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REWAS 2022: Energy Technologies and CO2 Management (Volume II)


REWAS 2022: Energy Technologies and CO2 Management (Volume II)


The Minerals, Metals & Materials Series

von: Fiseha Tesfaye, Lei Zhang, Donna Post Guillen, Ziqi Sun, Alafara Abdullahi Baba, Neale R. Neelameggham, Mingming Zhang, Dirk E. Verhulst, Shafiq Alam

213,99 €

Verlag: Springer
Format: PDF
Veröffentl.: 10.02.2022
ISBN/EAN: 9783030925598
Sprache: englisch
Anzahl Seiten: 176

Dieses eBook enthält ein Wasserzeichen.

Beschreibungen

<div>The reliance on fossil fuels for energy is unsustainable and has released an unprecedented</div><div>amount of carbon dioxide into our atmosphere. The continual research and development</div><div>effort into clean and sustainable energy technologies is of paramount importance to</div><div>ensure the responsible progress of human civilization and innovations. This collection,</div><div>with authors representing industry, government, and academia, focuses on energy</div>efficient technologies including innovative ore beneficiation, smelting technologies,<div>recycling and waste heat recovery, and emerging novel energy technologies. The</div><div>symposium also covers various technological aspects of sustainable energy ecosystems,</div><div>processes that improve energy efficiency and reduce thermal emissions.</div><div>Topics include:</div><div><br></div>• Renewable Energy and Combustion Technologies<div><br></div><div>• Energy Efficiency, Decarbonization and CO2 Management</div><div><br></div><div>• Thermal Management and Hydrogen Technology</div>
Development of a Thermodynamic Model for Chromates, Molybdates, Tungstates, and Vanadates Involved in the Corrosion of Steels (Fe, Cr, Ni, Mo, W, and V) at High Temperatures in Atmospheres Containing O–H–S–C–Cl and Alkaline Salts.- Copper in Biomass Fuels and Its Effect on Combustion Processes.- Synthesis Methods for Nanoparticle Morphology Control in Energy Applications.- Silicon Production from SiO Gas via Gas-Phase Reactions.- Macroscopic Modeling and Phase Field Modeling of Solar Grade Silicon by Molten Salt Electrolysis.- Design of a Molten Salt Metal-Air Battery with High-Energy Density.
Fiseha Tesfaye, Abo Akademi University; Lei Zhang, University of Alaska Fairbanks; Donna P. Guillen, Idaho National Laboratory; Ziqi Sun, Queensland University of Technology; Alafara Abdullahi Baba, University of Ilorin; Neale R. Neelameggham, IND LLC; Mingming Zhang, Wood Mackenzie;&nbsp;<div>Dirk E. Verhulst, Consultant, Extractive Metallurgy and Energy Efficiency; Shafiq Alam, University of Saskatchewan</div><div><br></div>
The reliance on fossil fuels for energy is unsustainable and has released an unprecedented<div>amount of carbon dioxide into our atmosphere. The continual research and development</div><div>effort into clean and sustainable energy technologies is of paramount importance to</div><div>ensure the responsible progress of human civilization and innovations. This collection,</div><div>with authors representing industry, government, and academia, focuses on energy</div><div>efficient technologies including innovative ore beneficiation, smelting technologies,</div><div>recycling and waste heat recovery, and emerging novel energy technologies. The</div><div>symposium also covers various technological aspects of sustainable energy ecosystems,</div><div>processes that improve energy efficiency and reduce thermal emissions.</div><div>Topics include:</div><div><br></div><div>• Renewable Energy and Combustion Technologies</div><div><br></div><div>• Energy Efficiency, Decarbonization and CO2 Management</div><div><br></div><div>• Thermal Management and Hydrogen Technology</div>

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