Enoki, Winter Mushroom · 2025 · Journal Article
High relevanceAlkaline-heat treatment Flammulina velutipes polysaccharides/sodium carboxymethyl cellulose biodegradable composite film for fresh-cut cantaloupe preservation.
Flammulina velutipes
Key points
- As concerns about the safety and sustainability of plastic wrap grow, the development of biodegradable film for use in fresh-cut fruits and vegetables has become an inevitable trend
- We have enhanced the film-forming properties of polysaccharides by adjusting the pH. Through process optimization, the optimal parameters (pH 10, 6 % FVP, and 85 °C) yielded a composite film with superior properties: the highest tensile strength, minimal thickness (84.25 μm), maximum water contact angle (94.98°), lowest solubility (14.86 %), and lowest Carbon dioxide permeability (8.32 × 10 -4 g·m -2 ·h -1 )
- Moreover, the film exhibits excellent antioxidant properties and the ability to inhibit microbial growth
- Soil burial tests demonstrate that the composite film possesses excellent degradability and environmental friendliness
- The FVP-CMC pH10 film shows great moisture regulation and gas regulation in applications
- The results demonstrate that the composite film effectively retards weight loss, softening, nutrient loss, and total viable count of cantaloupe, thereby significantly extending its shelf life
Metadata-grounded summary
Citation abstract
As concerns about the safety and sustainability of plastic wrap grow, the development of biodegradable film for use in fresh-cut fruits and vegetables has become an inevitable trend. A biodegradable packaging material made of Flammulina velutipes polysaccharides (FVP) and sodium carboxymethyl cellulose (CMC) was created using the solution casting method. We have enhanced the film-forming properties of polysaccharides by adjusting the pH. Through process optimization, the optimal parameters (pH 10, 6 % FVP, and 85 °C) yielded a composite film with superior properties: the highest tensile strength, minimal thickness (84.25 μm), maximum water contact angle (94.98°), lowest solubility (14.86 %), and lowest Carbon dioxide permeability (8.32 × 10 -4 g·m -2 ·h -1 ). Moreover, the film exhibits excellent antioxidant properties and the ability to inhibit microbial growth. Soil burial tests demonstrate that the composite film possesses excellent degradability and environmental friendliness. The application of FVP-CMC pH10 packaging in the preservation of Cantaloupe (Cucumis melo L.) at 4 °C was investigated. The FVP-CMC pH10 film shows great moisture regulation and gas regulation in applications. The results demonstrate that the composite film effectively retards weight loss, softening, nutrient loss, and total viable count of cantaloupe, thereby significantly extending its shelf life.
Citation
Liu X, Tan Y, Cheng Z, Zhan Q, Chen X, Hu Q, et al. (2025). Alkaline-heat treatment Flammulina velutipes polysaccharides/sodium carboxymethyl cellulose biodegradable composite film for fresh-cut cantaloupe preservation. International journal of biological macromolecules https://doi.org/10.1016/j.ijbiomac.2025.147581 PMID: 40935030
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