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Hybrid Modelling for Enhanced Bioreactor Performance
Mads Thaysen
Department of Chemical and Biochemical Engineering
Research output
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Book/Report
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Ph.D. thesis
537
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Dive into the research topics of 'Hybrid Modelling for Enhanced Bioreactor Performance'. Together they form a unique fingerprint.
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Engineering
Product Concentration
100%
Bioreactor Performance
100%
Soft Sensor
75%
Flow Rate
62%
Engineering
50%
Cerevisiae
37%
Elemental Composition
37%
Biomass Concentration
37%
Mass Balance
37%
One Step
25%
Conversion Rate
25%
Illustrates
25%
Simple Model
12%
Repression
12%
Industrial Data
12%
Growth Condition
12%
Process Variable
12%
Bioreactor
12%
Endpoint
12%
Closed Loop Control
12%
Process Behavior
12%
Ethanol Concentration
12%
Open Loop
12%
Feed Rate
12%
Constant Time
12%
Key Process
12%
Physiological Parameter
12%
Proportional Constant
12%
Limitations
12%
Production Data
12%
Concentration Profile
12%
Earth and Planetary Sciences
Flow Velocity
100%
Bioreactor
100%
Genetic Engineering
40%
Literature Review
20%
Time Constant
20%
Saccharomyces
20%
Carbon Balance
20%
Production Data
20%
Process Analysis
20%
Metabolite
20%
Keyphrases
Hybrid Modeling
100%
Cultivation Process
62%
Ammonia Flow Rate
50%
Industrial Cultivation
25%
Dynamic Mass Balance
12%
Process Upset
12%
Synthesis Rate
12%
Model Expression
12%
Effluent Flow Rate
12%
Insulin Precursor
12%
Endpoint Determination
12%
Offline Measurement
12%
Proton Balance
12%
Projection to Latent Structures
12%
Ethanol Intake
12%
Chemical Engineering
Genetic Engineering
100%
Biochemical Reactor
100%
Organic Acid
50%