A termék adatai:

ISBN13:9789819988211
ISBN10:9819988217
Kötéstípus:Keménykötés
Terjedelem:307 oldal
Méret:235x155 mm
Nyelv:angol
Illusztrációk: 72 Illustrations, black & white; 83 Illustrations, color
691
Témakör:

Advances in CO2 Utilization

From Fundamentals to Applications
 
Kiadás sorszáma: 2024
Kiadó: Springer
Megjelenés dátuma:
Kötetek száma: 1 pieces, Book
 
Normál ár:

Kiadói listaár:
EUR 181.89
Becsült forint ár:
75 056 Ft (71 482 Ft + 5% áfa)
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60 045 (57 186 Ft + 5% áfa )
Kedvezmény(ek): 20% (kb. 15 011 Ft)
A kedvezmény érvényes eddig: 2024. június 30.
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  példányt

 
Rövid leírás:

This book presents the current status of CO2 utilization from fundamental studies to industrial tests. With the development of renewable energy, carbon dioxide will become an important feedstock for the synthesis of fuels and chemicals, and CO2 utilization must be the final solution for the carbon dioxide issues. This book discusses the effective techniques for activating inert carbon dioxide and various approaches for CO2 conversion, such as homogeneous catalytic conversion, homogeneous catalytic conversion, heterogeneous catalytic conversion, photocatalytic conversion, electrocatalytic conversion, photo-thermal catalytic conversion, plasma-chemical/plasma-catalytic conversion, and bio-catalytic conversion. It also addresses the electronic and geometric structural effects of the supported catalyst on the activity and selectivity of the conversion of carbon dioxide. The significant effects from single atom catalyst to nanoparticle are also discussed, and process intensification in catalyst preparation and reaction is highlighted. Furthermore, this book contains chapters with theoretical studies, including functional theory, which has played an important role in the catalyst design, the explanation of the reaction mechanism, and in understanding the synergy of reaction and heat and mass transfer. Given its scope, this book appeals to a wider readership, especially for researchers in the field of CO2 utilization.

Hosszú leírás:
This book presents the current status of CO2 utilization from fundamental studies to industrial tests. With the development of renewable energy, carbon dioxide will become an important feedstock for the synthesis of fuels and chemicals, and CO2 utilization must be the final solution for the carbon dioxide issues. This book discusses the effective techniques for activating inert carbon dioxide and various approaches for CO2 conversion, such as homogeneous catalytic conversion, homogeneous catalytic conversion, heterogeneous catalytic conversion, photocatalytic conversion, electrocatalytic conversion, photo-thermal catalytic conversion, plasma-chemical/plasma-catalytic conversion, and bio-catalytic conversion. It also addresses the electronic and geometric structural effects of the supported catalyst on the activity and selectivity of the conversion of carbon dioxide. The significant effects from single atom catalyst to nanoparticle are also discussed, and process intensification in catalyst preparation and reaction is highlighted. Furthermore, this book contains chapters with theoretical studies, including functional theory, which has played an important role in the catalyst design, the explanation of the reaction mechanism, and in understanding the synergy of reaction and heat and mass transfer. Given its scope, this book appeals to a wider readership, especially for researchers in the field of CO2 utilization.
Tartalomjegyzék:
CO2 conversion via MOF-based catalysts.- Photo-thermo catalytic conversion of CO2: What, why, how and future perspectives.- Thermocatalytic CO2 Hydrogenation to Liquid Fuels.- Status of catalyst development for CO2 hydrogenation to platform chemicals CH3OH and CO.- CO2 Methanation over the Supported Ni Catalysts: The Structural Effect.- CO2 Reforming with Alkanes.- CO2 electrocatalytic conversion: outlooks, pitfalls and scientific gaps.- Bio-conversion of CO2 into valuables.- CO2-sourced polymers: synthesis, property, application.- Plasma-based CO2 conversion.- Transition Metal-Promoted Carboxylation of Unsaturated Compounds with CO2.- Large Scale Recycling of Carbon:Carbon Dioxide as Source of Carbon.