article · Discover Food
Beef is highly susceptible to microbial spoilage due to its rich moisture and nutrient content, along with the limitations of conventional packaging. This study investigates a biodegradable film made from water-yam starch reinforced with polyethylene and eggshell nanoparticles (WSPeN) for preserving beef under various processing conditions. The film was developed using thermal ultrasonication-assisted dispersion and its physicochemical and thermal properties were determined. Beef samples were wrapped in the WSPeN film and stored at different temperatures (4 °C, 8 °C, 10 °C), beef thickness (5 mm, 7 mm, 10 mm), and storage durations (5, 10, 15 days). Quality parameters, such as microbial load, moisture loss, color ( L* -lightness, a* -redness, b* -yellowness), and tenderness (N), were assessed throughout storage. Optimization using a Distance-Based Design approach identified 5 mm beef thickness, 4 °C storage, and 13.55 days as the most effective combination. Under these conditions, bacterial and fungal loads significantly decreased from initial counts of 5.62 × 10 3 CFU/g and 3.27 × 10 2 CFU/g to 2.91 × 10³ CFU/g and 1.46 × 10² CFU/g, respectively ( p < 0.05). In comparison, control samples packaged in low-density polyethylene (LDPE) exhibited higher microbial loads (7.8 × 10 3 CFU/g for bacteria and 3.4 × 10 2 CFU/g for fungi). The difference in redness values between packaged (16.0) and control samples (16.2) was not statistically significant ( p > 0.05), indicating color stability. In contrast, moisture loss was significantly lower in the packaged beef (2.9%) compared to the control (3.1%) ( p < 0.05), and tenderness was significantly improved in the packaged samples (50 N) relative to the control (34 N) ( p < 0.05). These results suggest better texture preservation, likely due to the film’s moisture retention and barrier properties. Additionally, the WSPeN film exhibited excellent thermal stability, with decomposition temperatures exceeding 439 °C, indicating its robustness for prolonged cold storage. Overall, these findings highlight the film’s potential as a sustainable, high-performance packaging material for extending beef shelf life and reducing spoilage.
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DOI: 10.1007/s44187-025-00623-z
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