Industrial Applications
Delivering 300-550ºC process heat exactly where and when it’s needed
High to Ultra-high Temperature Process Heat with Real Results
Malta delivers outsized, quantifiable commercial value to a diverse range of industrial customers, empowering them with 300-550ºC process heat to achieve their decarbonization and operational goals.
Iron and Steel
Refining and Chemicals
Pulp and Paper
Food and Beverage
Aluminum
Concentrated Solar Power
Iron and Steel
Malta AHP delivers a high-efficiency electrification pathway to replace fossil fuel combustion in the steel industry. By leveraging the available waste heat from steel-treating furnaces, our system transforms lost thermal energy into a high-value asset, empowering manufacturers to slash emissions and achieve their decarbonization goals while maintaining rigorous production profiles.
Refining and Chemicals
Malta AHP integrates seamlessly into distillation columns, capturing and recycling condensation waste heat to significantly reduce the fossil fuel consumption traditionally needed to heat inlet streams. This high-efficiency thermal management lowers operational costs and drives meaningful sustainability gains in continuous, energy-intensive chemical environments.
Pulp and Paper
Food and Beverage
Aluminum
Concentrated Solar Power
Malta AHP offers a powerful retrofit solution for CSP asset owners facing operational and market headwinds. Leveraging the molten salt knowledge gained in SEMS applications, the system integrates naturally into existing architectures—minimizing retrofit complexity while unlocking transformative value. It enables CSP plants to shift thermal output over 8+ hours and mitigate curtailment. For developers and owners operating in saturated markets, this technology enhances asset flexibility, strengthens project economics, and extends plant life through second-life applications. Backed by Malta’s deep CSP domain expertise and a network of global industrial partners, it is the natural addition to enhance CSP plants seeking long-term relevance and profitability in modern power markets.