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Enzymatic hydrolysis and simultaneous saccharification and fermentation of green coconut fiber under high concentrations of ethylene oxide-based polymers

Cleitiane da Costa Nogueira, Carlos Eduardo de Araújo Padilha, Everaldo Silvino dos Santos

2020Renewable Energy30 citationsDOI

Topics & Concepts

ChemistryEthylene glycolEthanol fuelHydrolysisFermentationEthanolCellulaseCelluloseEnzymatic hydrolysisCellulosic ethanolEthylene oxideNuclear chemistryPEG ratioSugarPolymerChromatographyFood scienceBiochemistryOrganic chemistryCopolymerEconomicsFinanceBiofuel production and bioconversionAdvanced Cellulose Research StudiesFood composition and properties
Enzymatic hydrolysis and simultaneous saccharification and fermentation of green coconut fiber under high concentrations of ethylene oxide-based polymers | Litcius