Food Preservation, 1st Edition by Alexandru Grumezescu

By Alexandru Grumezescu

Food protection, quantity Six, the newest in the Nanotechnology within the Agri-Food series, discusses how nanotechnology can increase and regulate the expansion of pathogenic and spoilage compounds to enhance meals defense and caliber. The booklet contains examine details on nanovesicles, nanospheres, steel nanoparticles, nanofibers, and nanotubes, and the way they're in a position to trapping bioactive elements to extend and hold the soundness of compounds usually delicate lower than standard foodstuff processing and garage stipulations. This booklet should be invaluable to a large viewers of meals technological know-how learn execs and professors and scholars doing study within the field.

  • Describes the potent usage of nanostructured antimicrobials in toxicological reports and actual foodstuff systems
  • Offers study options for knowing possibilities in antimicrobial nanostructures and the capability demanding situations in their toxicity
  • Presents assorted purposes of nanostructured antimicrobials in meals maintenance
  • Covers the aptitude advantages of nanotechnology and techniques of threat evaluate that be certain nutrition safety

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7. ; (b) SEM image as-synthesized ZnO particles on PP film surface. Reprinted with permission from Paisoonsin et al. (2013); copyright 2013 Elsevier. bonding. The final ZnO-deposited DBD plasma-treated PP films showed strong antibacterial activities against both Gram-positive S. aureus and Gram-negative E. coli with or without UV light illumination. Shi et al. (2004) fabricated nanosilver composite polyethylene terephthalate (PET) films by a four-step procedure. 4’-bipyridinium dinitrate (HVVN) on pretreated PET (Fig.

Cerevisiae demonstrated the film’s antiadhesive properties. The maximal effect was obtained for only organosilicon matrix. It was founded that yeast detachment was lower when AgNPs were incorporated, which was supposed to strong affinity of embedded silver to biological components of the cell wall surface. They also suggested that enhanced hydrophobic yeast/coating interactions could be promoted due to methyl groups in the matrix network. Antibacterial activity of the nanocomposite coatings was founded at the proximity of the surface, and depended on the silver content.

Aureus Rhim et al. (2013) CuNPs 36 ± 9 nm Polylactic acid (PLA)/CuNPs P. fluorescens P. putida Longano et al.  coli Shankar et al. 3 nm Polypropylene (PP) packaging film S. aureus E. coli Paisoonsin et al. (2013) ZnONPs 75 nm Poly(3-hydroxybutyrate-co3-hydroxyvalerate) (PHBV)film S. aureus E. coli Díez-Pascual and Díez-Vicente (2014) TiO2NPs 7 nm, 5 µm Orientedpolypropyrene (OPP) film E. coli Chawengkijwanich and Hayata (2008) TiO2NPs 7 nm Polypropyrene (PP) P. expansum Maneerat and Hayata (2006) TiO2 anatase 25 nm and 1 µm HDPE + CaCO3 + TiO2 composite matrix Pseudomonas spp.

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