Biofoams: Science and Applications of Bio-Based Cellular and Porous Materials
Biofoams: Science and Applications of Bio-Based Cellular and Porous Materials
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- More about Biofoams: Science and Applications of Bio-Based Cellular and Porous Materials
Biofoams: Science and Applications of Bio-Based Cellular and Porous Materials is a book that explores the latest research and development of biofoams and porous systems, focusing on their formation in drink and food. It introduces the science, technologies, and applications of biopolymers and biomaterials in the development of porous structures, including biodegradable and sustainable foams, biomedical foams, food foams, and bio-inspired foams. The book also discusses the engineering of bio-inspired scaffolds with the ability to mimic living tissue and the use of renewable resources to develop more sustainable lightweight materials.
Format: Paperback / softback
Length: 450 pages
Publication date: 31 March 2021
Publisher: Taylor & Francis Ltd
Addressing a pressing demand in the industry, researchers are drawing inspiration from nature's building blocks to develop bio-inspired cellular structures that hold immense potential for applications in the plastic, food, and biomedical sectors. This collaborative effort, showcased in the book "Biofoams: Science and Applications of Bio-Based Cellular and Porous Materials," brings together international experts who have dedicated their efforts to advancing the research and development of biofoams and porous systems.
Within its pages, readers will find a comprehensive exploration of the latest advancements in biofoams and porous systems. Specifically, the book delves into the intricate aspects of gas bubble formation in drinks and food, shedding light on the scientific principles governing this phenomenon. By offering a detailed analysis of bio-polymers and foaming technologies, biodegradable and sustainable foams, biomedical foams, food foams, and bio-inspired foams, the book provides a thorough understanding of these materials' properties and applications.
Furthermore, this book serves as a valuable resource for those seeking to generate new materials with wide-ranging technological applicability. It introduces the science, technologies, and applications related to the use of biopolymers and biomaterials in the development of porous structures. Topics covered include bio-based polymers for the creation of biodegradable and sustainable polymeric foams, foams in food applications, foams in biomedical applications, biohybrids, and bio-inspired cellular and porous systems. Recent studies on the design of polymer-based composites and hybrid scaffolds are also presented, along with discussions on the challenges associated with the production of porous polymers.
In addition to its technical content, the book emphasizes the importance of materials compatibility with natural tissues. It explores the engineering of bio-inspired scaffolds that possess the ability to mimic living tissue, thereby enhancing the healing process and promoting tissue regeneration. Furthermore, the book sheds light on the use of renewable resources to develop more sustainable lightweight materials, contributing to a greener and more environmentally friendly future.
To illustrate the practical applications of these concepts, the book provides numerous illustrative examples of cellular architecture present in nature. These examples serve as a source of inspiration for researchers and designers seeking to harness the power of nature in the development of innovative materials and technologies.
In conclusion, "Biofoams: Science and Applications of Bio-Based Cellular and Porous Materials" is a groundbreaking work that represents a significant milestone in the field of bioengineering. By bridging the gap between science and industry, this book empowers researchers and practitioners to unlock the full potential of bio-inspired cellular and porous materials. As we continue to grapple with the challenges of sustainability and resource depletion, the insights and technologies presented in this book offer a promising path toward a more sustainable and prosperous future.
Weight: 862g
Dimension: 254 x 178 (mm)
ISBN-13: 9780367783365
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