Transactions of the Faraday Society · 1967 · 68 citations · 0 references
Chemical EngineeringChemical ThermodynamicsEngineeringEnergy ConversionThermal DecompositionPhysical ChemistryAmmonium PerchlorateExperimental ThermodynamicsThermodynamicsChemistryHeat TransferEnergyActivation EnergyThermal EngineeringChemical KineticsThermoanalytical MethodAmmoniaHydrothermal Processing
The thermal decomposition of ammonium perchlorate has been studied by measuring either the loss in weight, or the pressure increase in a closed system, as functions of time. Analysis of the former measurements is complicated by concurrent sublimation of the salt. Measurements of the sublimation rate have therefore been made over a wide temperature range and kinetic parameters both for sublimation and for thermal decomposition have been established. The activation energy for the low temperature thermal decomposition is 26.63 ± 0.87 kcal/mole from Avrami-Erofeev rate constants and 30.08 ± 1.98 kcal/mole from induction periods. The activation energy for sublimation is 28.04 ± 0.43 kcal/mole from contracting volume rate constants. It is uncertain whether the activation energy for decomposition changes at the transition point : least mean squares values are 33.91 ± 1.64 kcal/mole below the transition point and 26.97 ± 2.36 kcal/mole above the transition point. The catalytic effects of ammonia (negative) and of perchloric acid(positive) have led to the formulation of a unified mechanism for sublimation and decomposition which involves proton transfer from NH+4 to ClO–4 ions as the basic step.