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Plant Tuber and Root-based Biocomposites: Development, Characterization, and Applications discusses the latest advances in this important research field. The book details novel tuber and root-based materials individually and covers their manufacturing, characterization, and applications. Emphasis is placed on the fundamental properties of these materials to address challenges and opportunities for industrial commercialization in the future. Various applications in food, medicine, textiles, biofuel, pulp, and paper-making industries, as well as bioenergy, packaging, and automotive, are covered. - Covers the latest advances in the application of bio-based feedstocks (tubers/root fibers) for manufacturing composites - Includes materials selection, design solutions, manufacturing techniques, structural analysis, and performance of tuber and root-based composites in various applications - Explores new materials such as Dioscorea hispida, arrowroot bagasse, and cassava bagasse - Covers step-by-step procedures to develop biodegradable packaging materials such as extraction of raw materials, treatment of materials, and incorporation of additives to improve the functional properties of developed products - Includes nanobiocomposites, covers commercialization, and is a practical guide to realistic applications
Plant Tuber and Root-based Biocomposites: Development, Characterization, and Applications discusses the latest advances in this important research field. The book details novel tuber and root-based materials individually and covers their manufacturing, characterization, and applications. Emphasis is placed on the fundamental properties of these materials to address challenges and opportunities for industrial commercialization in the future. Various applications in food, medicine, textiles, biofuel, pulp, and paper-making industries, as well as bioenergy, packaging, and automotive, are covered.
A comprehensive overview of recent developments in starch-based materials, ideal for students and researchers working in bio-based and biodegradable polymers and composites.
Nanotechnology is an emerging, pivotal platform for enhancing plant health. On one hand, nanomaterials serve as crucial nutrients and nanofertilizers, while on the other, they have demonstrated their potential for diagnosing plant diseases, delivering fungicides and pesticides, and providing therapeutic solutions against diseases caused by pathogens and parasites. The book Nanotechnology in Plant Health explores the significance of nanomaterials in plant nutrition, nanofertilizers, and their role in managing plant pathogens, including the most formidable ones like quarantined strains. This unique publication represents a global team of contributors and stands out for its comprehensive coverage of plant nanonutrients, nanofertilizers, and nano-plant protectors.
Presenting a comprehensive overview of the field, Biofiller-Reinforced Biodegradable Polymer Composites examines biodegradable composites derived from biofiller and biodegradable polymers while providing critical information for efficient use of biocomposites developed from natural resources. Discusses advanced techniques for the use of both biofiller and biodegradable polymers as the matrix for composites. Highlights application of both natural fiber and natural matrix for composites in the development of environmentally friendly and sustainable materials. Introduces the basics of biocomposites, the processing and characteristics of new composite materials, and new combinations of composites such as soy protein and nanocellulose. Elaborates on the introduction of new materials to develop biodegradable polymers. This book has been written for researchers, advanced students, and professional engineers and materials scientists working in the area of bio-based polymers, natural fiber composites, and biocomposites.
Polysaccharides and their composites are highly promising materials for food, pharmaceutical and biomedical applications; including drug delivery, tissue engineering and packaging. Fiber- and nano-reinforced composites are good alternatives to non-biodegradable petroleum‐based polymers. The great advantage of these materials is that they are both environment friendly and nontoxic. Keywords: Polysaccharides, Polysaccharide Composites, Drug Delivery, Tissue Engineering, Pharmaceutical Packaging, Food Packaging , Environment Friendly Materials, Nontoxic Materials, Wound-Healing Sponge, Skin Lesions, Chitosan Composites, Nanocellulose, Starch-Based Composites.
Since synthetic plastics derived from fossil resources are mostly non-biodegradable, many academic and industrial researchers have shifted their attention toward bio-based materials, which are more eco-friendly.Bio-Based Composites for High-Performance Materials: From Strategy to Industrial Application provides an overview of the state-of-art in bi
Structural Adhesives Uniquely provides up-to-date and comprehensive information on the topic in an easily-accessible form. A structural adhesive can be described as a high-strength adhesive material that is isotropic in nature and bonds two or more parts together in a load-bearing structure. A structural adhesive material must be capable of transmitting the stress/load without loss of structural integrity within design limits. There are many types of established structural adhesives, including epoxy, urethane, acrylic, silicone, etc. Structural Adhesives comprises nine chapters and is divided into two parts: Part 1, Preparation, Properties, and Characterization; Part 2, Applications. The topics covered include: structural epoxy adhesives; biological reinforcement of epoxies as structural adhesives; marble dust reinforced epoxy structural adhesive composites; characterization of various structural adhesive materials; effects of shear and peel stress distributions on the behavior of structural adhesives; the inelastic response of structural aerospace adhesives; structural reactive acrylic adhesives: their preparation, characterization, properties, and applications; application of structural adhesives in composite connections; and naval applications of structural adhesives. Audience This book should be of much use and interest to adhesionists, materials scientists, adhesive technologists, polymer scientists, and those working in the construction, railway, automotive, aviation, bridge, and shipbuilding industries.
This book is a comprehensive introduction to "green" or environmentally friendly polymer composites developed using renewable polymers of natural origin such as starch, lignin, cellulose acetate, poly-lactic acid (PLA), polyhydroxylalkanoates (PHA), polyhydroxylbutyrate (PHB), etc., and the development of modern technologies for preparing green composites with various applications. The book also discusses major applications of green polymer composites in industries such as medicine, biotechnology, fine chemicals and engineering.