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Novel efficient process for methanol synthesis by CO
2
hydrogenation
Anton A. Kiss
*
, J.J. Pragt
, H.J. Vos
,
G. Bargeman
, M.T. de Groot
*
Corresponding author for this work
Sustainable Process Technology
Research output
:
Contribution to journal
›
Article
›
Academic
›
peer-review
348
Citations (Scopus)
2504
Downloads (Pure)
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2
hydrogenation'. Together they form a unique fingerprint.
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Chemistry
Hydrogenation
100%
Carbon Dioxide
100%
Hydrogen
100%
Procedure
100%
Water Type
80%
Methanol
80%
Chemical Reaction Product
60%
Mixture
40%
Equilibrium
20%
Carbon
20%
Separator
20%
Reaction Temperature
20%
Carbon Dioxide
20%
Fuel
20%
Electricity
20%
Alkali
20%
Engineering Process
20%
Aqueous Solution
20%
Energy Storage
20%
Chlorine
20%
Pressure
20%
Earth and Planetary Sciences
Methyl Alcohol
100%
Hydrogenation
100%
Hydrogen
71%
Water
57%
Mixture
28%
By-Product
28%
Consumption
14%
Energy Storage
14%
Temperature
14%
Impact
14%
Steam
14%
Alkali
14%
Electricity
14%
High Pressure
14%
Investigation
14%
Product
14%
Chlorine
14%
Science and Technology
14%
Carbon Capture
14%
Separator
14%
Alternative Fuel
14%
Carbon Dioxide
14%
Chemical Engineering
Methanol Synthesis
100%
Hydrogen
100%
Hydrogenation
100%
Methanol
80%
Water
80%
Temperature
20%
Chlorine
20%
Carbon Dioxide
20%
Carbon
20%