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Production of biodegradable food packaging from mango peel via enzymatic hydrolysis and polyhydroxyalkanoates synthesis: A review on microbial intervention

ACTA IMEKO 2024 8 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count.
Vinay Kumar Pandey, Zaryab Shafi, Anjali Tripathi, Gurmeet Singh, Rahul Singh, Sarvesh Rustagi

Summary

Researchers reviewed the use of microbial fermentation to convert mango peel waste into polyhydroxyalkanoates (PHAs), highlighting enzymatic hydrolysis as a key step that makes agricultural byproducts a viable feedstock for biodegradable food packaging production.

Polymers
Body Systems

The rising environmental problem of plastic packaging waste has led to the development of sustainable alternatives, particularly for food packaging. Polyhydroxyalkanoates (PHAs) are biodegradable, thermoplastic polyesters. They are employed in the production of various products, including packaging films. The bio-based nature and appropriate features of PHAs, similar to conventional synthetic plastics, have garnered significant attention from researchers and industries. The current study aimed to produce biodegradable food packaging using mango peel (a major agricultural waste) with enzymatic hydrolysis and PHAs synthesis. Mango peel is the hub for macro-and micronutrients, including phytochemicals. The process includes an enzymatic hydrolysis step that converts complex carbohydrates into simple sugars using mango peel as a substrate. The produced sugars are used as raw materials for bacteria to synthesize PHAs, which are a class of biodegradable polymers produced by these microorganisms that can serve as packaging materials in the food industry. To solve environmental problems and increase the utilization of agricultural by-products, this review presents a practical method for producing food packaging that is environmentally friendly.

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