INIS
metabolism
100%
plastics
100%
pseudomonas
100%
polymers
42%
wastes
28%
polyethylenes
28%
surfaces
14%
efficiency
14%
reviews
14%
control
14%
matrices
14%
oxidation
14%
metabolic pathways
14%
microorganisms
14%
enzymes
14%
by-products
14%
polyethylene glycols
14%
hydrolysis
14%
uptake
14%
assimilation
14%
polyurethanes
14%
polystyrene
14%
bioremediation
14%
polypropylene
14%
polyethylene terephthalate
14%
polyvinyl alcohol
14%
biodegradation
14%
polyvinyl chloride
14%
Chemistry
Pharmacological Metabolism
100%
Chemical Reaction Product
100%
Plastic
100%
Polymer
42%
Procedure
28%
Waste Material
28%
Oxidation Reaction
14%
Metabolic
14%
Hydrolysis
14%
Polyethylene Terephthalate
14%
Poly(ethylene Glycol)
14%
Poly(propylene)
14%
Succinate
14%
Poly(vinyl Chloride)
14%
Surface
14%
Alcohol
14%
Biodegradation
14%
Immunology and Microbiology
Degradation
100%
Metabolism
100%
Pseudomonas
100%
Biofilm
20%
Microorganism
20%
Cell Surface
20%
Oxidation
20%
Hydrolysis
20%
Genus
20%
Biodegradation
20%
Bioremediation
20%
Aptitude
20%
Species
20%
Chemical Engineering
Polymer
100%
Polyethylene
66%
Polypropylene
33%
Polystyrene
33%
Polyethylene Glycol
33%
Biodegradation
33%
Polyurethane
33%
Polyvinyl Alcohol
33%
Polyvinyl Chloride
33%
Oxidation Reaction
33%
Material Science
Byproduct
100%
Plastics
100%
Polymer
42%
Polyethylene
28%
Enzyme
14%
Polypropylene
14%
Polyurethane
14%
Polystyrene
14%
Polyethylene Glycol
14%
Polyvinyl Chloride
14%
Material
14%
Surface
14%
Biofilms
14%