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Effect of Yttrium on antioxidant process ofMg-Ni-Znphase change thermal storage alloys Chen HX, Li JJ, Li YY, Cheng XM International Journal of Energy Research, 45(3), 3929, 2021 |
2 |
Aqueous phase (catalytic) wet air oxidation of ammonia: Thermodynamic considerations Lousteau C, Ayadi H, Descorme C Applied Catalysis B: Environmental, 202, 12, 2017 |
3 |
Mechanism of vanadium slag roasting with calcium oxide Zhang JH, Zhang W, Zhang L, Gu SQ International Journal of Mineral Processing, 138, 20, 2015 |
4 |
A Thermodynamic Investigation of the Redox Properties of VPO Catalysts Bakhmutsky K, Alsous JI, Gorte RJ Catalysis Letters, 142(5), 578, 2012 |
5 |
Oxidation of ferritic stainless steel interconnects Thermodynamic and kinetic assessment Dheeradhada VS, Cao HB, Alinger MJ Journal of Power Sources, 196(4), 1975, 2011 |
6 |
Application of thermodynamics and Wagner model on two problems in continuous hot-dip galvanizing Liu HC, He YL, Li L Applied Surface Science, 256(5), 1399, 2009 |
7 |
The Water-Gas-Shift Reaction on Pd/Ceria-Praseodymia: The Effect of Redox Thermodynamics Bakhmutsky K, Zhou G, Timothy S, Gorte RJ Catalysis Letters, 129(1-2), 61, 2009 |
8 |
Chemical reactions and phase equilibria of model halocarbons and salts in sub- and supercritical water (200-300 bar, 100-600 degrees C) Tester JW, Marrone PA, DiPippo MM, Sako K, Reagan MT, Arias T, Peters WA Journal of Supercritical Fluids, 13(1), 225, 1998 |
9 |
Optimization of Enzyme Ratios in a Coimmobilized Enzyme Reactor for the Analysis of D-Xylose and D-Xylulose in a Flow System Dominguez E, Markovarga G, Hahnhagerdal B, Gorton L Enzyme and Microbial Technology, 16(3), 216, 1994 |