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Technical and economic evaluation of a solar thermal MgO electrolysis process for magnesium production

Journal Article · · Energy
Not Available
Sponsoring Organization:
USDOE
Grant/Contract Number:
AR0000421
OSTI ID:
1550286
Alternate ID(s):
OSTI ID: 1533757
OSTI ID: 22713015
Journal Information:
Energy, Journal Name: Energy Journal Issue: C Vol. 135; ISSN 0360-5442
Publisher:
ElsevierCopyright Statement
Country of Publication:
United Kingdom
Language:
English

References (9)

High-temperature stability of ternary nitrate molten salts for solar thermal energy systems journal November 1990
High temperature solar electrothermal processing—Zinc from zinc oxide journal April 1983
High temperature solar electrothermal processing—II. Zinc from zinc oxide journal December 1985
High temperature solar electrothermal processing—III. Zinc from zinc oxide at 1200–1675K using a non-consumable anode journal April 1988
A study of the use of Y2O3 doped ZrO2 membranes for solar electrothermal and solarthermal separations journal February 1988
Energy efficiency and carbon dioxide emissions reduction opportunities in the US iron and steel sector journal May 2001
The thermal electrolytic production of Mg from MgO: A discussion of the electrochemical reaction kinetics and requisite mass transport processes journal July 2016
An Experimental Study on a Sodium Loop-type Heat Pipe for Thermal Transport from a High-temperature Solar Receiver journal May 2015
A High-Flux Solar Furnace for Undergraduate Engineering Education and High-Temperature Thermochemistry Research
  • Duncan, G. Scott; Nudehi, Shahin; Palumbo, Robert
  • ASME 2014 8th International Conference on Energy Sustainability collocated with the ASME 2014 12th International Conference on Fuel Cell Science, Engineering and Technology, Volume 1: Combined Energy Cycles, CHP, CCHP, and Smart Grids; Concentrating Solar Power, Solar Thermochemistry and Thermal Energy Storage; Geothermal, Ocean, and Emerging Energy Technologies; Hydrogen Energy Technologies; Low/Zero Emission Power Plants and Carbon Sequestration; Photovoltaics; Wind Energy Systems and Technologies https://doi.org/10.1115/ES2014-6437
conference October 2014

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