Global Thermal Energy Storage Materials Market to Hit USD 12.94 Bn by 2036: China at 8.3% CAGR, Brenmiller Energy in Focus
The global thermal energy storage materials market is projected to grow from USD 6.34 billion in 2026 to USD 12.94 billion by 2036, expanding at a 7.40% CAGR as renewable energy integration and industrial decarbonization increase demand for materials that store and release heat.
The market was valued at USD 5.90 billion in 2025. The forecast represents an incremental opportunity of USD 6.60 billion between 2026 and 2036. Concentrated solar power plants, district heating networks, commercial HVAC systems, and industrial process heat applications are among the areas driving demand for thermal storage materials that can shift heat generation and consumption.
The immediate question for energy operators is where storage materials can deliver dependable lifecycle economics. Fact.MR analysis identifies storage energy density, thermal cycling durability, and cost per megawatt-hour stored as important competitive variables, while power generation is projected to account for 34.0% of the end-use segment in 2026.
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Market growth follows renewable integration needs
Thermal energy storage materials absorb, retain, and release heat through sensible heating, latent heat phase transitions, or thermochemical reactions. These materials support renewable energy time-shifting while helping industrial facilities replace fossil-fuel combustion with stored renewable or electrified process heat.
Sensible heat storage materials hold 52.0% of the material type segment in 2026, reflecting the commercial maturity and cost positioning of molten salt, concrete, and water-based systems. In 2025, sensible heat storage is projected to represent 51.7% of the overall market.
Molten salt systems account for 46% of sensible heat storage segment revenue, supported by utilization in concentrated solar power facilities across China, India, and Spain.
Power generation represents 33.8% of market demand in 2025. Within this segment, concentrated solar power plants account for 39% of revenue globally. Industrial processes hold 24.9% and record a 7.8% CAGR, supported by industrial heat recovery and decarbonization initiatives.
Thermal energy storage materials are energy infrastructure materials that absorb, retain, and release heat for later use across power generation, buildings, industrial processes, and transportation applications.
China and India lead country-level growth
China is projected to register an 8.3% CAGR through 2036, the highest among the countries covered by Fact.MR. Growth is associated with concentrated solar power deployment, carbon-neutrality initiatives, industrial decarbonization investment, and renewable energy integration.
India follows at an 8.1% CAGR. Expanding renewable infrastructure, industrial process heat requirements, smart city projects, and domestic storage capabilities are supporting market development.
Brazil is projected to expand at 7.4%, while the USA records 7.2%. Germany follows at 7.0%, the UK at 6.9%, and Japan at 6.7%.
Europe's thermal energy storage materials market is projected to increase from USD 1.5 billion in 2026 to USD 3.1 billion by 2036 at a 7.3% CAGR. Germany is expected to retain the largest country share in the region, accounting for 32.4% in 2026 and 33.2% in 2036.
Procurement shifts toward lifecycle performance
Shambhu Nath Jha, Principal Consultant for Energy and Utilities at Fact.MR, said, “In my analysis, I have observed that the thermal energy storage materials market is bifurcating between proven sensible heat systems and emerging high-density alternatives.”
He added that buyers are increasingly focused on lifecycle economics, noting that “the decisive procurement variable for utility and industrial buyers is no longer material cost per kilogram but levelized cost of storage per MWh over a 25-year operational lifetime.”
The analysis identifies bankable performance warranties and guaranteed thermal cycling durability data as increasingly relevant to project finance-backed deployments. Phase-change material developers are also expected to focus on encapsulation technologies capable of preventing degradation over 10,000-plus thermal cycles.
One notable market detail is Brenmiller Energy Ltd.'s reported 16.8% global share. The company is identified as a leading supplier through its bGen modular thermal battery system, which targets industrial and power generation applications.
Competitive landscape centers on thermal performance
The competitive environment includes Brenmiller Energy Ltd., Cryogel Thermal Energy Systems, Antora Energy, CALMAC, DN Tanks, LUMENION GmbH, MGA Thermal, Rondo Energy, Heliac A/S, and ENERGYNEST AS.
Brenmiller Energy Ltd. holds a reported 16.8% global share, followed by Cryogel Thermal Energy Systems at 13.2% and Antora Energy at 11.9%. CALMAC accounts for 10.6%, while DN Tanks holds 9.4%.
Companies are investing in energy density improvements, modular deployment, thermochemical storage, digital monitoring, and technical support. Reference projects with documented MWh-level performance may also influence procurement as utilities and industrial buyers assess newer storage technologies.
Report scope and market outlook
The Fact.MR assessment covers sensible heat, latent heat, and thermochemical storage materials across power generation, building and construction, industrial processes, transportation, and other applications. Electrochemical batteries, electrical capacitor storage, pumped hydro, and downstream power generation equipment are excluded.
The research incorporates primary discussions with utility-scale storage developers, industrial heat engineers, and concentrated solar power operators, alongside desk research using energy deployment records and project databases.
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About Fact.MR
Fact.MR is a market research and consulting firm providing industry intelligence, market sizing, forecasting, competitive analysis, and strategic insights across global markets. Its research combines primary interviews, secondary research, market modeling, and data validation to support business and investment decisions.
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