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Full Description
This new book is one of the first books on waste biomass valorization utilizing oleaginous
microbes, exploring the conversion of waste materials into valuable products, such as chemicals,
materials, and fuels. It discusses the innovation, design, and impact of oleaginous microbial
regimes toward the utilization of waste biomass for value-added microbial products. It places
special emphasis on oleaginous microbial biosynthetic pathways and their bioengineering
aspects for improving the generation of value-added biomolecules for sustainable biorefineries.
Key features:
• Discusses the significance of oleaginous microbes on value-added biomolecule production
• Looks at oleaginous microbial solutions for agroindustrial wastes, industrial waste, agroforest
residues, and electronic waste
• Explores the role of oleaginous microbes in bioenergy generation and other products
Contents
1. Oleaginous Microbial Regimes Towards Utilization of Waste Biomass for Value-Added Products. 2. Significance of Oleaginous Microbes on Value-Added Biomolecule Production. 3. Oleaginous Microbes for Industrial Waste Degradation. 4. Significance of Process Parameter Optimization for Waste Biomass Degradation and Valorization. 5. Valorization of Agro-industrial Wastes for Production of Microbial Oils from Oleaginous Microbes. 6. Oleaginous Microbes for the Production of Value-Added Products from Agroforest Residues. 7. Valorization of Agroforestry Wastes for Bioenergy Generation. 8. General Perspective on High Value-Added Product Generation with Special Emphasis on NPK Biofertilizer from Oleaginous Microbes. 9. Technological Views on Electronic Waste, Recycling, and Resource Recovery. 10. General Perspectives on Lignocellulosic Biomass-Degrading Enzymes from Oleaginous Microbes. 11. Bioengineering of Oleaginous Microorganisms for Biosynthesis of Fuels and Value-Added Biomolecules. 12. Scaling-Up Studies on Lignocellulosic Waste Biomass Degradation Using the Oleaginous Microbial System. 13. Downstream Processing Application on Waste Valorization Using Oleaginous Microbes for NPK Biofertilizer Generation. 14. Downstream Processing Applications on Waste Valorization for Value-Added Biomolecule Generation.