1 |
An improved method for hydrogen deflagration to detonation transition prediction under severe accidents in nuclear power plants Zhang XL, Yu JY, Huang T, Jiang GM, Zhong XP, Saeed M International Journal of Hydrogen Energy, 44(21), 11233, 2019 |
2 |
Application of quantitative risk assessment for performance-based permitting of hydrogen fueling stations LaFleur AC, Muna AB, Groth KM International Journal of Hydrogen Energy, 42(11), 7529, 2017 |
3 |
Risk assessment for the preparation of compressed oxidant-fuel gas mixtures. Application to the H-2/air mixture manufacturing Paillard CE, Naudet V International Journal of Hydrogen Energy, 37(22), 17336, 2012 |
4 |
The preparation of a metal foam support of Pt/Al2O3 for combustion of hydrogen Jo S, Jin J, Kwon S Catalysis Today, 155(1-2), 45, 2010 |
5 |
Semi-quantitative risk assessment of commercial scale supply chain of hydrogen fuel and implications for industry and society Moonis M, Wilday AJ, Wardman MJ Process Safety and Environmental Protection, 88(2), 97, 2010 |
6 |
Hydrogen transportation systems: Elements of risk analysis Gerboni R, Salvador E Energy, 34(12), 2223, 2009 |
7 |
On the use of spray systems: An example of R&D work in hydrogen safety for nuclear applications Joseph-Auguste C, Cheikhravat H, Djebaili-Chaumeix N, Deri E International Journal of Hydrogen Energy, 34(14), 5970, 2009 |
8 |
Towards establishing an International Hydrogen Incidents and Accidents Database (HIAD) Kirchsteiger C, Arellano ALV, Funnemark E Journal of Loss Prevention in The Process Industries, 20(1), 98, 2007 |
9 |
Risk analysis on a fuel cell in electric vehicle using the MADS/MOSAR methodology Bultel Y, Aurousseau M, Ozil P, Perrin L Process Safety and Environmental Protection, 85(B3), 241, 2007 |
10 |
Catalytic combustion of hydrogen for mitigating hydrogen risk in case of a severe accident in a nuclear power plant: study of catalysts poisoning in a representative atmosphere Morfin F, Sabroux JC, Renouprez A Applied Catalysis B: Environmental, 47(1), 47, 2004 |