Journal of Agricultural and Food Chemistry · 1998 · 25 citations · 21 references
Rotten WoodChemical EngineeringAgricultural ChemistryEngineeringBotanyEnvironmental EngineeringNatural SciencesLigninBioremediationAbiotic RouteWheat StrawLignin ChemistryWheat Straw LigninolysisChemistryHemicellulosePlant PhysiologyPlant MetabolismAromatic Components
Oxidants formed through the interaction between MnO2 and oxalate accumulated in rotten wood have been evaluated as abiotic agents possibly involved in wheat straw ligninolysis. The hemicellulose and cellulose content of straw remained unchanged, and no release of free soluble materials from lignin or polysaccharides could be evidenced. Structural analysis of oxidized lignin in situ has revealed up to 30% and 10% decrease of β-O-4 linked Guaiacyl and Syringyl units, respectively. Lignin phenolic moieties only were directly oxidized by MnO2/oxalate as no structural alteration was observed within extensively permethylated wheat straw. Modifications were also evidenced at the level of the cell wall linked cinnamic acids present in wheat straw. Esterified phenolic acids were more readily oxidized by Mn complexes than ethers analogues, and disappearance of ferulic moieties was always more pronounced than that of p-coumaric acids. The abiotic Mn oxidants generated from MnO2 and oxalate may therefore significantly contribute to the decay and humification process of lignocellulosic material in Nature. Keywords: Manganese dioxide; oxalate; abiotic oxidation; wheat straw; lignin; cinnamic acid; hemicellulose; cellulose
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