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In situ recovery of bio-based carboxylic acids
Patrick O. Saboe
, Lorenz P. Manker
, William E. Michener
, Darren J. Peterson
, David G. Brandner
, Stephen P. Deutch
, Manish Kumar
, Robin M. Cywar
, Gregg T. Beckham
, Eric M. Karp
Chemical Engineering
Institute of Energy and the Environment (IEE)
Research output
:
Contribution to journal
›
Article
›
peer-review
93
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Scopus citations
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Keyphrases
Carboxylic Acids
100%
Organic Phase
100%
Bioproducts
100%
In Situ Recovery
100%
In Situ Product Recovery
80%
Acetic Acid
60%
Energy Input
60%
Titer
40%
System Integration
40%
Bioprocess
40%
Liquid-liquid Extraction
40%
Distillation
40%
Product Inhibition
40%
Product Recovery System
40%
Biological Processes
20%
Reactor
20%
Chemical Processes
20%
Equilibrium Model
20%
Increased Productivity
20%
Industrial Processes
20%
Microorganisms
20%
Acid Concentration
20%
Oxide-based
20%
Downstream Products
20%
Carbon Footprint
20%
Equilibrium Constant
20%
Complete Recovery
20%
Heating Value
20%
Waste Products
20%
Free Carboxylic Acids
20%
Separation Techniques
20%
Volume Ratio
20%
Process Intensification
20%
Phosphine Oxide
20%
Separation Energy
20%
Product Separation
20%
Continuous Separation
20%
Recyclability
20%
Industrial Operation
20%
Distillation Process
20%
Bioprocess Intensification
20%
Extraction Distillation
20%
Extraction Constant
20%
Distillation Trains
20%
Green Approach
20%
Downstream Separation
20%
Solvent Loss
20%
Multiple Extractions
20%
Industrial Bioprocess
20%
Heat-integrated Distillation
20%
Chemical Engineering
Carboxylic Acid
100%
Acetic Acid
100%
Solvent Extraction
66%
Carbon Dioxide
33%
Separation Method
33%
Product Separation
33%
Microorganism
33%
Oxide
33%
Carbon Footprint
33%
Phosphine
33%