In commercial methanol production from syngas, the conversion is thermodynamically limited to 0.3-0.7 leading to large recycles of non-converted syngas. This problem can be overcome to a significant extent by in situ condensation of methanol during its synthesis which is possible nowadays due to the availability of highly active catalysts allowing for lower reactor temperatures. For the first time, in situ methanol condensation at 20 MPa and 473 K was demonstrated visually in a view cell. The condensation of reaction products (mainly methanol and water) drives the equilibrium reactions nearly to completion, as is demonstrated experimentally in a packed bed reactor and supported by thermodynamic calculations. Contrary to conventional methano...
A bench-scale reactor is being used to study the conversion of synthesis gas to methanol (MeOH) by a...
Biofuel production from gasified black liquor is an interesting route to decrease green house gas em...
The industrial best practice for methanol synthesis is the use a fixed-bed tubular reactor. The exot...
In commercial methanol production from syngas, the conversion is thermodynamically limited to 0.3-0....
Catalytic methanol synthesis from syngas is conducted in a multifunctional reactor. The reactor cons...
In economy nowadays, methanol is already a key compound widely employed as building block for produc...
A novel reactor design for the conversion of CO2 and H2 to methanol is developed. The conversion lim...
An integrated process for the synthesis of methanol from aqueous glycerol involving reforming of the...
An integrated process for the synthesis of methanol from aqueous glycerol involving reforming of the...
More than 100 million tonnes of methanol (MeOH) is produced each year, most of which is used as a fe...
Because it is involved in the production of a wide range of added-value chemicals, methanol is one o...
The Liquid Phase Methanol Synthesis (LPMeOHTM) process has been investigated in our laboratories sin...
The effect of addition of an inert liquid phase on the rate of heat generation in the catalytic synt...
A bench-scale reactor is being used to study the conversion of synthesis gas to methanol (MeOH) by a...
Biofuel production from gasified black liquor is an interesting route to decrease green house gas em...
The industrial best practice for methanol synthesis is the use a fixed-bed tubular reactor. The exot...
In commercial methanol production from syngas, the conversion is thermodynamically limited to 0.3-0....
Catalytic methanol synthesis from syngas is conducted in a multifunctional reactor. The reactor cons...
In economy nowadays, methanol is already a key compound widely employed as building block for produc...
A novel reactor design for the conversion of CO2 and H2 to methanol is developed. The conversion lim...
An integrated process for the synthesis of methanol from aqueous glycerol involving reforming of the...
An integrated process for the synthesis of methanol from aqueous glycerol involving reforming of the...
More than 100 million tonnes of methanol (MeOH) is produced each year, most of which is used as a fe...
Because it is involved in the production of a wide range of added-value chemicals, methanol is one o...
The Liquid Phase Methanol Synthesis (LPMeOHTM) process has been investigated in our laboratories sin...
The effect of addition of an inert liquid phase on the rate of heat generation in the catalytic synt...
A bench-scale reactor is being used to study the conversion of synthesis gas to methanol (MeOH) by a...
Biofuel production from gasified black liquor is an interesting route to decrease green house gas em...
The industrial best practice for methanol synthesis is the use a fixed-bed tubular reactor. The exot...