Redox flow battery system

The shared service corridor design for redox flow batteries addresses the challenge of footprint and cost in real-world deployment, enabling efficient maintenance and safety, allowing for their use in smaller locations.

GB2702749APending Publication Date: 2026-06-24INVINITY ENERGY SYST (CANADA) CORP

Patent Information

Authority / Receiving Office
GB · GB
Patent Type
Applications
Current Assignee / Owner
INVINITY ENERGY SYST (CANADA) CORP
Filing Date
2024-11-29
Publication Date
2026-06-24

AI Technical Summary

Technical Problem

There is a need for improvements in the real-world deployment of redox flow battery technology, particularly in reducing the footprint and cost of installation while ensuring effective and safe maintenance throughout its lifespan.

Method used

A redox flow battery system with a shared service corridor design, where battery modules are housed in containers positioned opposite to each other with a shared access corridor between them, allowing for efficient servicing and maintenance, and utilizing a spanning member for equipment handling.

Benefits of technology

This design reduces the required footprint and investment for deploying redox flow batteries, enabling their use in smaller locations and ensuring effective maintenance and safety throughout the battery's lifespan.

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Abstract

A redox flow battery system 1 comprises at least one pair of battery modules 35,35'; 37,37'; 39,39 housed in a respective container (15, fig 2) and provided opposite each other with a shared service c
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