Dry autothermal reforming of ethanol can be used to produce a variety of value added products like hydrogen, syngas and also carbon (possible CNF). A thermodynamic analysis of dry autothermal reforming of ethanol has been carried out to locate the thermoneutral temperatures and product composition at those points at 1, 3, 6 and 9 bar reaction pressures. The variations of thermoneutral temperatures and individual product yields at those temperatures have been discussed to find the optimum operating parameters for desired product output from the process. The process operated at thermoneutral conditions can give useful products like hydrogen, syngas (of low ratio) and carbon (possibly CNFs) and also provide a way for CO2 sequestration using re...
Experimental investigation of bio-ethanol autothermal reforming (ATR) and water-gas shift (WGS) proc...
Experimental investigation of bio-ethanol autothermal reforming (ATR) and water-gas shift (WGS) proc...
The study is to analyze the chemical and heat-flow reactions in the hydrogen generation unit(autothe...
The reaction enthalpy (ΔH) of reforming processes like steam and dry (CO2) reforming is of great imp...
The reaction enthalpy (ΔH) of reforming processes like steam and dry (CO<sub>2</sub>) reforming is o...
Dry autothermal reforming is a novel CO2 utilization process. Thermoneutral points are considered to...
The article explores the thermodynamics of an alternate hydrogen generation process – dry autotherma...
The article explores the thermodynamics of an alternate hydrogen generation process – dry autotherma...
Fuel cell as MCFC (molten carbonate fuel cell) operate at high temperatures, and due to this issue, ...
In this study, a thermodynamic equilibrium analysis has been performed on ethanol dry reforming in p...
Steam reforming is the most usual method of hydrogen production due to its high production efficienc...
AbstractThermodynamic properties of ethanol-glycerol dry reforming have been studied with the method...
The growing demand for hydrogen energy requires renewable raw materials for its production. In parti...
Fuel cell as molten carbonate fuel cell (MCFC) operates at high temperatures. Thus, cogeneration pro...
Autothermal Chemical-Looping Reforming (a-CLR) is a process which allows hydrogen production avoidin...
Experimental investigation of bio-ethanol autothermal reforming (ATR) and water-gas shift (WGS) proc...
Experimental investigation of bio-ethanol autothermal reforming (ATR) and water-gas shift (WGS) proc...
The study is to analyze the chemical and heat-flow reactions in the hydrogen generation unit(autothe...
The reaction enthalpy (ΔH) of reforming processes like steam and dry (CO2) reforming is of great imp...
The reaction enthalpy (ΔH) of reforming processes like steam and dry (CO<sub>2</sub>) reforming is o...
Dry autothermal reforming is a novel CO2 utilization process. Thermoneutral points are considered to...
The article explores the thermodynamics of an alternate hydrogen generation process – dry autotherma...
The article explores the thermodynamics of an alternate hydrogen generation process – dry autotherma...
Fuel cell as MCFC (molten carbonate fuel cell) operate at high temperatures, and due to this issue, ...
In this study, a thermodynamic equilibrium analysis has been performed on ethanol dry reforming in p...
Steam reforming is the most usual method of hydrogen production due to its high production efficienc...
AbstractThermodynamic properties of ethanol-glycerol dry reforming have been studied with the method...
The growing demand for hydrogen energy requires renewable raw materials for its production. In parti...
Fuel cell as molten carbonate fuel cell (MCFC) operates at high temperatures. Thus, cogeneration pro...
Autothermal Chemical-Looping Reforming (a-CLR) is a process which allows hydrogen production avoidin...
Experimental investigation of bio-ethanol autothermal reforming (ATR) and water-gas shift (WGS) proc...
Experimental investigation of bio-ethanol autothermal reforming (ATR) and water-gas shift (WGS) proc...
The study is to analyze the chemical and heat-flow reactions in the hydrogen generation unit(autothe...