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Simple method for obtaining regenerated cellulose nanoparticles from delignified coffee parchment, and their use in fabricating blended films
by
Escobar, Diana Marcela
, Torres L, Ana María
, Campuzano, Francisco
in
Biomedical materials
/ By products
/ Caustic soda
/ Cellulose
/ Coffee
/ Mechanical properties
/ Methods
/ Nanoparticles
/ Parchment
/ Polyvinyl alcohol
/ Sodium
/ Thermal stability
2023
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Simple method for obtaining regenerated cellulose nanoparticles from delignified coffee parchment, and their use in fabricating blended films
by
Escobar, Diana Marcela
, Torres L, Ana María
, Campuzano, Francisco
in
Biomedical materials
/ By products
/ Caustic soda
/ Cellulose
/ Coffee
/ Mechanical properties
/ Methods
/ Nanoparticles
/ Parchment
/ Polyvinyl alcohol
/ Sodium
/ Thermal stability
2023
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Do you wish to request the book?
Simple method for obtaining regenerated cellulose nanoparticles from delignified coffee parchment, and their use in fabricating blended films
by
Escobar, Diana Marcela
, Torres L, Ana María
, Campuzano, Francisco
in
Biomedical materials
/ By products
/ Caustic soda
/ Cellulose
/ Coffee
/ Mechanical properties
/ Methods
/ Nanoparticles
/ Parchment
/ Polyvinyl alcohol
/ Sodium
/ Thermal stability
2023
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Simple method for obtaining regenerated cellulose nanoparticles from delignified coffee parchment, and their use in fabricating blended films
Journal Article
Simple method for obtaining regenerated cellulose nanoparticles from delignified coffee parchment, and their use in fabricating blended films
2023
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Overview
Coffee parchment is one of the residues generated in coffee processing and has been poorly explored for value-added applications. It has been reported that coffee parchment has a high cellulose content (40–49%). Cellulose has been studied in many fields and specifically regenerated cellulose has been explored for many applications. Then, in this work a simple method for obtaining regenerated cellulose nanoparticles (RCNPs) from delignified coffee parchment, was determined. A complete physicochemical characterization of RCNPs obtained is presented, FTIR showed high cellulose purity, and XRD analysis showed high crystallinity of cellulose II. TEM images revealed that nanoparticles have spherical morphology. TGA showed good thermal stability and DLS allowed to determine the stability of suspension and the Z-average of the particles. The application of RCNPs on film formation was also evaluated when blended with PVA and Glycerol showing good mechanical properties with potential application on food packing.
Publisher
Springer Nature B.V
Subject
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