Publication | Closed Access
Biomass-Derived Butadiene by Dehydra-Decyclization of Tetrahydrofuran
114
Citations
21
References
2017
Year
Chemical EngineeringBiomass ConversionCatalytic Ring-opening DehydrationBioenergyEngineeringBiomass-derived ButadieneSustainable SynthesisOrganic ChemistryCatalysisChemistryZeoliteHigh SelectivityPlatform ChemicalYields 1,3-ButadienePolymer ChemistryPolymers
Catalytic ring-opening dehydration of tetrahydrofuran (THF), itself a product of decarbonylation and reduction of biomass-derived furfural, yields 1,3-butadiene, an important monomer in rubbers and elastomers. It is demonstrated that dehydra-decyclization of THF with phosphorus-containing siliceous self-pillared pentasil (SPP) or MFI structure exhibits high selectivity to butadiene (85–99%) at both low (9%) and high (89%) conversion of THF. High selectivity to pentadiene and hexadiene was also obtained from 2-methyl-tetrahydrofuran and 2,5-dimethyl-tetrahydrofuran, respectively, with phosphorus-containing, all-silica zeolites.
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