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- W4319722017 abstract "Ensuring the safe disposal of waste materials to prevent irreversible environmental damage is a major priority concern of the current century. The alarming rate of consumption of plastic-based packaging materials has steadily increased and plastic accumulation now seemingly contributes to the global carbon footprint substantially adding to greenhouse gas emissions. While it is difficult to reduce the global dependency on plastics as a cheap and easily polymerizable material source, nature provides a sustainable alternative to process waste into eco-friendly breakdown products that are recycled back as nutrients by microorganisms and are not harmful by-products. Packaging in the form of naturally occurring biodegradable matter is becoming an increasingly attractive alternative to replace common nonbiodegradable plastic. Biopolymers assembled in nature are by their intrinsic nature biodegradable but retain some ability to exhibit plastic-like properties. Hence in this review, the knowledge gap that currently prevents the use of readily available natural biopolymers namely nanocellulose that have the potential to be engineered into biodegradable plasticized products is highlighted. This review aims to focus on discussion points that are underrepresented with regard to aspects on nanocellulose. Here, bond fragility of nanocellulose is one concern limiting its use as a viable biodegradable bioplastic. Material failure has its origins in chemical bond breakage and while much progress has been directed toward experimental investigations of nanocomposites formed form nanocellulose, the connection between an intrinsic understanding of chemical bonds with structural-functional nature of nanocellulose is lacking. Here, we explore these in more detail in our efforts to build a greater appreciation to broader areas covered elsewhere." @default.
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- W4319722017 date "2023-01-01" @default.
- W4319722017 modified "2023-09-27" @default.
- W4319722017 title "Packaging Applications of Biodegradable Nanocellulose Composites" @default.
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- W4319722017 doi "https://doi.org/10.1007/978-981-16-6603-2_38-1" @default.
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