Das et al., 2018 - Google Patents
Lignin conversion to low-molecular-weight aromatics via an aerobic oxidation-hydrolysis sequence: comparison of different lignin sourcesDas et al., 2018
View PDF- Document ID
- 127103554156134006
- Author
- Das A
- Rahimi A
- Ulbrich A
- Alherech M
- Motagamwala A
- Bhalla A
- da Costa Sousa L
- Balan V
- Dumesic J
- Hegg E
- Dale B
- Ralph J
- Coon J
- Stahl S
- Publication year
- Publication venue
- ACS Sustainable Chemistry & Engineering
External Links
Snippet
Diverse lignin samples have been subjected to a catalytic aerobic oxidation process, followed by formic-acid-induced hydrolytic depolymerization. The yield of monomeric aromatic compounds varies depending on the lignin plant source and pretreatment method …
- 229920005610 lignin 0 title abstract description 560
Classifications
-
- C—CHEMISTRY; METALLURGY
- C12—BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
- C12P—FERMENTATION OR ENZYME-USING PROCESSES TO SYNTHESISE A DESIRED CHEMICAL COMPOUND OR COMPOSITION OR TO SEPARATE OPTICAL ISOMERS FROM A RACEMIC MIXTURE
- C12P7/00—Preparation of oxygen-containing organic compounds
- C12P7/02—Preparation of oxygen-containing organic compounds containing a hydroxy group
- C12P7/04—Preparation of oxygen-containing organic compounds containing a hydroxy group acyclic
- C12P7/06—Ethanol, i.e. non-beverage
- C12P7/08—Ethanol, i.e. non-beverage produced as by-product or from waste or cellulosic material substrate
- C12P7/10—Ethanol, i.e. non-beverage produced as by-product or from waste or cellulosic material substrate substrate containing cellulosic material
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08B—POLYSACCHARIDES; DERIVATIVES THEREOF
- C08B15/00—Preparation of other cellulose derivatives or modified cellulose, e.g. complexes
- C08B15/02—Oxy-cellulose; Hydrocellulose; Cellulosehydrate, e.g. microcrystalline cellulose
- C08B15/04—Carboxycellulose, e.g. prepared by oxidation with nitrogen dioxide
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Das et al. | Lignin conversion to low-molecular-weight aromatics via an aerobic oxidation-hydrolysis sequence: comparison of different lignin sources | |
Rafiee et al. | Electrochemical aminoxyl-mediated oxidation of primary alcohols in lignin to carboxylic acids: polymer modification and depolymerization | |
Schutyser et al. | Chemicals from lignin: an interplay of lignocellulose fractionation, depolymerisation, and upgrading | |
Chatel et al. | Oxidation of lignin using ionic liquids An innovative strategy to produce renewable chemicals | |
Anderson et al. | Reductive catalytic fractionation of corn stover lignin | |
Zijlstra et al. | Mild organosolv lignin extraction with alcohols: the importance of benzylic alkoxylation | |
Katahira et al. | Base-catalyzed depolymerization of biorefinery lignins | |
Xu et al. | Alkali-based pretreatment-facilitated lignin valorization: a review | |
Sun et al. | Green process for extraction of lignin by the microwave-assisted ionic liquid approach: toward biomass biorefinery and lignin characterization | |
Luo et al. | Oxidative catalytic fractionation of lignocellulosic biomass under non-alkaline conditions | |
Yao et al. | Mechanochemical treatment facilitates two-step oxidative depolymerization of kraft lignin | |
Chen et al. | Insights into structural changes of lignin toward tailored properties during deep eutectic solvent pretreatment | |
Wang et al. | Catechyl lignin extracted from castor seed coats using deep eutectic solvents: characterization and depolymerization | |
Das et al. | Characterization and catalytic transfer hydrogenolysis of deep eutectic solvent extracted sorghum lignin to phenolic compounds | |
Du et al. | Oxidative catalytic fractionation and depolymerization of lignin in a one-pot single-catalyst system | |
Renders et al. | Synergetic effects of alcohol/water mixing on the catalytic reductive fractionation of poplar wood | |
Tocco et al. | Recent developments in the delignification and exploitation of grass lignocellulosic biomass | |
Moghaddam et al. | Structural characteristics of bagasse furfural residue and its lignin component. An NMR, Py-GC/MS, and FTIR study | |
Galkin et al. | Lignin valorization through catalytic lignocellulose fractionation: a fundamental platform for the future biorefinery | |
Yao et al. | Insights of ethanol organosolv pretreatment on lignin properties of Broussonetia papyrifera | |
Deuss et al. | Aromatic monomers by in situ conversion of reactive intermediates in the acid-catalyzed depolymerization of lignin | |
Renders et al. | Influence of acidic (H3PO4) and alkaline (NaOH) additives on the catalytic reductive fractionation of lignocellulose | |
Graglia et al. | Lignin refinery: Towards the preparation of renewable aromatic building blocks | |
Martin-Sampedro et al. | Lignin changes after steam explosion and laccase-mediator treatment of eucalyptus wood chips | |
Sturgeon et al. | A mechanistic investigation of acid-catalyzed cleavage of aryl-ether linkages: implications for lignin depolymerization in acidic environments |