Representative reversible endothermic chemical reactions (paraldehyde depolymerization and 2-proponal dehydrogenation) are theoretically assessed for their use in a chemical heat pump design for compact thermal management applications. Equilibrium and dynamic simulations are undertaken to explore the operation of the heat pump which upgrades waste heat from near room temperature by approximately 20 in a minimized system volume. A model is developed based on system mass and energy balances coupled with kinetic equations to ascertain mixture conditions at each state point in the loop, as well as mass flow rate, minimum work input, and minimum endothermic reactor volume according to defined reservoir temperatures and desired heat load. Assumin...
A new reactor concept is studied for highly endothermic heterogeneously catalysed gas phase reaction...
Chemical heat pumps utilizing liquid-vapor reactions can be configured in forms analogous to elect...
We present our work on the investigation of a chemical reactor heat sink which used an endothermic r...
Representative reversible endothermic chemical reactions (paraldehyde depolymerization and 2-propona...
A suitable heat pump coupled to low-temperature sources can upgrade heat to higher temperatures. Thi...
In a recent survey of 108 industries in the U.S., it was found that large amounts of thermal energy ...
International audienceIn light of reducing carbon emissions and the tension on non-renewable energy ...
Chemical heat pumps (CHP) use reversible exothermal and endothermal chemical reactions to increase t...
A new reactor concept is studied for highly endothermic heterogeneously catalysed gas phase reaction...
A new reactor concept is studied for highly endothermic heterogeneously catalysed gas phase reaction...
The new reactor concept for highly endothermic reactions at elevated temperatures with possible rapi...
The demand for heat pumping technologies is expected to see tremendous growth over the next century....
Chemical heat pumps utilize working fluids which undergo reversible chemical changes. Mechanically ...
A new reactor concept is studied for highly endothermic heterogeneously catalysed gas phase reaction...
Chemical heat pumps utilizing liquid-vapor reactions can be configured in forms analogous to elect...
We present our work on the investigation of a chemical reactor heat sink which used an endothermic r...
Representative reversible endothermic chemical reactions (paraldehyde depolymerization and 2-propona...
A suitable heat pump coupled to low-temperature sources can upgrade heat to higher temperatures. Thi...
In a recent survey of 108 industries in the U.S., it was found that large amounts of thermal energy ...
International audienceIn light of reducing carbon emissions and the tension on non-renewable energy ...
Chemical heat pumps (CHP) use reversible exothermal and endothermal chemical reactions to increase t...
A new reactor concept is studied for highly endothermic heterogeneously catalysed gas phase reaction...
A new reactor concept is studied for highly endothermic heterogeneously catalysed gas phase reaction...
The new reactor concept for highly endothermic reactions at elevated temperatures with possible rapi...
The demand for heat pumping technologies is expected to see tremendous growth over the next century....
Chemical heat pumps utilize working fluids which undergo reversible chemical changes. Mechanically ...
A new reactor concept is studied for highly endothermic heterogeneously catalysed gas phase reaction...
Chemical heat pumps utilizing liquid-vapor reactions can be configured in forms analogous to elect...
We present our work on the investigation of a chemical reactor heat sink which used an endothermic r...