Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 43 checked references that resolve
resolves10.1021/cr068360dSynthesis of Transportation Fuels from Biomass: Chemistry, Catalysts, and Engineering
resolves10.1021/cr050989dChemical Routes for the Transformation of Biomass into Chemicals
resolves10.1039/C4CC04401KRole of water in metal catalyst performance for ketone hydrogenation: a joint experimental and theoretical study on levulinic acid conversion into gamma-valerolactone
resolves10.1039/c3gc41492bConversion of biomass platform molecules into fuel additives and liquid hydrocarbon fuels
resolves10.1039/b922014cTechnology development for the production of biobased products from biorefinery carbohydrates—the US Department of Energy’s “Top 10” revisited
resolves10.1016/j.fuel.2010.01.032Impact of alcohol–gasoline fuel blends on the performance and combustion characteristics of an SI engine
resolves10.2172/1024518Utilization of Renewable Oxygenates as Gasoline Blending Components
resolves10.1039/C0EE00436GCatalytic routes for the conversion of biomass into liquid hydrocarbon transportation fuels
resolves10.1021/cs401177pAnalysis of Kinetics and Reaction Pathways in the Aqueous-Phase Hydrogenation of Levulinic Acid To Form γ-Valerolactone over Ru/C
resolves10.1016/j.jcat.2013.02.003Ruthenium-catalyzed hydrogenation of levulinic acid: Influence of the support and solvent on catalyst selectivity and stability
resolves10.1039/c2gc16631cExploring the ruthenium catalysed synthesis of γ-valerolactone in alcohols and utilisation of mild solvent-free reaction conditions
resolves10.1039/c1cc14748jLiquid-phase catalytic transfer hydrogenation and cyclization of levulinic acid and its esters to γ-valerolactone over metal oxide catalysts
resolves10.1002/cssc.201000163Conversion of Levulinic Acid and Formic Acid into γ‐Valerolactone over Heterogeneous Catalysts
resolves10.1002/cssc.201100483Conversion of Biomass‐Derived Levulinate and Formate Esters into γ‐Valerolactone over Supported Gold Catalysts
resolves10.1039/C3GC41803KSolvent-free γ-valerolactone hydrogenation to 2-methyltetrahydrofuran catalysed by Ru/C: a reaction network analysis
resolves10.1007/s11244-008-9047-6Integration of Homogeneous and Heterogeneous Catalytic Processes for a Multi-step Conversion of Biomass: From Sucrose to Levulinic Acid, γ-Valerolactone, 1,4-Pentanediol, 2-Methyl-tetrahydrofuran, and Alkanes
resolves10.1002/anie.201002060Selective and Flexible Transformation of Biomass‐Derived Platform Chemicals by a Multifunctional Catalytic System
resolves10.1002/ange.201002060Selective and Flexible Transformation of Biomass‐Derived Platform Chemicals by a Multifunctional Catalytic System
resolves10.1021/cs502025tCatalytic Transformation of Levulinic Acid to 2-Methyltetrahydrofuran Using Ruthenium–<i>N</i>-Triphos Complexes
resolves10.1002/cssc.201100380Direct Hydrocyclization of Biomass‐Derived Levulinic Acid to 2‐Methyltetrahydrofuran over Nanocomposite Copper/Silica Catalysts
resolves10.1039/C4CC03970JEfficient, solvent-free hydrogenation of α-angelica lactone catalysed by Ru/C at atmospheric pressure and room temperature
resolves10.1002/cssc.201500671One‐Pot 2‐Methyltetrahydrofuran Production from Levulinic Acid in Green Solvents Using Ni‐Cu/Al<sub>2</sub>O<sub>3</sub> Catalysts
resolves10.1002/cssc.201300245Conversion of Carbohydrate Biomass to γ‐Valerolactone by using Water‐Soluble and Reusable Iridium Complexes in Acidic Aqueous Media
resolves10.1039/c3cc48236gAqueous phase hydrogenation of levulinic acid to 1,4-pentanediol
resolves10.1039/C5GC01878ASelective hydrogenation of levulinic acid to 1,4-pentanediol in water using a hydroxyapatite-supported Pt–Mo bimetallic catalyst
resolves10.1039/c3gc41022fContinuous flow nanocatalysis: reaction pathways in the conversion of levulinic acid to valuable chemicals
resolves10.1002/cssc.201000396Reactive Extraction of Levulinate Esters and Conversion to γ‐Valerolactone for Production of Liquid Fuels
resolves10.1021/acscatal.5b02171Heterogeneous Catalytic Transfer Hydrogenation as an Effective Pathway in Biomass Upgrading
resolves10.1016/j.molcata.2014.05.016Effect of hydrogen donor on liquid phase catalytic transfer hydrogenation of furfural over a Ru/RuO2/C catalyst
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