Papers

61,005 results
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Article Tier 2

An overview: exploring the potential of fruit and vegetable waste and by-products in food biodegradable packaging

Researchers reviewed how fruit and vegetable processing waste — rich in polyphenols, vitamins, and fiber — can be transformed into biodegradable food packaging films and coatings, offering an eco-friendly alternative to conventional plastic packaging. Repurposing food waste this way could simultaneously reduce plastic pollution (including microplastics from packaging degradation) and address agricultural waste disposal challenges.

2024 Discover Food 15 citations
Article Tier 2

Valorization and Application of Fruit and Vegetable Wastes and By-Products for Food Packaging Materials

This review summarized recent research on converting fruit and vegetable processing waste into biopolymer-based food packaging materials, covering extraction of pectin, cellulose, and starch from by-products and their performance as biodegradable packaging films.

2021 Molecules 118 citations
Article Tier 2

Agro-Food Waste Valorization for Sustainable Bio-Based Packaging

This review examines how waste from food processing can be repurposed into biodegradable packaging materials as an alternative to conventional plastics. Researchers have developed films and coatings from fruit peels, grain husks, and other agricultural byproducts, though most solutions remain at the laboratory stage. Replacing traditional plastic packaging with these bio-based alternatives could help reduce the generation of microplastics that contaminate food and water supplies.

2024 Journal of Composites Science 52 citations
Article Tier 2

Use Of Organic Fruit Residues To Obtain Bioplastics

Researchers investigated the use of organic fruit waste as a raw material for producing bioplastics, exploring a range of fruit types and processing methods to develop petroleum-free alternatives to conventional single-use plastics. The review aligns bioplastic production from agricultural residues with circular economy principles and growing demand for environmentally friendly packaging solutions.

2024 MIGRATION LETTERS 1 citations
Article Tier 2

In situ crosslinked Schiff base biohydrogels containing Carica papaya peel extract: application in the packaging of fresh berries

Researchers developed biohydrogels using papaya peel extract crosslinked via Schiff base chemistry, creating antimicrobial and antioxidant packaging films that extended the shelf life of fresh berries by leveraging fruit waste as a functional ingredient.

2023 Sustainable Food Technology 12 citations
Article Tier 2

Innovative Packaging Solutions from Agri-food Wastes and By-products

This review examined biodegradable bio-packaging materials derived from agri-food wastes as alternatives to petrochemical plastics, covering their preparation, properties, and use in food industries. While bio-packaging reduces microplastic accumulation and carbon footprint, the authors noted ongoing challenges in mechanical performance and cost.

2025
Article Tier 2

Biofilms Production from Avocado Waste

Researchers developed biofilms from starch and cellulose extracted from avocado peels and seeds as potential biodegradable food packaging materials. These plant-based packaging alternatives could replace petroleum-based plastics that break down into persistent microplastics.

2021 Ingenieria y Universidad 5 citations
Article Tier 2

Valorization of Cork Stoppers, Coffee-Grounds and Walnut Shells in the Development and Characterization of Pectin-Based Composite Films: Physical, Barrier, Antioxidant, Genotoxic, and Biodegradation Properties

Researchers developed biodegradable composite films using pectin combined with waste materials from cork stoppers, coffee grounds, and walnut shells as a sustainable alternative to plastic packaging. The films showed antioxidant properties, were non-genotoxic, and biodegraded effectively in both soil and seawater within weeks. The study demonstrates that food industry and agricultural waste can be repurposed into functional, environmentally friendly packaging materials.

2024 Polymers 8 citations
Article Tier 2

Bio-based and Sustainable Food Packaging Technology: Relevance, Challenges and Prospects

A review assessed bio-based and sustainable food packaging technologies, evaluating their relevance as replacements for conventional plastic packaging that generates microplastic pollution. The study identifies the most promising materials and the barriers to scaling up plastic-free food packaging.

2025 Journal of Biomaterials 1 citations
Article Tier 2

Natural Polymeric Materials: A Solution to Plastic Pollution from the Agro-Food Sector

This review examined biopolymer materials derived from fruit and vegetable food waste — including starch, cellulose, and protein-based polymers — as replacements for petroleum-derived food packaging plastics, discussing extraction processes, material properties, and sustainability advantages.

2021 Polymers 149 citations
Article Tier 2

Fabrication and Characterization of Bio-Nanocomposites Based on Halloysite-Encapsulating Grapefruit Seed Oil in a Pectin Matrix as a Novel Bio-Coating for Strawberry Protection

Researchers developed bio-nanocomposite coatings by encapsulating grapefruit seed oil in halloysite nanotubes within a pectin matrix, finding that the resulting material improved mechanical, barrier, and antimicrobial properties for use as a biodegradable fruit preservation coating.

2022 Nanomaterials 21 citations
Article Tier 2

Bio-based materials for barrier coatings on paper packaging

Researchers reviewed bio-based polymer coatings for paper packaging, evaluating how naturally renewable biopolymers can replace petroleum-derived synthetic coatings to provide effective oxygen, oil, and moisture barriers while reducing environmental impact.

2022 Biomass Conversion and Biorefinery 140 citations
Article Tier 2

Desarrollo de biopelículas degradables a partir de harina de fruta de pan (Artocarpus altilis), como alternativa al uso de plásticos sintéticos convencionales

Biodegradable biofilms were developed from breadfruit flour (Artocarpus altilis) as a sustainable alternative to conventional synthetic plastic packaging. The biofilms were characterized for physical, mechanical, and barrier properties, offering a compostable food packaging material that reduces microplastic waste.

2024 Tierra Infinita
Clinical Trial Tier 1

Development of Biodegradable Films from Carrot, Guava, and Banana Peel Fibers for Environmental Packaging Applications

Despite its classification in this database, this study develops biodegradable packaging films from fruit and vegetable fibers rather than investigating microplastic pollution directly. Films made from 60% guava fiber with 1.8% alginate showed the best mechanical properties and highest soil degradation rate, offering a potential alternative to conventional plastic packaging.

2025 Journal of Environmental & Earth Sciences
Article Tier 2

Potentials of Berry Fruits Pomaces for Bio-Based Films

This paper is not directly about microplastic pollution. It investigates using berry fruit pomace waste to create biodegradable bioplastic films as an alternative to conventional plastic packaging. While replacing conventional plastics with biodegradable alternatives could reduce future microplastic generation, the study itself focuses on food packaging material development rather than microplastic contamination.

2023 International Journal of Innovative Approaches in Agricultural Research 3 citations
Article Tier 2

Edible Coatings and Films for Preparation of Grapevine By-Product Infusions and in Freshly Processed Products

This review examines how edible coatings and films made from natural materials can be used to preserve grapevine by-products, which are rich in antioxidants, phenolic compounds, and vitamins. Researchers found that these bio-based coatings can extend shelf life while maintaining the nutritional value of the products. The approach offers a sustainable alternative to conventional plastic packaging for preserving valuable compounds from wine industry waste.

2023 Coatings 17 citations
Article Tier 2

Bio-based lacquers from industrially processed tomato pomace for sustainable metal food packaging

Researchers developed food can coatings made from tomato pomace — a waste product from tomato processing — as a plant-based alternative to BPA-based liners, the synthetic chemicals commonly used inside metal food cans. The coatings showed strong water resistance and corrosion protection, especially on aluminum, suggesting food waste could help replace potentially harmful plastic-derived packaging chemicals.

2022 Journal of Cleaner Production 19 citations
Article Tier 2

Preliminary Techno-Economic Feasibility of Biodegradable Food Packaging from Luffa Acutangula Peel in Indonesia

Researchers conducted a preliminary techno-economic feasibility assessment of biodegradable food packaging made from Luffa acutangula peel as an alternative to conventional plastics, addressing growing concerns about microplastic and nanoplastic contamination from food packaging in Indonesia.

2025 Buletin Penelitian Sosial Ekonomi Pertanian Fakultas Pertanian Universitas Haluoleo/Buletin Penelitian Sosial Ekonomi Pertanian - Fakultas Pertanian Universitas Haluoleo
Article Tier 2

Chitosan-Based Films Blended with Tannic Acid and Moringa Oleifera for Application in Food Packaging: The Preservation of Strawberries (Fragaria ananassa)

Researchers developed biodegradable food packaging films made from chitosan blended with tannic acid and moringa seed powder, and tested them for strawberry preservation. They found that the bio-based films extended strawberry shelf life while providing antimicrobial properties, offering a potential alternative to conventional plastic packaging. The study suggests that natural polymer-based packaging materials could help reduce plastic waste in the food industry.

2024 Polymers 27 citations
Article Tier 2

Peningkatan Karakteristik Biokomposit Pektin Kulit Jeruk dan TiO2

This Indonesian study developed and characterized biocomposite materials combining orange peel pectin with titanium dioxide as an alternative to conventional plastic. Developing biodegradable packaging materials from agricultural waste reduces the plastic production that ultimately leads to microplastic pollution.

2023 METANA
Article Tier 2

From Fruit Waste to Hydrogels for Agricultural Applications

Not relevant to microplastics — this study develops biodegradable hydrogels from fruit waste (pectin and starch) to reduce water loss and slow herbicide migration in sandy agricultural soils, without any connection to plastic pollution.

2023 Clean Technologies 14 citations
Article Tier 2

Edible and Functionalized Films/Coatings—Performances and Perspectives

This review covers recent advances in edible and biodegradable food films and coatings made from biological materials, examining their performance properties and potential as sustainable replacements for conventional petroleum-based food packaging.

2020 Coatings 116 citations
Article Tier 2

Biopolymer-based solutions for enhanced safety and quality assurance: A review

Researchers review how biopolymers are replacing petroleum-based plastics across the food industry, covering antimicrobial packaging, edible coatings, bioactive encapsulation, and smart polymer functions such as pH sensing and time-temperature monitoring that reduce food waste and microplastic pollution.

2024 Food Research International 28 citations
Article Tier 2

Biodegradable Packaging Materials for Foods Preservation: Sources, Advantages, Limitations, and Future Perspectives

This review examines biodegradable packaging materials derived from natural sources as alternatives to conventional petroleum-based plastics for food preservation. Researchers found that materials made from polysaccharides, proteins, and lipids can effectively extend food shelf life while being more environmentally friendly. The study acknowledges that cost and performance limitations remain, but highlights recent advances in combining these natural materials with antimicrobial and antioxidant agents to improve their practical viability.

2023 Coatings 87 citations