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Antora EnergyZero-Carbon Industrial Heat & Power Technology

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Antora’s thermal battery stores energy as heat in blocks of solid carbon—one of the most trusted industrial materials on earth—to power global industry.

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RAPIDLY ELECTRIFY THERMAL LOADS OF ANY SIZE

  • Modular units scale to serve loads from megawatts to gigawatts
  • Factory-built product streamlines site deployment
  • Energy-dense design minimizes plant footprint
  • Flexible integration with local renewable energy or grid power

Proven
Trusted material with centuries of industrial use in high-temperature environments

Superior Performance
Unmatched thermal conductivity, best-in-class heat capacity, and simple radiative heat transfer

Scalable
The fourth-most produced industrial material on earth, at 1/10th the cost of Lithium-ion

Energy-Dense
Stores four times as much energy as electrochemical batteries with the same volume

Charge
RAPID CHARGING WHEN ELECTRICITY IS CHEAP
Clean electricity is used to resistively heat the carbon blocks. Carbon`s high thermal conductivity enables ultra-fast charging that rapidly soaks up the cheapest hours of renewable energy generation.

Store
MULTI-DAY THERMAL STORAGE
The carbon blocks store energy at temperatures up to 2,400°C in a compact and modular thermal battery. These ultra-high temperatures enable our system to serve continuous industrial demand for days on end.

Deliver
ALWAYS-ON INDUSTRIAL HEAT & POWER
At these glowing-hot temperatures, the carbon blocks transfer energy as light. This eliminates the need for complex and maintenance-intensive mechanical systems. Energy is discharged 24/7 as heat at the scale and temperatures that large industrial operations demand.

SAFE
Carbon is a time-tested industrial material with no risk of thermal runaway.

RELIABLE
Always-on heat and power for industrial operations where downtime is not an option.

SEAMLESS INTEGRATION
Modular, factory-built system minimizes site disruption and streamlines installation.

DECADES-LONG LIFESPAN
20+ year system lifetime with no cycling degradation.