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Understanding Scale-down of Oxygen Dependent Biocatalysis
Mafalda Dias Gomes
PROSYS - Process and Systems Engineering Centre
Department of Chemical and Biochemical Engineering
Research output
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Book/Report
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Ph.D. thesis
498
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Dive into the research topics of 'Understanding Scale-down of Oxygen Dependent Biocatalysis'. Together they form a unique fingerprint.
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Keyphrases
Biocatalyst
100%
Biocatalysis
100%
Downscaling
100%
Oxidase
100%
Oxygen Dependence
100%
Gas-liquid Interface
100%
Oxidation Reaction
80%
Biocatalytic Oxidation
80%
Reactor
60%
Protein Engineering
60%
NAD(P)
60%
Mechanical Stirring
60%
Gasses
40%
Power Input
40%
Process Development
40%
Deactivation Rate
40%
Stirred Tank Reactor
40%
Engineering Method
40%
Aeration
40%
Gas-liquid Interfacial Area
40%
Process Limitations
40%
Oxygen Transfer
40%
Enzyme Deactivation
40%
Order of Magnitude
20%
Design Process
20%
Environmentally Friendly
20%
Process Conditions
20%
Atmospheric Pressure
20%
Chemical Synthesis
20%
Operating Conditions
20%
Reaction Rate
20%
Reaction Conditions
20%
Kinetic Parameters
20%
In Situ
20%
Aqueous Solution
20%
Deactivation
20%
Design Task
20%
Oxidation Mechanism
20%
Significant Quantity
20%
Engineering Research
20%
Molecular Oxygen
20%
In-tube
20%
Chemical Industry
20%
Ability to Work
20%
Systematic Methodology
20%
Industrial Chemicals
20%
Enzyme Kinetics
20%
Glucose Oxidase
20%
Catalytic Oxidation
20%
Catalytic Reaction
20%
Extra Degree of Freedom
20%
Oxygen Solubility
20%
Gas Supply
20%
Oxygen Transfer Rate
20%
Chemocatalysis
20%
Biocatalytic
20%
Biocatalyst Stability
20%
Process Engineering
20%
Enzyme Stability
20%
Liquid Medium
20%
Oxidative Enzymes
20%
Trajectory Analysis
20%
Molecular Collisions
20%
Interfacial Area
20%
Rate Kinetics
20%
Power Transfer Limit
20%
Stability Map
20%
Bubble Column
20%
Kinetic Stability
20%
Enzyme Efficiency
20%
Mild Reaction Conditions
20%
Large-scale Bioreactor
20%
Model Enzyme
20%
Aerated Stirred Tank
20%
Stirring Power
20%
Engineering Modification
20%
Primary Restriction
20%
Reactor Setup
20%
Sustainable Industrial Processes
20%
Reaction Trajectories
20%
Chemical Engineering
Gas-liquid Interfacial Area
28%