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Author Rippy, Kerry, author.

Title Electrochemical mitigation of corrosion in concentrated solar power systems / Kerry Rippy.

Publication Info. [Golden, Colo.] : [National Renewable Energy Laboratory], [2021].

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Description 1 online resource (9 pages) : color illustrations.
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
Series NREL/PR ; 5500-81439
NREL/PR ; 5500-81439.
Note "ASES2021 Boulder, Colorado."
"August 4, 2021."
Bibliography Includes bibliographical references.
Note Description based on online resource, PDF version; title from cover (NREL, viewed on August 3, 2022).
Summary To make concentrating solar power (CSP) cost-competitive, the next generation of CSP plants will increase efficiency by operating at a higher temperature, which will require a new thermal energy storage material. One option for the thermal energy storage material is a ternary chloride salt that is stable at the temperatures required, but reacts easily with the atmosphere to form MgOHCl, a corrosive impurity. If left unchecked, this impurity will corrode the containment alloys, potentially leading to dangerous spills. We are working to design an electrochemical purification cell to remove MgOHCl from the molten chloride salt during CSP plant operation.
Subject American Solar Energy Society. Annual Conference.
Solar energy -- United States.
Electrochemistry -- United States.
Corrosion resistant materials -- United States.
Énergie solaire -- États-Unis.
Électrochimie -- États-Unis.
Matériaux résistant à la corrosion -- États-Unis.
Corrosion resistant materials
Electrochemistry
Solar energy
United States https://id.oclc.org/worldcat/entity/E39PBJtxgQXMWqmjMjjwXRHgrq
Indexed Term chloride salts
concentrating solar power
corrosion
electrochemistry
Added Author National Renewable Energy Laboratory (U.S.), issuing body.
Standard No. 0000-0001-7154-6543
Gpo Item No. 0430-P-09 (online)
Sudoc No. E 9.22:NREL/PR-5500-81439

 
    
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