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Enhanced biological treatment of spent metalworking fluids by prior removal of a polymer
Helen Carney
, Christopher J van der Gast
, Tom Stephenson
, Centre for and
, Doug Wylie
Centre for Biodiscovery
SHLS Life Sciences
Research output
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Article
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peer-review
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Keyphrases
Biological Degradation
33%
Biological Treatment
33%
Bioreactor System
33%
Chemical Industry
33%
Chemical Oxygen Demand
33%
Copyright
33%
Degradation Efficiency
33%
Enhanced Biological Treatment
100%
Future Products
33%
Hybrid Method
33%
Metalworking Fluids
100%
Microbial Degradation
33%
Physical Therapy
33%
Polymer Removal
33%
Product Formulation
33%
Residual Waste
33%
Synthetic Polymers
33%
Waste Discharge
33%
Waste Products
33%
Waste Reduction
33%
Waste Treatment
33%
Engineering
Biological Degradation
33%
Biological Treatment
100%
Bioreactor System
33%
Chemical Oxygen Demand
33%
Hybrid Approach
33%
Metalworking Fluid
100%
Microbial Biodegradation
33%
Synthetic Polymer
33%
Waste Treatment
33%
Chemical Engineering
Biochemical Reactor
100%
Chemical Oxygen Demand
100%
Microbial Biodegradation
100%