This book provides an exploration of nanomaterial intervention in the field of bioenergy production illustrating synthesis, characterization, and application in various bioenergy systems, including biodiesel, bioethanol, biogas, biohydrogen, and microbial fuel cells. It highlights current trends, challenges, and innovations to enhance energy conversion efficiency, sustainability, and scalability. It combines nanotechnology with artificial intelligence to optimize bioenergy systems and implications in biowaste conversion, bioeconomy, and sustainable energy generation.
Features:
- Covers all major bioenergy production pathways, such as biodiesel, bioethanol, biogas, hydrogen, and microbial fuel cells
- Combines nanotechnology, bioenergy, environmental science, and sustainability aspects
- Discusses advanced topics like artificial intelligence, machine learning, and novel nanomaterials (e.g., metal–organic frameworks and nanocellulose)
- Emphasizes reducing environmental impact and aligns with global sustainability initiatives like the United Nations Sustainable Development Goals (UNSDGs)
- Includes regional case studies such as biogas initiatives in Europe, biomass programs in India, and algal biofuel projects in Africa
This book is aimed at graduate students and researchers in environmental engineering, biotechnology, and materials science.
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