Polysaccharide-Based Bioplastics: Eco-Friendly and Sustainable Solutions for Packaging

Биопластики на основе полисахаридов: экологичные и устойчивые решения для упаковки
Ashoka Gamage, Punniamoorthy Thiviya, Anuradhi Liyanapathiranage, M. L. Dilini Wasana, Yasasvi Jayakodi, A.M. Priyantha Bandara, Asanga Manamperi, Rohan S. Dassanayake, Philippe Evon, Othmane Merah, Terrence Madhujith
2024-10-08

active and intelligent packagingbiodegradable packaging materialsedible films and coatingspolysaccharide-based bioplasticssustainable food packaging
Over the past few decades, synthetic petroleum-based packaging materials have increased, and the production of plastics has surpassed all other man-made materials due to their versatility. However, the excessive usage of synthetic packaging materials has led to severe environmental and health-related issues due to their nonbiodegradability and their accumulation in the environment. Therefore, bio-based packages are considered alternatives to substitute synthetic petroleum-based packaging material. Furthermore, the choice of packing material in the food industry is a perplexing process as it depends on various factors, such as the type of food product, its sustainability, and environmental conditions. Interestingly, due to proven mechanical, gas, and water vapor barrier properties and biological activity, polysaccharide-based bioplastics show the potential to expand the trends in food packaging, including edible films or coatings and intelligent and active food packaging. Various chemical modifications, network designs, and processing techniques have transformed polysaccharide materials into valuable final products, particularly for large-scale or high-value applications. Transitioning from petroleum-based resources to abundant bio-based polysaccharides presents an opportunity to create a sustainable circular economy. The economic viability of polysaccharide-based bioplastics is determined by several factors, including raw material costs, production technologies, market demand, and scalability. Despite their potential advantages over traditional plastics, their economic feasibility is affected by continuous technological advancements and evolving market dynamics and regulations. This review discusses the structure, properties, and recent developments in polysaccharide-based bioplastics as green and sustainable food packaging materials.
1
Chemical modification, network design, and processing techniques have expanded polysaccharide materials into products suitable for large-scale and high-value applications.
2
Polysaccharide bioplastics enable edible films and coatings, as well as intelligent and active packaging systems.
3
Polysaccharide-based bioplastics are presented as biodegradable alternatives to petroleum-based packaging, addressing environmental and health problems caused by plastic accumulation.
4
Their economic feasibility depends on raw material costs, production technologies, market demand, scalability, technological progress, and regulatory developments.
5
These materials exhibit mechanical, gas-barrier, and water-vapor-barrier properties that support applications in food packaging.

polysaccharide-based bioplastics for food packaging

their structure, properties, recent developments, and sustainability and economic feasibility as food-packaging materials

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2024-10-08
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Authors
Ashoka Gamage
Punniamoorthy Thiviya
Anuradhi Liyanapathiranage
M. L. Dilini Wasana
Yasasvi Jayakodi
A.M. Priyantha Bandara
Asanga Manamperi
Rohan S. Dassanayake
Philippe Evon
Othmane Merah
Terrence Madhujith
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