Dimethyl ether (DME) is receiving growing attention as a promising alternative and multipurpose green fuel. World production today is primarily by means of methanol dehydration using solid acid catalysts in a fixed bed reactor followed by ordinary distillation columns. In this study, the continuous production via a single reactive distillation (RD) column is studied experimentally in a pilot-scale plant. Kinetics of liquid dehydration of methanol over the sulphonic resin Amberlyst 35 is also studied, using both a batch reactor and a tubular fixed-bed reactor in a temperature range of 100-140°C and a pressure up to 50 bar. The experimental kinetic data are described well by the Eley-Rideal mechanism, and the kinetic parameters are incorporat...
The productivity of liquid phase methanol synthesis reactor in limited by the chemical equilibrium b...
New technologies produce liquids from synthesis gas in the gas to liquids technology (GTL). Dimethyl...
The syngas-to-DME reaction is highly exothermic, and the catalyst temperature window is very narrow....
Dimethyl ether (DME) is receiving growing attention as a promising alternative and multipurpose gree...
Dimethyl ether (DME) is widely used as green aerosol propellant, precursor to other organic compound...
Experimental study on direct synthesis of DME (dimethyl ether) has been conducted using tubular reac...
In a single-step synthesis gas-to-dimethyl ether process, synthesis gas (or syngas, a mixture of H{s...
An adiabatic tubular fixed bed reactor with and without a membrane was modeled and simulated to stud...
Air pollution is one of the most serious environmental problems all over the world. Since onboard d...
In the framework of the large European Project named INSERT (INtegrating SEparation and Reaction Te...
We performed a preliminary design evaluation of a process based around a PBR packed with the catalys...
In the last years, dimethyl ether (DME) has been revealed as a promising clean alternative fuel for ...
In this work, several kinetic models have been studied for the methanol dehydration to dimethyl ethe...
Various kinetic models of methanol dehydration to dimethyl ether over a commercial γ-alumina catalys...
In this work, several kinetic models have been studied for the methanol dehydration to dimethyl ethe...
The productivity of liquid phase methanol synthesis reactor in limited by the chemical equilibrium b...
New technologies produce liquids from synthesis gas in the gas to liquids technology (GTL). Dimethyl...
The syngas-to-DME reaction is highly exothermic, and the catalyst temperature window is very narrow....
Dimethyl ether (DME) is receiving growing attention as a promising alternative and multipurpose gree...
Dimethyl ether (DME) is widely used as green aerosol propellant, precursor to other organic compound...
Experimental study on direct synthesis of DME (dimethyl ether) has been conducted using tubular reac...
In a single-step synthesis gas-to-dimethyl ether process, synthesis gas (or syngas, a mixture of H{s...
An adiabatic tubular fixed bed reactor with and without a membrane was modeled and simulated to stud...
Air pollution is one of the most serious environmental problems all over the world. Since onboard d...
In the framework of the large European Project named INSERT (INtegrating SEparation and Reaction Te...
We performed a preliminary design evaluation of a process based around a PBR packed with the catalys...
In the last years, dimethyl ether (DME) has been revealed as a promising clean alternative fuel for ...
In this work, several kinetic models have been studied for the methanol dehydration to dimethyl ethe...
Various kinetic models of methanol dehydration to dimethyl ether over a commercial γ-alumina catalys...
In this work, several kinetic models have been studied for the methanol dehydration to dimethyl ethe...
The productivity of liquid phase methanol synthesis reactor in limited by the chemical equilibrium b...
New technologies produce liquids from synthesis gas in the gas to liquids technology (GTL). Dimethyl...
The syngas-to-DME reaction is highly exothermic, and the catalyst temperature window is very narrow....