Lignin nanoparticles modified with tall oil fatty acid for cellulose functionalization
Наночастицы лигнина, модифицированные жирной кислотой таллового масла, для функционализации целлюлозы
2019-10-03
SCID: 54.1/4fbhe5mh
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Gram-positive antimicrobial activityantimicrobial composite materialcellulose functionalizationcovalent nanoparticle attachmenttall oil fatty acid lignin nanoparticles
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Abstract (AI)
Abstract In this study, tall oil fatty acid ester of softwood kraft lignin (TOFA-L) was used to prepare TOFA lignin nanoparticles (TLNP) in water. The average diameters for two prepared TLNPs in 0.1 mg/ml concentration were 140 nm and 160 nm. TLNPs were attached covalently onto modified and unmodified cellulose fibres to form an antimicrobial composite material. The modified cellulose fibres contained reactive allylic double bonds with a degree of substitution of 0.05. The antimicrobial properties of both TLNPs and TLNP coated fibres (TLNP-C) were studied against Escherichia coli , Staphylococcus aureus and Pseudomonas aeruginosa using silver nanospheres (average size 10 nm) and Lignoboost lignin particles with 300 and 400 nm sizes as references. Antimicrobial activity of the samples was stronger against Gram-positive S. aureus cells than against Gram-negative target microbes E. coli and P. aeruginosa .
Key Findings
1
Antimicrobial activity was stronger against Gram-positive Staphylococcus aureus than against Gram-negative Escherichia coli and Pseudomonas aeruginosa.
2
Antimicrobial performance was evaluated against silver nanospheres and 300- and 400-nm Lignoboost lignin particles as reference materials.
3
Modified cellulose fibers contained reactive allylic double bonds with a degree of substitution of 0.05, enabling nanoparticle attachment.
4
Tall oil fatty acid ester of softwood kraft lignin was used to produce aqueous lignin nanoparticles with average diameters of 140 and 160 nm.
5
The lignin nanoparticles were covalently attached to modified and unmodified cellulose fibers, forming antimicrobial composite materials.
Research Object
TOFA lignin nanoparticles and cellulose fibres functionalized with covalently attached TOFA lignin nanoparticles
Research Subject
Antimicrobial properties and activity of TOFA lignin nanoparticles and coated cellulose fibres against Escherichia coli, Staphylococcus aureus, and Pseudomonas aeruginosa
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2019-10-03
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