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Nanomaterials additives in bioadhesives for wood composites
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Nanomaterials additives in bioadhesives for wood composites/ edited by Petar Antov ... [et al.].
other author:
Antov, Petar.
Published:
Singapore :Springer Nature Singapore : : 2025.,
Description:
vi, 261 p. :ill., digital ; : 24 cm.;
Contained By:
Springer Nature eBook
Subject:
Engineered wood. -
Online resource:
https://doi.org/10.1007/978-981-96-3400-2
ISBN:
9789819634002
Nanomaterials additives in bioadhesives for wood composites
Nanomaterials additives in bioadhesives for wood composites
[electronic resource] /edited by Petar Antov ... [et al.]. - Singapore :Springer Nature Singapore :2025. - vi, 261 p. :ill., digital ;24 cm. - Smart nanomaterials technology,3004-8281. - Smart nanomaterials technology..
1. Bio-based Wood Adhesives: Recent Developments -- 2. Potential of nanotechnology in wood-based materials -- 3. Nanocellulose applications in bio-based wood adhesives -- 4. Nanolignin in Bioadhesives for Wood Composites -- 5. Sustainable and Eco-Friendly Starch-Based Adhesives for High-Performance Wood-Based Composites -- 6. Multifunctional Nanotechnology Application for Wood Properties Enhancement: Adhesive and Coating -- 7. Potential of nanomaterials as formaldehyde scavengers in wood- based composites -- 8. Fire Retarding Treatments of Wood and Wood-Based Materials.
This book presents an overview of recent developments in the use of nanomaterials, such as nanocellulose, nanolignin, and nanoclay, in the synthesis of sustainable, bio-based adhesives for manufacturing high-performance, eco-friendly wood-based composites with enhanced properties, close-to-zero formaldehyde emission, and a lower environmental footprint for advanced value-added applications. In recent years, bio-based wood adhesives have received great attention as a sustainable alternative to the conventional synthetic adhesives used in the wood-based industry. However, bioadhesives based on natural and renewable feedstocks, such as protein, starch, lignin, and tannin, have inferior properties compared to thermosetting synthetic resins. Reinforcement with nanomaterials with a high aspect ratio has the potential to improve the performance of bio-based wood adhesives and the technological properties of wood composites. The book explores the present-day challenges and future prospects of using nanomaterials in bio-based wood adhesives. The content of this book appeals to materials scientists, wood scientists, environmental scientists, and wood-based panel industry professionals.
ISBN: 9789819634002
Standard No.: 10.1007/978-981-96-3400-2doiSubjects--Topical Terms:
999902
Engineered wood.
LC Class. No.: TS843
Dewey Class. No.: 674.83
Nanomaterials additives in bioadhesives for wood composites
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1. Bio-based Wood Adhesives: Recent Developments -- 2. Potential of nanotechnology in wood-based materials -- 3. Nanocellulose applications in bio-based wood adhesives -- 4. Nanolignin in Bioadhesives for Wood Composites -- 5. Sustainable and Eco-Friendly Starch-Based Adhesives for High-Performance Wood-Based Composites -- 6. Multifunctional Nanotechnology Application for Wood Properties Enhancement: Adhesive and Coating -- 7. Potential of nanomaterials as formaldehyde scavengers in wood- based composites -- 8. Fire Retarding Treatments of Wood and Wood-Based Materials.
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This book presents an overview of recent developments in the use of nanomaterials, such as nanocellulose, nanolignin, and nanoclay, in the synthesis of sustainable, bio-based adhesives for manufacturing high-performance, eco-friendly wood-based composites with enhanced properties, close-to-zero formaldehyde emission, and a lower environmental footprint for advanced value-added applications. In recent years, bio-based wood adhesives have received great attention as a sustainable alternative to the conventional synthetic adhesives used in the wood-based industry. However, bioadhesives based on natural and renewable feedstocks, such as protein, starch, lignin, and tannin, have inferior properties compared to thermosetting synthetic resins. Reinforcement with nanomaterials with a high aspect ratio has the potential to improve the performance of bio-based wood adhesives and the technological properties of wood composites. The book explores the present-day challenges and future prospects of using nanomaterials in bio-based wood adhesives. The content of this book appeals to materials scientists, wood scientists, environmental scientists, and wood-based panel industry professionals.
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Chemistry and Materials Science (SpringerNature-11644)
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