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- W2079595183 abstract "Biomass is converted to oxygen barriers through a conceptually unconventional approach involving the preservation of the biomass native interactions and macromolecular components and enhancing the effect by created interactions with a co-component. A combined calculation/assessment model is elaborated to understand, quantify, and predict which compositions that provide an intermolecular affinity high enough to mediate the molecular packing needed to create a functioning barrier. The biomass used is a wood hydrolysate, a polysaccharide-rich but not highly refined mixture where a fair amount of the native intermolecular and intramolecular hemicelluloses−lignin interactions are purposely preserved, resulting in barriers with very low oxygen permeabilities (OP) both at 50 and 80% relative humidity and considerably lower OPs than coatings based on the corresponding highly purified spruce hemicellulose, O-acetyl galactoglucomannan (AcGGM). The component interactions and mutual affinities effectively mediate an immobilization of the chain segments in a dense disordered structure, modeled through the Hansen’s solubility parameter concept and quantified on the nanolength scale by positron annihilation lifetime spectrum (PALS)." @default.
- W2079595183 created "2016-06-24" @default.
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- W2079595183 date "2011-03-02" @default.
- W2079595183 modified "2023-10-03" @default.
- W2079595183 title "Conceptual Approach to Renewable Barrier Film Design Based on Wood Hydrolysate" @default.
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- W2079595183 doi "https://doi.org/10.1021/bm200128s" @default.
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