This timely text integrates disciplines such as materials science, polymer chemistry, plant science, chemical engineering, and nanotechnology to provide comprehensive coverage of the state of the art in bio-based composite materials. It discusses the raw materials used in bio-based composites, basic design principles, properties, applications, a
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 bio-based composites. The book integrates knowledge from various disciplines including plant science, materials science, polymer chemistry, chemical engineering, and nanotechnology. It discusses the raw materials used in bio-based composites, basic design principles, properties, applications, and life cycle assessments.
The book also presents a strategic and policy-oriented view of these composites and considers the costs of retrofitting existing chemical production plants for bio-based composite manufacture. It is a definitive resource on bio-composites for academics, regulatory agencies, research and development communities, and industries worldwide.
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"This book provides an overview of the state of the art and emerging trends in the area of bio-based composites, demonstrating the existence of a lot of solutions, and underscoring the idea that their applications require interdisciplinary understanding, particularly in the fields of materials science and engineering."
-Valentin I. Popa, Cellulose Chemistry and Technology
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