Cantitate/Preț
Produs

Advances in CO2 Utilization: Green Chemistry and Sustainable Technology

Editat de Guoliang Zhang, Annemie Bogaerts, Jingyun Ye, Chang-Jun Liu
en Limba Engleză Hardback – 28 mar 2024

Reținem, din primele capitole ale acestui volum, accentul pus pe studiile de caz privind hidrogenarea termocatalitică a dioxidului de carbon pentru obținerea de combustibili lichizi și substanțe chimice de platformă, precum metanolul. Advances in CO2 Utilization servește drept resursă tehnică de ultimă oră, documentând tranziția CO2 de la un deșeu atmosferic la o materie primă esențială în chimia sustenabilă. Găsim în această lucrare o analiză riguroasă a metodelor de activare a moleculei inerte de dioxid de carbon, explorând o gamă vastă de tehnologii de conversie, de la procese electrocatalitice și foto-termice până la abordări bio-catalitice și utilizarea plasmei.

Notăm cu interes structura progresivă a cărții: volumul debutează cu fundamentalele conversiei prin catalizatori de tip MOF (Metal-Organic Frameworks), avansează spre mecanismele de reformare cu alcani și culminează cu aplicații industriale la scară largă, inclusiv sinteza polimerilor derivați din CO2. O componentă distinctivă o reprezintă integrarea studiilor teoretice care explică sinergia dintre reacție și transferul de masă și căldură, oferind cititorului nu doar date experimentale, ci și modele predictive pentru proiectarea catalizatorilor.

Această ediție din 2024 reprezintă o alternativă la Transformation and Utilization of Carbon Dioxide pentru cursurile de chimie fizică și ingineria mediului, având avantajul de a include cele mai recente date despre catalizatorii cu atom unic și intensificarea proceselor de preparare. În timp ce Carbon Dioxide Reduction through Advanced Conversion and Utilization Technologies se concentrează masiv pe aspectele electrochimice, volumul editat de Guoliang Zhang și echipa sa oferă o perspectivă mai largă asupra integrării cu sursele de energie regenerabilă.

Citește tot Restrânge

Din seria Green Chemistry and Sustainable Technology

Preț: 107860 lei

Preț vechi: 131536 lei
-18%

Puncte Express: 1618

Carte disponibilă

Livrare economică 07-21 mai


Specificații

ISBN-13: 9789819988211
ISBN-10: 9819988217
Pagini: 320
Ilustrații: XII, 307 p. 155 illus., 83 illus. in color.
Dimensiuni: 160 x 241 x 22 mm
Greutate: 0.71 kg
Ediția:2024
Editura: Springer
Colecția Green Chemistry and Sustainable Technology
Seria Green Chemistry and Sustainable Technology

Locul publicării:Singapore, Singapore

De ce să citești această carte

Recomandăm această lucrare cercetătorilor și studenților de la master sau doctorat care doresc să înțeleagă arhitectura sistemelor de captare și utilizare a carbonului (CCU). Cititorul câștigă o viziune clară asupra modului în care cataliza avansată și teoria funcționalei de densitate pot optimiza producția de combustibili verzi și polimeri, oferind soluții concrete pentru decarbonizarea industrială și economia circulară.


Despre autor

Volumul este coordonat de un grup de experți internaționali, printre care se numără Guoliang Zhang și Annemie Bogaerts. Annemie Bogaerts este o figură centrală în cercetarea plasmei, conducând grupul PLASMANT de la Universitatea din Antwerp, specializându-se în modelarea proceselor chimice pentru aplicații de mediu. Chang-Jun Liu este recunoscut pentru contribuțiile sale în domeniul catalizei avansate și al proceselor de activare a gazelor cu efect de seră. Expertiza colectivă a editorilor acoperă spectrul complet de la chimia teoretică la implementarea industrială a tehnologiilor verzi.


Cuprins

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.



Notă biografică

Dr. Guoliang Zhang is Distinguished Professor at Zhejiang University of Technology, works as Dean of Center for Membrane and Water Science & Technology, and is Director of Institute of Oceanic and Environmental Chemical Engineering. He has published 200 refereed journal papers including papers in Nat. Commun., Angew. Chem. Int. Ed., Adv. Funct. Mater. and J. Membrane. Sci. He has edited eight books and 96 issued patents with several of which have been commercialized. He serves as Consultant for major companies and as Boards of Managing Committee Member of IWA Working Group on Alternative Water Resources and National Education Advisory Group on Environmental Engineering. He also serves as Editorial Board Member of Advanced Membranes, Current Chinese Science, and Recent Patents on Engineering.
Prof. Annemie Bogaerts obtained her Ph.D. in Chemistry in 1996, from the University of Antwerp in Belgium. She became Lecturer of physical chemistry in 2003, at this university, and is Full Professor since 2012. She became Selected Member of the Academia Europaea since 2011 and Selected Member of the Royal Flemish Academy of Belgium for Sciences and the Arts since 2012. She is Founder and Head of the interdisciplinary research group PLASMANT, which counts more than 50 researchers. The research activities of her group include experiments and modeling of plasma chemistry, plasma reactor design, and plasma–surface interactions (where the surface can be catalyst, liquid, or living cells), for various applications, with most emphasis on green chemistry and medicine. In recent years, special attention has been paid to CO2 conversion by plasma and plasma catalysis.Dr. Jingyun Ye is currently Assistant Professor in the Department of Chemistry & Biochemistry at Duquesne University. She received her Ph.D. degree from Tianjin University in 2014. After that, she worked at the University of Pittsburg and the University of Minnesota as Post-doctor before she joined Clarkson University in 2020. She did the pioneering theoretical studies on In2O3 for CO2 hydrogenation to methanol and initiated the new research topics on In2O3-based catalyst for CO2 hydrogenation. She is also one of the first scientists who worked on MOFs for CO2 capture and conversion. Her research interest is to precisely design multi-functional materials and efficient catalysts for sustainable energy conversion and storage.Dr. Chang-jun Liu is Chang Jiang Distinguished Professor and Fellow of the Royal Society of Chemistry. His research interests include CO2 utilization, natural gas conversion, plasma nanoscience, and 3D printing. He is in the list of highly cited Chinese authors (Chemical Engineering) by Elsevier since 2014. He served as 2010 Program Chair of Fuel Chemistry Division of American Chemical Society and Chair of 10th International Conference on CO2 Utilization. He is in Editorial Board of Applied Catalysis B, Journal of CO2 Utilization, and Chinese Journal of Catalysis. Heis in Advisory Board of Greenhouse Gases: Science & Technology.

Textul de pe ultima copertă

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.

Caracteristici

Highlights practical applications of CO2 utilization technologies Presents innovations in CO2 activation Is edited by internationally renowned researchers