EnerVenue Released New Energy Storage Solutions

The company introduced Energy Core and Energy Cube units utilizing Aqueous Metal Cell technology for backup power.

Updated on Sept. 29, 2026 in Energy

Isometric editorial illustration of a modular industrial battery array with stacked metal units in a clean facility.
EnerVenue launched its new Energy Core and Energy Cube storage products, which use aqueous metal cell technology to provide safer industrial backup power. AI Illustration. Upload story photo >

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EnerVenue has officially launched its Energy Core and Energy Cube storage products designed for long-duration backup power. These systems utilize Aqueous Metal Cell chemistry to provide an alternative to traditional lead-acid batteries.

Why it matters

By replacing lead-acid systems, these products aim to provide safer and more durable energy storage options for industrial applications. The use of water-based electrolytes eliminates thermal runaway risks common in other battery chemistries.

The Energy Core offers a 30 kWh capacity with a 30-year design life and 30,000 total cycles. The system supports operating temperatures from -10°C to +45°C, while Energy Cube units accommodate UPS requirements from 100KVA to 600KVA.

The players

EnerVenue

EnerVenue is a company that develops energy storage solutions based on Aqueous Metal Cell technology.

The details

Both storage solutions rely on Aqueous Metal Cell chemistry and integrate natural air cooling systems, removing the need for auxiliary cooling equipment. Each unit includes built-in battery management systems, TCP/Modbus communication, and IP20 protection, while carrying UL 9540A, UL 1973, and IEC 63115-2 certifications.

Timeline

  1. EnerVenue announced the products on September 29, 2026.

The Big Picture

The introduction of these products signals a paradigm shift in industrial energy storage by commercializing Aqueous Metal Cell technology. This advancement pushes the industry away from legacy lead-acid systems toward higher-cycle alternatives that support modern, high-demand backup requirements.

Commercial facilities and industrial sites may soon replace traditional lead-acid batteries with these units to lower maintenance costs and improve safety. Because these systems operate without auxiliary cooling and support three cycles per day, they offer more flexible and resilient backup power.

The takeaway

These units offer a high-durability solution that can withstand up to 30,000 cycles, providing a long-term alternative to frequent battery replacements. Businesses looking to upgrade their backup power infrastructure should prioritize systems with inherent safety profiles like these water-based designs.

Further reading

Learn more about the latest innovations in Energy.

Source note: This article includes information reported by SolarQuarter.

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Should critical infrastructure providers prioritize newer battery technologies over traditional lead-acid systems?