Long Duration Energy Storage Project

Enabling the Transition to a Renewable Future

In the next decade, Modern Society needs a safe long duration battery

Energy Storage demand is likely to quintuple between now and 2030

At that time, the Global Total Addressable Market for large batteries is estimated to be 150 USD $b

Target Customers

  • Commercial and Industrial Sectors
  • Utility Transmission & Distribution Providers
  • Renewable Energy Generators

Why Iron Slurry Flow Battery?

  • Cost Advantage Compared to Lithium Iron
  • Sutible for 8-12 Hour Discharge Applications
  • Long Service Life
  • No Rare Materials Required
  • Non-Flammable and Environmentally Safe
  • Flat discharge profile

What is in the Containers

The following in a simplified diagram showing the key ISFB components. In practice there will be numerous bi-polar cell stacks.

Each Container is expected to house a 100kw/1MWH Battery

How does it work?

The battery consists of a positive and negative liquid electrolyte stored in two independent tanks

When charging a chemical imbalance is created between the two electrolytes by forcing electrons to move from one tank to the other

This is done via a cell where the liquids are pushed very close to each other but do not touch or mix as they are seperated by a special membrane

On discharge, the system naturally wants to balance itself and the electrons flow back to their original cells providing useful energy

Why be involved in the Mobius Project?

The Mobius Project is based on the early research of Flow Battery pioneers Case Western Reserve University

Fusion Energy Group has been working on the Flow Battery Technology for Six Years and has a substatial Head Start towards Commercialization

Contact us

Our battery technology is suitable for large-scale commercial, industrial, and utility-scale applications.

We encourage potential industry partners or investors to contact us at the following email address: info@mobiuserg.com

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