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Cited article:

Characterization of platinum alloy used in ammonia oxidation. Morphology and microstructure of Pt–Pd–Rh–Ru gauzes after the oxidation of NH3 with air at 1133 K

Aleksei N. Salanov, Alexandra N. Serkova, Natalya M. Chesnokova, Lyubov A. Isupova and Valentin N. Parmon
Materials Chemistry and Physics 273 125138 (2021)
https://doi.org/10.1016/j.matchemphys.2021.125138

Catalytic Etching of Platinoid Gauzes during the Oxidation of Ammonia by Air: Etching of the Frontal Surface of the Platinoid Gauze in the Course of NH3 Oxidation at 1133 K

A. N. Salanov, E. A. Suprun, A. N. Serkova, et al.
Kinetics and Catalysis 61 (3) 421 (2020)
https://doi.org/10.1134/S0023158420030179

Catalytic Etching of Platinoid Gauzes During the Oxidation of Ammonia by Air. Reconstruction of the Surface of a Platinoid Gauze Backside in the Course of Ammonia Oxidation at 1133 K

A. N. Salanov, E. A. Suprun, A. N. Serkova, et al.
Kinetics and Catalysis 59 (6) 792 (2018)
https://doi.org/10.1134/S0023158418060137

Self-Sustained Oscillations as a Method to Increase an Active Surface and Catalytic Activity of Ni and Pd

V. Yu. Bychkov, Yu. P. Tulenin, M. M. Slinko, S. Sokolov and V. N. Korchak
Catalysis Letters 147 (4) 1019 (2017)
https://doi.org/10.1007/s10562-017-2006-8

Appearance of silicon dioxide contaminant on Pt-Rh catalyst surface exposed to oxygen at high temperature

M. Rubel
Journal of Materials Science Letters 4 (2) 159 (1985)
https://doi.org/10.1007/BF00728064

I2. Le contrôle des facteurs physiques dans l'étude en laboratoire d'une réaction chimique gaz-solide

P. Le Goff, L. Bonnetain and M. Letort
Chemical Engineering Science 14 (1) 290 (1961)
https://doi.org/10.1016/0009-2509(61)85089-6