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Research Article Open access CC BY 4.0

Exploring the Transformation of Food Waste into Bioplastic Materials: A Review

Yuli Andriani, Cahyaningtyas Rahma, Rusky I. Pratama

Asian Journal of Biotechnology and Bioresource Technology · pp. 1–11 · Published 3 Jan 2024

10.9734/ajb2t/2024/v10i1193

Abstract

Plastics, commonly encountered in forms such as packaging, household items, office supplies, electronics, and more, are typically conventional plastics derived from petroleum synthesis. The environmental issues posed by conventional plastics, which do not naturally degrade, necessitate a solution. An effective approach to address this challenge involves substituting conventional plastics, synthesized from petroleum, with biodegradable plastics made from natural materials. This article employs a literature review methodology, exploring research journals that cover a spectrum of bioplastics topics, including definitions, applications, advantages, natural ingredients, and final bioplastic products. Bioplastics, crafted from natural materials, possess the ability to decompose through microbial action, rendering them more environmentally friendly. Utilizing agricultural and fishery waste as sources of natural materials, such as cassava peels, fruit seeds, seaweed, fish scales, starch and cellulose content for bioplastic production. Bioplastic applications extend across various sectors, encompassing packaging, catering, electronics, automotive, agriculture, horticulture, toys, textiles, and more.

Biodegradable bioplastic conventional plastics natural materials

Cited by 2

Sustainable Food Packaging: Biodegradable Carboxymethyl Cellulose Films Reinforced With Green‐Synthesized ZnO Nanoparticles From Pineapple Waste

Md. Sanower Hossain, Nur Iznin Hanis binti Mohd Azhar, Nurul Aini binti Mohd Azman · ChemistrySelect · 2024

Agro-Industrial Alchemy: Transforming Waste into Wealth with Bio-Based Plastics

Elizabeta Hernández Domínguez, María de la Luz Sánchez Mundo, Rosalía América González Soto · Bioplastics within the Circular Bioeconomy · 2025

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