Dimethylether is a non-toxic liquefied gas, which is projected to become one of the fundamental chemical feedstock in the future. Dimethylether can be produced from syngas via a two-step (indirect) process that involves synthesis of methanol by hydrogenation of CO/CO2 over a copper based catalyst and subsequent dehydration of methanol to DME over an acidic catalyst. Alternatively, DME can be produced in an one-step (direct) process using a hybrid (bifunctional) catalyst system that permits both methanol synthesis and dehydration in a single process unit. In the present research work the production of DME has been studied by applying both the indirect and direct processes. Firstly, the methanol synthesis and methanol dehydration reactions in...
Excessive use of fossil fuels shall result in the significant energy problems in the coming century ...
Direct dimethyl ether (DME) synthesis from synthesis gas is studied with regard to potential effects...
International audienceThe study has focused on the development of bifunctional catalytic materials f...
Dimethylether is a non-toxic liquefied gas, which is projected to become one of the fundamental chem...
Due to increasing prices of crude oil based transportation fuels and ascending rate of global warmin...
In this work, we study the direct synthesis of DME using CO2 -rich syngas, with a CO2/CO ratio simil...
New technologies produce liquids from synthesis gas in the gas to liquids technology (GTL). Dimethyl...
The direct synthesis of dimethyl ether (DME) on bifunctional catalysts is highly attractive for valo...
The Liquid Phase Methanol Synthesis (LPMeOHTM) process has been investigated in our laboratories sin...
Direct synthesis of dimethyl ether (DME) from syngas, was investigated over a CuO-ZnO-Al2O3 catalyst...
Dimethyl ether (DME) has received attention as an alternative, clean diesel fuel due to its thermal ...
Summarization: The vapor-phase dehydration of methanol to dimethylether (DME) has been investigated ...
Experimental study on direct synthesis of DME (dimethyl ether) has been conducted using tubular reac...
CO2-derived methanol and dimethyl ether can play a very important role as fuels, energy carriers, an...
In this work, we designed four different mesostructured acidic materials to be used as methanol dehy...
Excessive use of fossil fuels shall result in the significant energy problems in the coming century ...
Direct dimethyl ether (DME) synthesis from synthesis gas is studied with regard to potential effects...
International audienceThe study has focused on the development of bifunctional catalytic materials f...
Dimethylether is a non-toxic liquefied gas, which is projected to become one of the fundamental chem...
Due to increasing prices of crude oil based transportation fuels and ascending rate of global warmin...
In this work, we study the direct synthesis of DME using CO2 -rich syngas, with a CO2/CO ratio simil...
New technologies produce liquids from synthesis gas in the gas to liquids technology (GTL). Dimethyl...
The direct synthesis of dimethyl ether (DME) on bifunctional catalysts is highly attractive for valo...
The Liquid Phase Methanol Synthesis (LPMeOHTM) process has been investigated in our laboratories sin...
Direct synthesis of dimethyl ether (DME) from syngas, was investigated over a CuO-ZnO-Al2O3 catalyst...
Dimethyl ether (DME) has received attention as an alternative, clean diesel fuel due to its thermal ...
Summarization: The vapor-phase dehydration of methanol to dimethylether (DME) has been investigated ...
Experimental study on direct synthesis of DME (dimethyl ether) has been conducted using tubular reac...
CO2-derived methanol and dimethyl ether can play a very important role as fuels, energy carriers, an...
In this work, we designed four different mesostructured acidic materials to be used as methanol dehy...
Excessive use of fossil fuels shall result in the significant energy problems in the coming century ...
Direct dimethyl ether (DME) synthesis from synthesis gas is studied with regard to potential effects...
International audienceThe study has focused on the development of bifunctional catalytic materials f...