facilitate development of supercritical CO 2 (sCO 2) power plants, a comparison of the
oxidation behavior of austenitic stainless steels and Ni-base alloys in sH 2 O and sCO 2 …