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    1. Naturvetenskap och teknik
    2. Teknik och industri
    3. Energiteknik

    Waste - Derived Biocomposite Pellets for Sustainable Energy Generation

    Advanced Techniques in Biocomposite Utilization and Pelletization - Energy Efficiency and Environmental Sustainability

    AvMd Rezaur Rahman,Muhammad Khusairy Bin Bakri

    Häftad, Engelska, 2027

    1 970 kr

    Kommande

    Beskrivning

    Waste - Derived Biocomposite Pellets for Sustainable Energy Generation: Advanced Techniques in Biocomposite Utilization and Pelletization - Energy Efficiency and Environmental Sustainability addresses the critical need for innovative renewable energy sources by focusing on converting waste biomass into efficient biocomposite pellets. This reference consolidates scientific concepts, engineering methodologies, and practical applications to support sustainable energy production and waste management. The content spans fundamental biomass science, diverse waste sources, pre-treatment methods, pelletization technologies, pellet quality enhancement, combustion characteristics, sustainability assessments, economic and policy perspectives, and applications beyond energy. It includes case studies and research findings that bridge theory and practice, emphasizing environmental impact reduction and circular economy integration. Waste - Derived Biocomposite Pellets for Sustainable Energy Generation benefits academics, industry experts, policymakers, and students by providing actionable knowledge to optimize pellet production, improve combustion efficiency, and implement sustainable waste-to-energy solutions. It supports innovation and informed decision-making towards global energy security and environmental sustainability.

    • Provides comprehensive analysis of waste biocomposite pellet production and optimization
    • Details advanced pelletization techniques enhancing energy efficiency and sustainability
    • Integrates scientific research with practical case studies for industry application
    • Highlights environmental and economic benefits supporting circular economy principles
    • Offers scalable solutions suitable for both developed and resource-constrained regions

    Produktinformation

    • Utgivningsdatum:2027-02-01
    • Mått:152 x 229 x undefined mm
    • Format:Häftad
    • Språk:Engelska
    • Antal sidor:225
    • Förlag:Elsevier Science
    • ISBN:9780443515606

    Utforska kategorier

    • Energiteknik inom Naturvetenskap och teknik

    Mer om författaren

    Ts. Dr. Md Rezaur Rahman is an Associate Professor in the Department of Chemical Engineering and Energy Sustainability, Faculty of Engineering, Universiti Malaysia Sarawak (UNIMAS), Malaysia. Since 2012, he has also served as a Visiting Research Fellow at the Faculty of Engineering, Tokushima University, Japan. His academic journey includes experience as a teaching assistant at Bangladesh University of Engineering and Technology (BUET) and as a Research Project Leader under the Malaysian Ministry of Higher Education. In 2015, he was appointed as an External Supervisor at the Faculty of Engineering, Swinburne University of Technology, Melbourne, Australia. Dr. Rahman holds a Ph.D. from Universiti Malaysia Sarawak and brings over 12 years of experience in teaching, research, and industry collaboration. His research expertise spans conducting polymers, nanocomposites, and advanced materials, including graphene, nanoclay, fire retardants, and nanocellulose-reinforced polymer composites. He has made significant contributions to the development of hybrid-filled polymer blends and the chemical modification of lignocellulosic fibers such as jute, coir, and kenaf. To date, Dr. Rahman has authored seven books, 20 book chapters, and over 200 articles in international journals, establishing himself as a prominent researcher in polymer science and nanotechnology. He is also listed in Stanford University's Top 2% Scientists list of the world's most cited scientists. Dr. Hj. Muhammad Khusairy Bin Capt. Hj. Bakri is a Postdoctoral Research Associate at Washington State University (WSU). He specializes in materials and mechanical engineering. He holds a BEng (2014), MEng (2016), and PhD (2018) from Swinburne University of Technology. His research focuses on developing composites making them durable by improving their interfacial interaction and stability of composites through advanced thermal and chemical treatments. His research also emphasizes bio-composites for sustainable and economically viable applications. He also has published over 279 scholarly works, including journal articles, book chapters, newspaper/bulletin, and conference proceedings, focusing on his expertise in wood composites, bio-composites, biomaterials, and wastewater treatment. Previously, Dr. Khusairy worked as a Research Fellow at Universiti Malaysia Sarawak (UNIMAS) from 2019-2021. During that time, he has collaborated with many researchers through international research projects across Malaysia and abroad. He is also certified as a Graduate Engineer and Professional Technologist under the Malaysian Board of Technologists (MBOT). He is a lifelong member of the Association of Professional Technicians and Technologists (APTT) located in Sarawak, Malaysia. Dr. Khusairy has received worldwide recognition, having been nominated and selected as a finalist for the Swinburne Alumni Impact Awards in 2022, and was included in Successful People in Malaysia 2023.

    Innehållsförteckning

    • 1. The Science of Biomass and Biocomposites Scope2. Categories of Waste for Biocomposite Pellet Production Scope3. Pre-Treatment of Waste Biomass for Biocomposite Pellets Production Scope4. Biocomposite Pellettization Production, Technologies and Techniques Scope5. Biocomposite Pellet Characteristics and Its Enhancement Scope6. Biocomposite Pellets Combustion and Is Energy Production Scope7. Biocomposite Pellets Sustainability and Its Circular Economy Scope8. Biocomposite Pellet Economic and Its Policy Perspectives Scope9. Biocomposite Pellet Applications and Beyond Energy Scope10. Biocomposite Pellet Challenges and Its Future Directions Scope