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Making Progress Towards >> Green << Propellants - Part II Dejeaifve A, Sarbach A, Roduit B, Folly P, Dobson R Propellants Explosives Pyrotechnics, 45(8), 1185, 2020 |
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Kinetic analysis of solids of the quasi-autocatalytic decomposition type: SADT determination of low-temperature polymorph of AIBN Roduit B, Hartmann M, Folly P, Sarbach A, Dejeaifve A, Dobson R, Kurko K Thermochimica Acta, 665, 119, 2018 |
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Thermal decomposition of AIBN, Part B: Simulation of SADT value based on DSC results and large scale tests according to conventional and new kinetic merging approach Roduit B, Hartmann M, Folly P, Sarbach A, Brodard P, Baltensperger R Thermochimica Acta, 621, 6, 2015 |
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Prediction of thermal stability of materials by modified kinetic and model selection approaches based on limited amount of experimental points Roduit B, Hartmann M, Folly P, Sarbach A, Baltensperger R Thermochimica Acta, 579, 31, 2014 |
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ICTAC Kinetics Committee recommendations for collecting experimental thermal analysis data for kinetic computations Vyazovkin S, Chrissafis K, Di Lorenzo ML, Koga N, Pijolat M, Roduit B, Sbirrazzuoli N, Sunol JJ Thermochimica Acta, 590, 1, 2014 |
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Prediction of the progress of solid-state reactions under different temperature modes Roduit B Thermochimica Acta, 388(1-2), 377, 2002 |
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Computational aspects of kinetic analysis Part A: The ICTAC kinetics project-data, methods and results Brown ME, Maciejewski M, Vyazovkin S, Nomen R, Sempere J, Burnham A, Opfermann J, Strey R, Anderson HL, Kemmler A, Keuleers R, Janssens J, Desseyn HO, Li CR, Tang TB, Roduit B, Malek J, Mitsuhashi T Thermochimica Acta, 355(1-2), 125, 2000 |
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Computational aspects of kinetic analysis. Part E: The ICTAC Kinetics Project - numerical techniques and kinetics of solid state processes Roduit B Thermochimica Acta, 355(1-2), 171, 2000 |
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3-D modeling of SCR of NOx by NH3 on vanadia honeycomb catalysts Roduit B, Baiker K, Bettoni F, Baldyga J, Wokaun A AIChE Journal, 44(12), 2731, 1998 |
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Global kinetic modeling of reactions occurring during selective catalytic reduction of NO by NH3 over vanadia/titania-based catalysts Roduit B, Wokaun A, Baiker A Industrial & Engineering Chemistry Research, 37(12), 4577, 1998 |