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Use of Ionic Liquids and Support Materials for High Performance Enzymatic Conversion of CO
2
into Formic Acid and Formaldehyde
Zhibo Zhang
PROSYS - Process and Systems Engineering Centre
Department of Chemical and Biochemical Engineering
Research output
:
Book/Report
›
Ph.D. thesis
171
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Dive into the research topics of 'Use of Ionic Liquids and Support Materials for High Performance Enzymatic Conversion of CO
2
into Formic Acid and Formaldehyde'. Together they form a unique fingerprint.
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Chemistry
Formic Acid
100%
Ionic Liquid
100%
Formaldehyde
100%
Carbon Dioxide
100%
NADH
92%
Enzymatic Reaction
46%
Procedure
46%
Chemical Reaction
38%
Reaction Yield
30%
Methanol
30%
CO2 Conversion
30%
Immobilization
30%
Cofactor
23%
Buffer Solution
23%
Water Type
23%
Porphyrin
15%
Solubility
15%
Alcohol Dehydrogenases
15%
Degradation
15%
Concentration
15%
Chemical Reaction Product
15%
Time
15%
Membrane Reactor
15%
Reduction
7%
Phosphate
7%
Electron Particle
7%
Solar Energy
7%
Analytical Method
7%
Equilibrium
7%
Amount
7%
Solvent
7%
Surface
7%
Pigment
7%
Fuel
7%
Pressure
7%
Carbon Dioxide Emission
7%
Chemical Engineering
Formic Acid
100%
Formaldehyde
100%
Methanol
30%
Water
23%
Porphyrin
15%
Alcohol
15%
Fouling
7%
Phosphate
7%