This research was aimed to investigate the combustion and kinetics of oil shale samples (Mengen and Himmetoglu) by differential scanning calorimetry (DSC). Experiments were performed in air atmosphere up to 600 degrees C at five different heating rates. The DSC curves clearly demonstrate distinct reaction regions in the oil shale samples studied. Reaction intervals, peak and burn-out temperatures of the oil shale samples are also determined. Arrhenius kinetic method was used to analyze the DSC data and it was observed that the activation energies of the samples are varied in the range of 22.4-127.3 kJ mol(-1) depending on the oil shale type and heating rate
Pyrolysis kinetics characteristics of oil shale samples obtained from Liushuhe basin were investigat...
In this research, the effect of different clay minerals (bentonite, illite and kaolinite) on the com...
In this research, thermal characteristics of three Turkish oil shales (Himmetoglu, Beypazari and Hat...
In this research, combustion performance and kinetics of two Turkish oil shales were investigated us...
Pressurised differential scanning calorimeter (PDSC) has been used to obtain information on the pyro...
In this research, pyrolysis and combustion behavior of three different oil shale samples from Turkey...
This study investigates the combustion characteristics of oil shales obtained from two different reg...
In situ combustion (ISC) has received much attention in the area of the development of shale oil res...
In this research, thermal characteristics and kinetic parameters of eight Turkish oil shale samples ...
In this study, kinetics parameters of combustion reaction of Seyitömer and Beypazarı oil shales were...
Pyrolysis experiments on northern Songliao basin oil shale were carried out by Rock-Eval analyzer at...
In this research, non-isothermal pyrolysis behavior and kinetics of three oil shales were studied by...
Abstract. The kinetic parameters of Huadian oil shale and its solid residues after preheating treatm...
Thermogravimetric-Differential Scanning Calorimetry Analysis (TG-DSC) was applied to study non-isoth...
Copyright © Taylor & Francis Group, LLC. In this study, nonisothermal kinetics and thermal analysis ...
Pyrolysis kinetics characteristics of oil shale samples obtained from Liushuhe basin were investigat...
In this research, the effect of different clay minerals (bentonite, illite and kaolinite) on the com...
In this research, thermal characteristics of three Turkish oil shales (Himmetoglu, Beypazari and Hat...
In this research, combustion performance and kinetics of two Turkish oil shales were investigated us...
Pressurised differential scanning calorimeter (PDSC) has been used to obtain information on the pyro...
In this research, pyrolysis and combustion behavior of three different oil shale samples from Turkey...
This study investigates the combustion characteristics of oil shales obtained from two different reg...
In situ combustion (ISC) has received much attention in the area of the development of shale oil res...
In this research, thermal characteristics and kinetic parameters of eight Turkish oil shale samples ...
In this study, kinetics parameters of combustion reaction of Seyitömer and Beypazarı oil shales were...
Pyrolysis experiments on northern Songliao basin oil shale were carried out by Rock-Eval analyzer at...
In this research, non-isothermal pyrolysis behavior and kinetics of three oil shales were studied by...
Abstract. The kinetic parameters of Huadian oil shale and its solid residues after preheating treatm...
Thermogravimetric-Differential Scanning Calorimetry Analysis (TG-DSC) was applied to study non-isoth...
Copyright © Taylor & Francis Group, LLC. In this study, nonisothermal kinetics and thermal analysis ...
Pyrolysis kinetics characteristics of oil shale samples obtained from Liushuhe basin were investigat...
In this research, the effect of different clay minerals (bentonite, illite and kaolinite) on the com...
In this research, thermal characteristics of three Turkish oil shales (Himmetoglu, Beypazari and Hat...