<p>Bananas are produced globally at an annual volume exceeding 130&#xa0;million tons. The peel, comprising approximately one-third of the fruit weight, is predominantly discarded as waste in the food industry. Notably, banana peels are a rich source of valuable bioactive compounds such as pectin, which may be recovered and utilized in the food, packaging and pharmaceutical sectors. As a climacteric fruit, bananas are highly susceptible to rapid postharvest deterioration, making the development of active edible coatings a promising technique for maintaining quality during storage. The present study demonstrates the valorization of banana peel waste through the extraction of pectin and its subsequent use as a bio-based coating material for banana preservation. Pectin was extracted under optimized conditions (80&#xa0;℃, pH 4.5), achieving a yield of 13.06% extraction yield, with compositional characteristics including 39.23% galacturonic acid content, 70.70% degree of esterification, 11.50% methoxyl content and equivalent weight of 2708.95&#xa0;g/mol. The quality and ripening progression of coated bananas were monitored at three different storage temperatures (15, 20, and 25&#xa0;℃). Bananas stored at 15&#xa0;℃ exhibited the slowest browning among all treatments. The temperature dependence of color deterioration rate was adequately modelled by the Arrhenius equation and activation energy ranged from 71.91 to 95.30<InlineEquation ID="IEq1"> <InlineMediaObject> <ImageObject Color="BlackWhite" FileRef="44187_2025_606_Article_IEq1.gif" Format="GIF" Height="23" Rendition="HTML" Resolution="72" Type="Linedraw" Width="24" /> </InlineMediaObject> <EquationSource Format="TEX">\(\:\frac{kJ}{mol\:}\)</EquationSource> </InlineEquation> for the different treatments tested. Pectin based coatings supplemented with 1% ascorbic acid significantly enhanced color retention and reduced polyphenoloxidase activity compared to uncoated controls. This study introduces a novel approach to banana preservation by valorizing pectin extracted from banana peel waste as a functional bio-based material for active edible coatings. The findings contribute to sustainable waste valorization strategies coupled with improved postharvest fruit preservation.</p>

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Extraction of pectin from banana peels and utilization in a bioactive coating for postharvest banana preservation

  • Evmorfia Athanasopoulou,
  • Pelagia Charpa,
  • Mirva Sarafidou,
  • Apostolos Koutinas,
  • Theofania Tsironi

摘要

Bananas are produced globally at an annual volume exceeding 130 million tons. The peel, comprising approximately one-third of the fruit weight, is predominantly discarded as waste in the food industry. Notably, banana peels are a rich source of valuable bioactive compounds such as pectin, which may be recovered and utilized in the food, packaging and pharmaceutical sectors. As a climacteric fruit, bananas are highly susceptible to rapid postharvest deterioration, making the development of active edible coatings a promising technique for maintaining quality during storage. The present study demonstrates the valorization of banana peel waste through the extraction of pectin and its subsequent use as a bio-based coating material for banana preservation. Pectin was extracted under optimized conditions (80 ℃, pH 4.5), achieving a yield of 13.06% extraction yield, with compositional characteristics including 39.23% galacturonic acid content, 70.70% degree of esterification, 11.50% methoxyl content and equivalent weight of 2708.95 g/mol. The quality and ripening progression of coated bananas were monitored at three different storage temperatures (15, 20, and 25 ℃). Bananas stored at 15 ℃ exhibited the slowest browning among all treatments. The temperature dependence of color deterioration rate was adequately modelled by the Arrhenius equation and activation energy ranged from 71.91 to 95.30 \(\:\frac{kJ}{mol\:}\) for the different treatments tested. Pectin based coatings supplemented with 1% ascorbic acid significantly enhanced color retention and reduced polyphenoloxidase activity compared to uncoated controls. This study introduces a novel approach to banana preservation by valorizing pectin extracted from banana peel waste as a functional bio-based material for active edible coatings. The findings contribute to sustainable waste valorization strategies coupled with improved postharvest fruit preservation.