“…The performance of the system during discharging is realized by exothermic synthesis reaction and the performance during charging is realized by endothermic decomposition reaction. Over the past decades, limited work [10][11][12][13] has been done in thermochemical reactor modelling for TESS, especially in thermal decomposition phase. Hongois [11] has modelled the thermochemical-reactor-based on the finite element method (FEM) with few highlights on thermal decomposition phase.…”
“…The performance of the system during discharging is realized by exothermic synthesis reaction and the performance during charging is realized by endothermic decomposition reaction. Over the past decades, limited work [10][11][12][13] has been done in thermochemical reactor modelling for TESS, especially in thermal decomposition phase. Hongois [11] has modelled the thermochemical-reactor-based on the finite element method (FEM) with few highlights on thermal decomposition phase.…”
Complex kinetic behaviors in the thermal dehydration of CaSO4∙2H2O under varying water vapor pressure (p(H2O)) conditions impel researchers in the field of solid-state kinetics to gain a more comprehensive understanding....
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