Calorimetry (adiabatic, isothermal, differential, oscillating or acoustic) is generally based on heat-flow measurements of the studied system. Most of its applications are dedicated to kinetic-parameter determination, safety studies and process optimization, phase equilibrium and phase transition studies. Heat flow calorimetry on the lab scale is currently limited to low viscosity fluids. An emerging new field is concerned with the use of calorimetry in the presence of supercritical fluids as solvent reaction, which will be named supercritical calorimetry. Supercritical carbon dioxide (CO2sc) represents an increasingly interesting media for a wide variety of reactions. To fulfill this need, a special supercritical calorimeter has been dev...
In recent years supercritical carbon dioxide has gained popularity in the scientific and industrial ...
In this work, a novel experimental method for measurement of radiation emitted by supercritical carb...
Currently, both humanity and the whole planet are living in a critical time, which leads us to look ...
Calorimetry (adiabatic, isothermal, differential, oscillating or acoustic) is generally based on hea...
Reaction calorimetry is an efficient tool used to obtain kinetic, thermodn. and safety data. A react...
The heat flow reaction calorimetry technique was developed for reactions with supercrit. fluids and ...
Fluids at high temperature and pressure are commonplace across engineering applications. These fluid...
Supercrit. fluids (SCFs) were intensively studied in the last decade as alternative, environment-fri...
The Supercritical carbon dioxide (SCO2) is widely used in many industrial applications as process or...
The PhD thesis deals with the optimization of the reaction calorimetry technique to monitor chemical...
A complete anal. of the heat flow equation in reaction calorimetry with supercrit. fluids is present...
The paper aims to compare the models of working fluids against experimental data for carbon dioxide ...
Supercritical fluids (SCF) are substances above their critical pressure and temperature. Once above ...
We present simulation results for the volume expansi-vity, isothermal compressibility, isobaric heat...
The paper aims to compare the models of working fluids against experimental data for carbon dioxide ...
In recent years supercritical carbon dioxide has gained popularity in the scientific and industrial ...
In this work, a novel experimental method for measurement of radiation emitted by supercritical carb...
Currently, both humanity and the whole planet are living in a critical time, which leads us to look ...
Calorimetry (adiabatic, isothermal, differential, oscillating or acoustic) is generally based on hea...
Reaction calorimetry is an efficient tool used to obtain kinetic, thermodn. and safety data. A react...
The heat flow reaction calorimetry technique was developed for reactions with supercrit. fluids and ...
Fluids at high temperature and pressure are commonplace across engineering applications. These fluid...
Supercrit. fluids (SCFs) were intensively studied in the last decade as alternative, environment-fri...
The Supercritical carbon dioxide (SCO2) is widely used in many industrial applications as process or...
The PhD thesis deals with the optimization of the reaction calorimetry technique to monitor chemical...
A complete anal. of the heat flow equation in reaction calorimetry with supercrit. fluids is present...
The paper aims to compare the models of working fluids against experimental data for carbon dioxide ...
Supercritical fluids (SCF) are substances above their critical pressure and temperature. Once above ...
We present simulation results for the volume expansi-vity, isothermal compressibility, isobaric heat...
The paper aims to compare the models of working fluids against experimental data for carbon dioxide ...
In recent years supercritical carbon dioxide has gained popularity in the scientific and industrial ...
In this work, a novel experimental method for measurement of radiation emitted by supercritical carb...
Currently, both humanity and the whole planet are living in a critical time, which leads us to look ...