NREL Investigates Coatings Needed for Concentrating Solar Power
Next-generation concentrating solar power (CSP) plants require high-temperature fluids, like molten salts, in the range of 550-750 degrees Celsius to store heat and generate electricity. At those high temperatures, however, the molten salts eat away at common alloys used in the heat exchangers, piping, and storage vessels of CSP systems. New research at the U.S. Department of Energy's National Renewable Energy Laboratory (NREL) is aimed at mitigating corrosion levels in CSP plants with nickel-based coatings.
"We are very excited about the potential implications of this research to provide corrosion-resistant coatings for CSP applications that could improve the economic viability of these systems," said Johney Green, associate laboratory director for mechanical and thermal engineering sciences.
CSP plants with low-cost thermal storage enable facilities to deliver electricity whenever it is needed, helping to support grid reliability. Molten salts are commonly used for both the heat-transfer fluid and thermal energy storage because they can withstand high temperatures and retain the collected solar heat for many hours.
To commercially use molten salt mixtures containing sodium chloride, potassium chloride, and magnesium chloride, the corrosion rate in the storage tanks must be slow—less than 20 micrometers per year—so that a concentrating solar power plant can achieve a 30-year life.
Bare stainless steel alloys tested in a molten chloride corroded as fast as 4,500 micrometers per year. The solution to the corrosion problem could lie in research conducted by NREL's Judith Gomez-Vidal and published in the npj Materials Degradation journal article, "Corrosion Resistance of MCrAlX Coatings in a Molten Chloride for Thermal Storage in Concentrating Solar Power Applications."
Gomez-Vidal applied different types of Nickel-based coatings, which are commonly used for reducing oxidation and corrosion, to stainless steel. One such coating, with the chemical formula NiCoCrAlYTa, showed the best performance so far. It limited the corrosion rate to 190 micrometers per year—not yet at the goal but a large improvement compared to the uncoated steel by a 96% reduction in the corrosion rate. That particular coating was pre-oxidized over a 24-hour period, during which a uniform and dense layer of aluminum oxide was formed and served to further protect the stainless steel from corrosion.
"The use of surface protection is very promising to mitigate corrosion in molten salts in particular to those surfaces exposed to chlorine-containing vapor," said Gomez-Vidal, who holds a Ph.D. in metallurgical and materials engineering. "However, the rates of corrosion are still considerably high for CSP. This effort highlights the relevance of testing materials durability in solar power applications. More R&D is needed to achieve the target corrosion level needed, which could include the synergy of combining surface protection with chemical control of the molten salt and the surrounding atmosphere."
Additional tests will require evaluation of the coatings under thermal cycling and the introduction of oxygen-containing atmospheres to increase the oxidation potential of the systems. The addition of oxygen ensures the formation of protective scales that could reform in the presence of oxygen if cracks appear during operation. Gomez-Vidal has recently published other work in which such aluminum oxide layers were able to grow and remained adhered to the surface in the presence of AIR during thermal cycling of samples
Looking for chemical products? Let suppliers reach out to you!
2026-06-26
-
Paint & Coating Industry Overview Mar.2025
This issue provides analysis of the European and German coatings markets, as well as the latest monthly reports and price trends of coatings-related chemical raw materials. Support online permanent download.Published in: Mar.2025
Trade Alert
Delivering the latest product trends and industry news straight to your inbox.
(We'll never share your email address with a third-party.)
Related News
-
BASF Coatings and Li Auto Cooperate to Develop Low-Carbon Automotive Coatings
-
Paints and Coatings Market Worth $212B by 2026: MarketsandMarkets
-
European Coatings Show 2023
-
Prices of coatings, titanium dioxide, and emulsions have risen across the board!
-
Analyze the reforms facing the development of coatings
-
Machine-Learning Research Could Help Develop Tougher Coatings
-
Optimised silica-based hybrid coatings for the protection of aluminum
-
BCF: shortage of raw materials may affect the availability of food packaging
-
2020 architectural waterproof coatings are developing in this direction
-
Paint and Coatings Industry Provides Critical Support During Pandemic
Recommend Reading
-
Breakthrough in Materials Technology 200μm Thick Films Achieve Unprecedented Precision
-
Dow to Shut Down 3 European Facilities Impacting 800 Jobs
-
Canada Exports First LNG Shipment to Asia Marks $29.4 Billion Milestone
-
Santos Signs LNG Deal with QET Awaits $18.7 Billion Takeover Bid
-
China Approves Propylene and Benzene Futures and Options Ensuring Stability in Key Markets
-
The Golden September Lacks Luster, Phthalic Anhydride Prices Stabilize at the Bottom in September
-
Phosphoric Acid Market Prices Slightly Up (2.1–2.6)
-
Ammonium Sulfate Market Shows Strong Increase (1.5-1.12)
-
Raw material prices rise, this week phthalic anhydride prices in China have significantly increased
-
Policy Buffer Period Triggers “Export Rush,” Lithium Carbonate Prices Surge 7.25% in a Single Day