This book focuses on the preparation and characterisation of polyvinyl alcohol (PVA)/ halloysite nanotube (HNT) bionanocomposite films with different HNT contents for potential use in food packaging. It examines the effect of material composition and nanofiller content on mechanical, thermal and optical properties in relation to their morphological structures, and also comprehensively describes the water resistance, biodegradation and migration rates of such bionanocomposites, as well as their barrier properties in terms of water vapour transmission, and water vapour, air and oxygen permeabilities. Further, this book discusses the use of Nielsen model and Cussler model to predict the relative permeability of bionanocomposites, demonstrating that Nielsen model is more effective and in better agreement with experimental data obtained. Lastly, it discusses the application of bionanocomposite films in food packaging to prolong the shelf life of freshly cut avocados and peaches.

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This book focuses on the preparation and characterisation of polyvinyl alcohol (PVA)/ halloysite nanotube (HNT) bionanocomposite films with different HNT contents for potential use in food packaging.

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Chapter 1: Introduction.- Chapter 2: Materials, Manufacturing Process and Characterisation Methods.- Chapter 3: Morphological, Mechanical and Thermal Properties of PVA/ HNT Bionanocomposite Films.- Chapter 4: Water Resistance and Biodegradation of PVA /HNT Bionanocomposite Films.- Chapter 5:  Barrier Properties of PVA/ HNT Bionanocomposite Films.- Chapter 6: Component Migration of PVA/HNT Bionanocomposite Films.
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 This book focuses on the preparation and characterisation of polyvinyl alcohol (PVA)/ halloysite nanotube (HNT) bionanocomposite films with different HNT contents for potential use in food packaging. It examines the effect of material composition and nanofiller content on mechanical, thermal and optical properties in relation to their morphological structures, and also comprehensively describes the water resistance, biodegradation and migration rates of such bionanocomposites, as well as their barrier properties in terms of water vapour transmission, and water vapour, air and oxygen permeabilities. Further, this book discusses the use of Nielsen model and Cussler model to predict the relative permeability of bionanocomposites, demonstrating that Nielsen model is more effective and in better agreement with experimental data obtained. Lastly, it discusses the application of bionanocomposite films in food packaging to prolong the shelf life of freshly cut avocados and peaches.​

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Explores a novel bionanocomposite material system to combine biodegradable polymers and nanomaterials Provides a holistic approach of experimental characterisation and modelling in use of bionanocomposite films as environmentally sustainable materials Highlights a solution for reducing solid plastic waste by using novel bionanocomposite as a food packaging material
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GPSR Compliance The European Union's (EU) General Product Safety Regulation (GPSR) is a set of rules that requires consumer products to be safe and our obligations to ensure this. If you have any concerns about our products you can contact us on ProductSafety@springernature.com. In case Publisher is established outside the EU, the EU authorized representative is: Springer Nature Customer Service Center GmbH Europaplatz 3 69115 Heidelberg, Germany ProductSafety@springernature.com
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Produktdetaljer

ISBN
9789811573583
Publisert
2021-10-12
Utgiver
Vendor
Springer Verlag, Singapore
Høyde
235 mm
Bredde
155 mm
Aldersnivå
Research, P, 06
Språk
Product language
Engelsk
Format
Product format
Heftet

Om bidragsyterne

 Zainab Waheed Abdullah is currently a PhD student at the School of Civil and Mechanical Engineering at Curtin University, Australia. She was previously an assistant lecturer at the Department of Material Engineering, Technical Engineering College-Baghdad, Middle Technical University, Iraq. Her wide-ranging research interests include bionanocomposites, biopolymers and materials characterisation, particularly for low cycle fatigue.

 Dr. Yu Dong is a senior lecturer at the School of Civil and Mechanical Engineering, Curtin University, Australia. He has extensive research experience in the field of polymer nanocomposites, electrospun nanofibres, green composites, micromechanical modelling, nanomanufacturing and design of experiments. He is a lead book editor of "Manufacturing, Characterisation and Properties of Advanced Nanocomposites", MDPI, Switzerland, and "Fillers and Reinforcements for Advanced Nanocomposites", Elsevier, UK, and a solebook editor of "Nanostructures: Properties, Production Methods and Applications", NOVA Science Publishers, USA. He is also an associate editor of the journals “Frontiers in Materials” (Polymeric and Composite Materials section) and “Applied Nanoscience”.