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Microbial degradation of epoxy
Noam Eliaz
*
,
Eliora Z. Ron
,
Michael Gozin
, Sara Younger
, Dvora Biran
, Noam Tal
*
Corresponding author for this work
Department of Materials Science and Engineering
Biotechnology
School of Chemistry
Tel Aviv University
Research output
:
Contribution to journal
›
Article
›
peer-review
33
Scopus citations
Overview
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Engineering
Synergistic Effect
100%
Surface Morphology
100%
Biochemicals
100%
Soil Sample
100%
Polyurethan
100%
Corrosion Protection
100%
Microbial Biodegradation
100%
Liquid Chromatography Mass Spectrometry
100%
Structural Adhesive
100%
Manufacturing Plant
100%
Bisphenol
100%
Biodegradation Process
100%
Coming Year
100%
Thermoset Resin
100%
Keyphrases
Epoxy Resin
100%
Epoxy
100%
Microbial Degradation
100%
Carbon Source
40%
Metabolic Pathway
20%
Growth Rate
20%
Surface Morphology
20%
Soil Samples
20%
Microbes
20%
Synergistic Effect
20%
Bisphenol A
20%
Microscopic Techniques
20%
Bacterial Growth
20%
Biochemical Methods
20%
Structural Composites
20%
Analytical Techniques
20%
Liquid Chromatography-tandem Mass Spectrometry (LC-MS/MS)
20%
Polyurethane
20%
Molecular Techniques
20%
Corrosion Protection
20%
Propane
20%
Phenylene
20%
Electronic Structural
20%
Ochrobactrum Anthropi
20%
Biodegradation Pathway
20%
Structural Adhesive
20%
Manufacturing Plant
20%
Propane-1,2-diol
20%
Thermoset Resin
20%
Environmental Pollution Risk
20%
Rhodococcus rhodochrous
20%
Material Science
Epoxy
100%
Microbial Biodegradation
100%
Surface Morphology
20%
Biodegradation
20%
Polyurethane
20%
Corrosion Protection
20%
Composite Material
20%
Thermoset Plastics
20%
Liquid Chromatography Mass Spectrometry
20%
Chemical Engineering
Epoxy Resin
100%
Microbial Biodegradation
100%
Biodegradation
20%
Liquid Chromatography Mass Spectrometry
20%
Polyurethane
20%
Thermosets
20%