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Advances in Pyrometallurgy: The Minerals, Metals & Materials Series

Editat de Camille Fleuriault, Joalet D. Steenkamp, Dean Gregurek, Jesse F. White, Quinn G. Reynolds, Phillip J. Mackey, Susanna A. C. Hockaday
en Limba Engleză Paperback – 12 feb 2024
Carbon intensive industries are at a crossroads. Long-term manufacturing plans using pyrometallurgical processes all include decarbonization levers: we must solve the problem of fossil-based reduction and fossil-based power generation processes for metals production. This collection explores innovative and diverse strategies for the enablement of low carbon industries in the high-temperature metals and materials processing fields. In particular, the following processes are investigated: ·       Electrolysis and electrification of metallurgical processes
·       High-temperature electrolytic routes for metal and alloy production
·       Use of hydrogen and other alternative non-carbonaceous reducing agents ·       Biofuels and other non-fossil reagents for metallurgical applications
·       Direct andindirect use of solar energy in high-temperature processing
·       Energy efficiency and waste heat recovery concepts applied to pyrometallurgical operations
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Specificații

ISBN-13: 9783031226366
ISBN-10: 3031226364
Pagini: 320
Ilustrații: XV, 303 p. 156 illus., 143 illus. in color.
Dimensiuni: 155 x 235 x 17 mm
Greutate: 0.55 kg
Ediția:1st ed. 2023
Editura: Springer
Colecția The Minerals, Metals & Materials Series
Seria The Minerals, Metals & Materials Series

Locul publicării:Cham, Switzerland

Notă biografică

Camille Fleuriault, Eramet Norway; Joalet Steenkamp, XPS Glencore; Dean Gregurek, RHI Magnesita; Jesse F. White, KTH Royal Institute of Technology; Quinn G. Reynolds, Mintek; Phillip J. Mackey, P.J. Mackey Technology, Inc.; Susanna Aletta Carolina Hockaday, Gam Aesa

Textul de pe ultima copertă

Carbon intensive industries are at a crossroads. Long-term manufacturing plans using pyrometallurgical processes all include decarbonization levers: we must solve the problem of fossil-based reduction and fossil-based power generation processes for metals production. This collection explores innovative and diverse strategies for the enablement of low carbon industries in the high-temperature metals and materials processing fields. In particular, the following processes are investigated: ·       Electrolysis and electrification of metallurgical processes
·       High-temperature electrolytic routes for metal and alloy production
·       Use of hydrogen and other alternative non-carbonaceous reducing agents ·       Biofuels and other non-fossil reagents for metallurgical applications
·       Direct and indirect useof solar energy in high-temperature processing
·       Energy efficiency and waste heat recovery concepts applied to pyrometallurgical operations