Shen et al., 2022 - Google Patents
Catalytic self-transfer hydrogenolysis of lignin with endogenous hydrogen: road to the carbon-neutral futureShen et al., 2022
- Document ID
- 3380840128451357190
- Author
- Shen X
- Zhang C
- Han B
- Wang F
- Publication year
- Publication venue
- Chemical Society Reviews
External Links
Snippet
Due to the depletion of fossil sources, it is imperative to develop a sustainable and carbon- neutral biorefinery for supporting the fuel and chemical supply in modern society. Lignin, the only renewable aromatic source, is still an underutilized component in lignocellulose. Very …
- 229920005610 lignin 0 title abstract description 278
Classifications
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07C—ACYCLIC OR CARBOCYCLIC COMPOUNDS
- C07C29/00—Preparation of compounds having hydroxy or O-metal groups bound to a carbon atom not belonging to a six-membered aromatic ring
- C07C29/15—Preparation of compounds having hydroxy or O-metal groups bound to a carbon atom not belonging to a six-membered aromatic ring by reduction of oxides of carbon exclusively
- C07C29/151—Preparation of compounds having hydroxy or O-metal groups bound to a carbon atom not belonging to a six-membered aromatic ring by reduction of oxides of carbon exclusively with hydrogen or hydrogen-containing gases
- C07C29/153—Preparation of compounds having hydroxy or O-metal groups bound to a carbon atom not belonging to a six-membered aromatic ring by reduction of oxides of carbon exclusively with hydrogen or hydrogen-containing gases characterised by the catalyst used
- C07C29/156—Preparation of compounds having hydroxy or O-metal groups bound to a carbon atom not belonging to a six-membered aromatic ring by reduction of oxides of carbon exclusively with hydrogen or hydrogen-containing gases characterised by the catalyst used containing iron group metals, platinum group metals or compounds thereof
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07C—ACYCLIC OR CARBOCYCLIC COMPOUNDS
- C07C45/00—Preparation of compounds having >C = O groups bound only to carbon or hydrogen atoms; Preparation of chelates of such compounds
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Shen et al. | Catalytic self-transfer hydrogenolysis of lignin with endogenous hydrogen: road to the carbon-neutral future | |
Gazi | Valorization of wood biomass-lignin via selective bond scission: A minireview | |
Cao et al. | Advances in lignin valorization towards bio-based chemicals and fuels: Lignin biorefinery | |
Kärkäs et al. | Transition-metal catalyzed valorization of lignin: the key to a sustainable carbon-neutral future | |
Shen et al. | Product‐oriented direct cleavage of chemical linkages in lignin | |
Deuss et al. | From models to lignin: Transition metal catalysis for selective bond cleavage reactions | |
Wang et al. | Catalytic scissoring of lignin into aryl monomers | |
Liu et al. | Visible-light-induced oxidative lignin C–C bond cleavage to aldehydes using vanadium catalysts | |
Xue et al. | Valorization of levulinic acid over non-noble metal catalysts: challenges and opportunities | |
Zhang | Catalytic transfer hydrogenolysis as an efficient route in cleavage of lignin and model compounds | |
Bourbiaux et al. | Reductive or oxidative catalytic lignin depolymerization: An overview of recent advances | |
Garedew et al. | Electrocatalytic upgrading of phenolic compounds observed after lignin pyrolysis | |
Barta et al. | Catalytic conversion of nonfood woody biomass solids to organic liquids | |
Robinson et al. | Bifunctional catalysts for upgrading of biomass-derived oxygenates: a review | |
Zhang et al. | Self-hydrogen transfer hydrogenolysis of β-O-4 linkages in lignin catalyzed by MIL-100 (Fe) supported Pd–Ni BMNPs | |
Zakzeski et al. | Catalytic lignin valorization process for the production of aromatic chemicals and hydrogen | |
Liu et al. | Formic acid: A versatile renewable reagent for green and sustainable chemical synthesis | |
Sun et al. | Efficient catalytic conversion of ethanol to 1-butanol via the Guerbet reaction over copper-and nickel-doped porous | |
Liguori et al. | Palladium-Nafion SAC-13 catalysed depolymerisation of lignin to phenols in formic acid and water | |
Nakagawa et al. | Selective production of cyclohexanol and methanol from guaiacol over Ru catalyst combined with MgO | |
Yan et al. | Selective degradation of wood lignin over noble‐metal catalysts in a two‐step process | |
Ren et al. | Depolymerization of lignin to aromatics by selectively oxidizing cleavage of C–C and C–O bonds using CuCl2/polybenzoxazine catalysts at room temperature | |
Das et al. | Transition metal-and photoredox-catalyzed valorisation of lignin subunits | |
Xu et al. | Alcohol-assisted hydrodeoxygenation as a sustainable and cost-effective pathway for biomass derivatives upgrading | |
Chui et al. | Probing the lignin disassembly pathways with modified catalysts based on Cu-doped porous metal oxides |