Biomass: A Renewable Source of Fuels, Chemicals and Carbon Materials
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References
- Gómez-López, P.; Lázaro, N.; Alvarado-Beltrán, C.G.; Pineda, A.; Balu, A.M.; Luque, R. One-pot Cu/TiO2 nanoparticles synthesis for trans-ferulic acid conversion into vanillin. Molecules 2019, 24, 3985. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Pfersich, J.; Arauzo, P.J.; Lucian, M.; Modugno, P.; Titirici, M.M.; Fiori, L.; Kruse, A. Hydrothermal conversion of spent sugar beets into high-value platform molecules. Molecules 2020, 25, 3914. [Google Scholar] [CrossRef] [PubMed]
- Sag, J.; Goedderz, D.; Kukla, P.; Greiner, L.; Schönberger, F.; Döring, M. Phosphorus-containing flame retardants from biobased chemicals and their application in polyesters and epoxy resins. Molecules 2019, 24, 3746. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Castro-Muñoz, R.; González-Valdez, J. New trends in biopolymer-based membranes for pervaporation. Molecules 2019, 24, 3584. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Ali, N.; Khan, A.; Bilal, M.; Malik, S.; Badshah, S.; Iqbal, H. Chitosan-based bio-composite modified with thiocarbamate moiety for decontamination of cations from the aqueous media. Molecules 2020, 25, 226. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Anouar, A.; Katir, N.; El Kadib, A.; Primo, A.; García, H. Palladium supported on porous chitosan–graphene oxide aerogels as highly efficient catalysts for hydrogen generation from formate. Molecules 2019, 24, 3290. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Oh, S.H.; Hwang, I.Y.; Lee, O.K.; Won, W.; Lee, E.Y. Development and optimization of the biological conversion of ethane to ethanol using whole-cell methanotrophs possessing methane monooxygenase. Molecules 2019, 24, 591. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Botti, F.R.F.; Innocentini, M.D.; Faleiros, T.A.; Mello, M.F.; Flumignan, D.L.; Santos, L.K.; Colombo, P. Biodiesel processing using sodium and potassium geopolymer powders as heterogeneous catalysts. Molecules 2020, 25, 2839. [Google Scholar] [CrossRef] [PubMed]
- Cebrián-García, S.; Balu, A.M.; García, A.; Luque, R. Sol-gel immobilisation of lipases: Towards active and stable biocatalysts for the esterification of valeric acid. Molecules 2018, 23, 2283. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Díaz-Pérez, M.A.; Serrano-Ruiz, J.C. Catalytic production of jet fuels from biomass. Molecules 2020, 25, 802. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Chung, H.Y.; Pan, G.T.; Hong, Z.Y.; Hsu, C.T.; Chong, S.; Yang, T.C.K.; Huang, C.M. Biomass-derived porous carbons derived from soybean residues for high performance solid state supercapacitors. Molecules 2020, 25, 4050. [Google Scholar] [CrossRef] [PubMed]
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Serrano-Ruiz, J.C. Biomass: A Renewable Source of Fuels, Chemicals and Carbon Materials. Molecules 2020, 25, 5217. https://doi.org/10.3390/molecules25215217
Serrano-Ruiz JC. Biomass: A Renewable Source of Fuels, Chemicals and Carbon Materials. Molecules. 2020; 25(21):5217. https://doi.org/10.3390/molecules25215217
Chicago/Turabian StyleSerrano-Ruiz, Juan Carlos. 2020. "Biomass: A Renewable Source of Fuels, Chemicals and Carbon Materials" Molecules 25, no. 21: 5217. https://doi.org/10.3390/molecules25215217
APA StyleSerrano-Ruiz, J. C. (2020). Biomass: A Renewable Source of Fuels, Chemicals and Carbon Materials. Molecules, 25(21), 5217. https://doi.org/10.3390/molecules25215217