Kinetics of Non-catalyzed Decomposition of Glucose in High-temperature Liquid Water
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- Type
- article
- Published
- 2007-10-01
- Cited by
- 165
- References
- 32
- OpenAlex
- https://openalex.org/W1984267300
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:94407639
Keywords
Levulinic acid, Decomposition, Kinetics, Chemistry, Catalysis
References
- Decomposition of Cellulose by Continuous Near-Critical Water Reactions
- Enhanced Acid/Base Catalysis in High Temperature Liquid Water
- Mechanism and Kinetics of Cellobiose Decomposition in Sub- and Supercritical Water
- Acidic sugar degradation pathways
- Kinetics of glucose epimerization and decomposition in subcritical and supercritical water
- Dissolution and Hydrolysis of Cellulose in Subcritical and Supercritical Water
- ACID-CATALYZED PRODUCTION OF 5-HYDROXYMETHYL FURFURAL FROM D-FRUCTOSE IN SUBCRITICAL WATER
- Rapid and Selective Conversion of Glucose to Erythrose in Supercritical Water
- Xylose Monomer and Oligomer Yields for Uncatalyzed Hydrolysis of Sugarcane Bagasse Hemicellulose at Varying Solids Concentration
- Mechanism of levulinic acid formation
- Roles of water for chemical reactions in high-temperature water.
- Mechanism of formation of 2-furaldehyde from d-xylose
- Decomposition Behavior of Plant Biomass in Hot-Compressed Water
- Glucose decomposition kinetics in water at 25 MPa in the temperature range of 448-673 K
- Kinetic Modeling of the Autohydrolysis of Lignocellulosic Biomass for the Production of Hemicellulose-Derived Oligosaccharides
- Hydrolysis of ginger bagasse starch in subcritical water and carbon dioxide.
- Glucose and fructose decomposition in subcritical and supercritical water: Detailed reaction pathway, mechanisms, and kinetics
- Production of levulinic acid and use as a platform chemical for derived products
- Degradation Kinetics of Dihydroxyacetone and Glyceraldehyde in Subcritical and Supercritical Water
- Characterization of Dicarboxylic Acids for Cellulose Hydrolysis
Cited by
- Prediction of the Maximum Temperature for Life Based on the Stability of Metabolites to Decomposition in Water
- Subcritical water mediatedhydrolysis of cider lees asaroute for recovery of high value compounds
- Reaction mechanisms of hydrothermal liquefaction of model compounds and biowaste feedstocks
- Xylan Depolymerisation under Subcritical Water Conditions
- Experimental study about the influence of protein in seaweed on furfural production and design of a seaweed-based biorefinery concept
- Kinetic study of glucose conversion to levulinic acid over Fe/HY zeolite catalyst
- Hydrothermal liquefaction of low-lipid microalgae to produce bio-crude oil
- Kinetic study of levulinic acid production from corn stalk at relatively high temperature using FeCl3 as catalyst: A simplified model evaluated
- Glucose transformation to 5‐hydroxymethylfurfural in acidic ionic liquid: A quantum mechanical study
- Heterogeneously-catalyzed conversion of carbohydrates.
- SUPERCRITICAL WATER GASIFICATION CHARACTERISTICS OF AMINO ACIDS
- Microwave-assisted hydrothermal degradation of fructose and glucose in subcritical water
- Production of furfural from pentosan-rich biomass: analysis of process parameters during simultaneous furfural stripping.
- The effects of combined catalysis of oxalic acid and seawater on the kinetics of xylose and arabinose dehydration to furfural
- Enhancing solubilisation and methane production kinetic of switchgrass by microwave pretreatment.
- Aqueous phase reactions of pentoses in the presence of nanocrystalline zeolite beta: Identification of by-products and kinetic modelling
- Reaction extraction of furfural from pentose solutions in a modified Scheibel column
- Kinetics of glucose decomposition in formic acid
- The conversion of lignocellulosics to levulinic acid
- Hydrolysis of organosolv wheat pulp in formic acid at high temperature for glucose production.
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