Selective synthesis of citrus flavonoids prunin and naringenin using heterogeneized biocatalyst on graphene oxide

Authors: Carceller, JM; Galan, JPM; Monti, R; Bassan, JC; Filice, M; Iborra, S; Yu, JH; Corma, A

Article.
Green Chem.. vol: 21. page: 1463-9262.
Date: feb-21. 2019.
Doi: 10.1039/c8gc03661f.

Abstract:
Production of citrus flavonoids prunin and naringenin was performed selectively through the enzyme hydrolysis of naringin, a flavonoid glycoside abundant in grapefruit wastes. To produce the monoglycoside flavonoid, prunin, crude naringinase from [read more]

Continuous Gas-Phase Condensation of Bioethanol to 1-Butanol over Bifunctional Pd/Mg and Pd/Mg-Carbon Catalysts

Authors: Lopez-Olmos, C; Morales, MV; Guerrero-Ruiz, A; Ramirez-Barria, C; Asedegbega-Nieto, E; Rodriguez-Ramos, I

Article.
ChemSusChem. vol: 11. page: 1864-5631.
Date: oct-11. 2018.
Doi: 10.1002/cssc.201801381.

Abstract:
The condensation of ethanol to 1-butanol in the presence of different catalyst systems based on a Pd dehydrogenating/hydrogenating component and magnesium hydroxide-derived materials as basic ingredient was studied in a fixed-bed reactor. The metal was incorporated by [read more]

Highly Active Catalytic Ruthenium/TiO2 Nanomaterials for Continuous Production of gamma-Valerolactone

Authors: Xu, CP; Ouyang, WY; Munoz-Batista, MJ; Fernandez-Garcia, M; Luque, R

Article.
ChemSusChem. vol: 11. page: 1864-5631.
Date: AUG 9. 2018.
Doi: 10.1002/cssc.201800667.

Abstract:
Green energy production from renewable sources is an attractive, but challenging topic to face the likely energy crisis scenario in the future. In the current work, a series of versatile Ru/TiO2 catalysts were simply synthesized and employed in [read more]

Improving the production of maleic acid from biomass: TS-1 catalysed aqueous phase oxidation of furfural in the presence of gamma-valerolactone

Authors: Rodenas, Y; Mariscal, R; Fierro, JLG; Alonso, DM; Dumesic, JA; Granados, ML

Article.
Green Chem.. vol: 20. page: 1463-9262.
Date: jun-21. 2018.
Doi: 10.1039/c8gc00857d.

Abstract:
The production of di-acids from biomass, i. e. maleic acid (MAc), can be improved by combining the utilization of solvents and solid catalysts. The results reported here demonstrate that GVL, a renewable solvent, allows not only [read more]

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