Description
Waste Derived Catalysts: Sustainable Materials for Energy and Environment explores the significant potential of waste materials as catalyst precursors for clean energy generation and environmental remediation. The book simultaneously addresses the problems of waste management, resource depletion, and environmental pollution while promoting the transition towards a sustainable and cleaner energy future. It provides a comprehensive overview of the latest advancements, methodologies, and applications of waste derived catalysts in the fields of energy and environment and as such it serves as a valuable resource for researchers, scientists, engineers, policymakers, and students who are interested in exploring the potential of waste materials as catalyst precursors and their implications in sustainable energy conversion and environmental remediation. The book covers a wide range of waste streams, including agricultural and biomass waste, industrial and municipal waste, and electronic waste, shedding light on their conversion into catalysts through appropriate processing techniques. Furthermore, the book investigates various clean energy technologies, such as hydrogen production, fuel cells, carbon capture and utilization, and renewable fuel synthesis, where waste derived catalysts have shown promise.- Provides comprehensive coverage of waste derived catalysts covering various waste streams- Offers applications of waste derived catalysts in energy production and environmental remediation with case studies and practical insights- Emphasizes environmental and sustainability aspects of waste derived catalysts- Establishes routes to real time utilization of conductive polymers in wastewater treatment at commercial scale
Table of Contents
1. Introduction and fundamentals of waste derived catalystsPART I: WASTE MATERIALS AS CATALYST PRECURSORS2. Agricultural and Biomass Waste Derived Catalysts3. Industrial and Municipal Waste Derived Catalysts Focusing on industrial and municipal waste4. Electronic Waste Derived CatalystsPART II: WASTE DERIVED CATALYSTS FOR ENERGY PRODUCTION5. Waste Derived Catalysts for Fossil Fuel Utilization6. Waste Derived Catalysts for Renewable Energy Generation Focusing on renewable energy7. Waste Derived Catalysts for Energy Storage Systems Addressing the need for efficient energy storage8. Waste Derived Catalysts for Carbon Capture and Utilization Addressing the challenge of carbon capture and utilizationPART III: WASTE DERIVED CATALYSTS FOR ENVIRONMENTAL APPLICATIONS9. Waste Derived Catalysts for Soil and Sediment Remediation Addressing the remediation of contaminated soils and sediments10. Waste Derived Catalysts for Waste Treatment and Valorization11. Waste Derived Catalysts for Air Pollution Control Focusing on air pollution mitigation12. Waste Derived Catalysts for Water Treatment and RemediationPART IV: CASE STUDIES FOR WASTE DERIVED CATALYSTS13. CASE STUDIES-I14. CASE STUDIES-II15. CASE STUDIES-IIIPART V: SUSTAINABILITY AND FUTURE PERSPECTIVES16. Circular economy, Life Cycle Assessment and Sustainability of Waste Derived Catalysts17. Commercialization and Industrial Applications of Waste Derived Catalysts
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