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Enoki, Winter Mushroom · 2016 · Journal Article

High relevance

Development, physiochemical characterization and forming mechanism of Flammulina velutipes polysaccharide-based edible films.

Flammulina velutipes

Immune support
SpeciesEnoki, Winter Mushroom
JournalCarbohydrate polymers
Year2016

Key points

  • Edible films of Flammulina velutipes polysaccharide were prepared and characterized in terms of rheological, optical, morphologic, mechanical and barrier properties to evaluate their potential application in food packaging
  • Results suggested that FVP film prepared by the solution of 1:150 (w/v) had the optimal mechanical property, smooth and uniform surface, and good barrier property to water (37.92±2.00gmm/m(2)hkPa) and oxygen (37.92±2.01meq/kg)
  • The capacity of film-formation might be related to inter-molecular and intra-molecular hydrogen bonds of FVP and formation of β-glycosidic bonds during the process of film-formation
  • These findings will contribute to a theoretical basis for the development of FVP film in food packaging

Metadata-grounded summary

Citation abstract

Edible films of Flammulina velutipes polysaccharide were prepared and characterized in terms of rheological, optical, morphologic, mechanical and barrier properties to evaluate their potential application in food packaging. Results suggested that FVP film prepared by the solution of 1:150 (w/v) had the optimal mechanical property, smooth and uniform surface, and good barrier property to water (37.92±2.00gmm/m(2)hkPa) and oxygen (37.92±2.01meq/kg). The capacity of film-formation might be related to inter-molecular and intra-molecular hydrogen bonds of FVP and formation of β-glycosidic bonds during the process of film-formation. These findings will contribute to a theoretical basis for the development of FVP film in food packaging.

Citation

Du H, Hu Q, Yang W, Pei F, Kimatu BM, Ma N, et al. (2016). Development, physiochemical characterization and forming mechanism of Flammulina velutipes polysaccharide-based edible films. Carbohydrate polymers https://doi.org/10.1016/j.carbpol.2016.07.035 PMID: 27516267

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