Description
Advanced Functional Solid Catalysts for Biomass Valorization presents the basic concepts in catalysis (homogeneous, heterogeneous, and enzymatic) and the properties of various kinds of heterogeneous solid catalysts, including their structure, porosity, particle size, BET surface area, acid-base, and redox properties. Useful information about biorefineries, types of biomass feedstocks, their structures and properties as well as about several potential catalytic routes for biomass upgrading to useful fuels and chemicals is provided in this book. Importantly, this book covers the most recent developments toward functionalization of various solid catalysts, optimization of catalysts' properties, developing cascade catalytic strategies, exploring reaction kinetics/mechanisms, and evaluating catalysts' stability/reusability during biomass upgrading. Current challenges and opportunities for the future biorefineries as well as for the design of advanced functional solid catalysts are critically discussed.- Describes catalysis as a promising technology for the development of eco-friendly and economically viable strategies for several important energy and environmental applications.- Covers heterogeneous solid catalysts because of their versatile benefits in terms of catalysts' synthesis, production cost, stability, and reusability as compared to homogeneous liquid catalysts.- Provides promising strategies for the design of new catalytic materials, such as carbon materials, metal–organic frameworks, zeolites, and mesoporous silicas.- Describes functional solid catalysts for developing one-pot cascade processes for efficient biomass valorization and other vital chemical transformations.
Table of Contents
1. The role of catalysis in green synthesis of chemicals for sustainable future2. Production techniques of functional solid catalysts3. Properties of functional solid catalysts and their characterization using various analytical techniques4. Classification, characterization, and properties of edible and non-edible biomass feedstocks5. Heteroatom modified carbon nanomaterials as metal-free catalysts for lignocellulosic carbohydrate valorization6. Zeolite-related catalysts for biomass-derived sugar valorization7. Mesoporous silica-related catalysts for biomass valorization8. Metal-organic frameworks-based catalysts for biomass valorization9. Functional magnetic catalysts for the synthesis of biomass-derived fuels and chemicals10. Challenges and future prospects in heterogeneous catalysis for biorefinery technologies
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