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Essential reference for researchers and experts in industry highlighting the rapidly growing field of hydroxyapatite-based catalysts and their application in various chemical processes. Hydroxyapatite (Ca 10 (PO 4 ) 6 (OH) 2 ) is the main mineral component of human and animal bones. It is largely applied in the field of biomaterials due to its biocompatibility. Recently, hydroxyapatite-based materials have especially gained a lot of attention by researchers in catalysis, as they are versatile and have shown precious properties of a good catalyst and catalyst support such as excellent…mehr
Essential reference for researchers and experts in industry highlighting the rapidly growing field of hydroxyapatite-based catalysts and their application in various chemical processes.
Hydroxyapatite (Ca10(PO4)6(OH)2) is the main mineral component of human and animal bones. It is largely applied in the field of biomaterials due to its biocompatibility. Recently, hydroxyapatite-based materials have especially gained a lot of attention by researchers in catalysis, as they are versatile and have shown precious properties of a good catalyst and catalyst support such as excellent ion-exchange capacity, high porosity, very low water solubility, controlled basicity/acidity, and good thermal stability at high temperatures.
Design and Applications of Hydroxyapatite-Based Catalysts gives a detailed overview of the synthesis, characterization, and use of hydroxyapatite-based materials in catalysis. It covers synthetic hydroxyapatites (from pure chemicals or waste), natural apatites and materials from eggshells and animal bones. The application of hydroxyapatite-based catalysts in selective oxidation, deoxygenation, selective hydrogenation, dehydrogenation reactions, organic synthesis, as well as reforming processes and production of energy carriers is reviewed. Moreover, electrocatalysis and photocatalysis using hydroxyapatite-based materials are discussed. Kinetic and mechanism studies of various chemical pro-cesses over hydroxyapatite-based catalysts are also presented.
This is the first book solely dedicated to hydroxyapatite-based materials and their use in catalysis.
Covers synthesis and characterization, surface and structure studies, kinetic and mechanism aspects, and various applications in heterogeneous catalysis, electrocatalysis, and photocatalysis.
Aimed at further stimulating research in the field Design and Applications of Hydroxyapatite-Based Catalysts is an indispensable source-of-information for researchers in academia and industry working in catalysis.
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Autorenporträt
Doan Pham Minh is Associate Professor at IMT Mines Albi in France. Since 2020, he is Deputy Director of the RAPSODEE Research Center (UMR CNRS 5302). His current research focuses on the valorization of biomass, bio-waste, and industrial co-products into energy carriers, i.e. syngas, hydrogen, biomethane, biofuels, and useful materials, i.e. adsorbents, catalysts, and refractory ceramics applied in thermo-conversion processes, catalytic processes and thermal energy storage.
Inhaltsangabe
Chapter 1. Introduction to Hydroxyapatite-Based Materials in Heterogeneous Catalysis Chapter 2. Synthesis and Characterization of Hydroxyapatite and Hydroxyapatite-Based Catalysts Chapter 3. Structure and Surface Study of Hydroxyapatite-Based Materials: Experimental and Computational Approaches Chapter 4. Hydroxyapatite-Based Catalysts: Influence of the Molar Ratio of Ca to P Chapter 5. Kinetics and Mechanisms of Selected Reactions over Hydroxyapatite-Based Catalysts Chapter 6. Aerobic Selective Oxidation of Alcohols and Alkanes over Hydroxyapatite-Based Catalysts Chapter 7. Selective Hydrogenation and Dehydrogenation Using Hydroxyapatite-Based Catalysts Chapter 8. Reforming Processes Using Hydroxyapatite-Based Catalysts Chapter 9. Hydroxyapatite-Based Catalysts for the Production of Energetic Carriers Chapter 10. Hydroxyapatite-Based Catalysts in Organic Synthesis Chapter 11. Electrocatalysis and Photocatalysis Using Hydroxyapatite-Based Materials Chapter 12. Magnetic Structured Hydroxyapatites and their Catalytic Applications Chapter 13. Materials from Eggshells and Animal Bones and their Catalytic Applications Chapter 14. Natural Phosphates and their Catalytic Applications
Chapter 1. Introduction to Hydroxyapatite-Based Materials in Heterogeneous Catalysis Chapter 2. Synthesis and Characterization of Hydroxyapatite and Hydroxyapatite-Based Catalysts Chapter 3. Structure and Surface Study of Hydroxyapatite-Based Materials: Experimental and Computational Approaches Chapter 4. Hydroxyapatite-Based Catalysts: Influence of the Molar Ratio of Ca to P Chapter 5. Kinetics and Mechanisms of Selected Reactions over Hydroxyapatite-Based Catalysts Chapter 6. Aerobic Selective Oxidation of Alcohols and Alkanes over Hydroxyapatite-Based Catalysts Chapter 7. Selective Hydrogenation and Dehydrogenation Using Hydroxyapatite-Based Catalysts Chapter 8. Reforming Processes Using Hydroxyapatite-Based Catalysts Chapter 9. Hydroxyapatite-Based Catalysts for the Production of Energetic Carriers Chapter 10. Hydroxyapatite-Based Catalysts in Organic Synthesis Chapter 11. Electrocatalysis and Photocatalysis Using Hydroxyapatite-Based Materials Chapter 12. Magnetic Structured Hydroxyapatites and their Catalytic Applications Chapter 13. Materials from Eggshells and Animal Bones and their Catalytic Applications Chapter 14. Natural Phosphates and their Catalytic Applications
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