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Largo Inc T.LGO

Alternate Symbol(s):  LGO

Largo Inc. is a Canada-based producer and supplier of vanadium products. The Company’s segments include sales & trading, mine properties, corporate, exploration and evaluation properties (E&E properties), Largo Clean Energy and Largo Physical Vanadium. Its VPURE and VPURE+ products, which are sourced from one of the vanadium deposits at the Company's Maracas Menchen Mine in Brazil. The Company is also focused on the advancement of renewable energy storage solutions through Largo Clean Energy and its vanadium redox flow battery technology (VRFB). The Company is also engaged in the process of implementing a titanium dioxide pigment plant using feedstock sourced from its existing operations, in addition to advancing its United States-based clean energy division with its VCHARGE vanadium batteries. VPURE+ Flakes are used in the production of master alloys, where it provides high strength-to-weight ratios for the titanium alloy and aerospace industries.


TSX:LGO - Post by User

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Post by kha341on Apr 25, 2024 10:57am
70 Views
Post# 36007129

VRFB Research

VRFB Research

https://techxplore.com/news/2024-04-electrodes-energy-storage-batteries.html


Research dives into electrodes on energy storage batteries

Excerpt

As a grid-scale energy storage system, flow batteries have gained increasing attention as a means to address the challenges associated with fluctuations and intermittency in renewable energy sources.

Vanadium redox flow batteries (VRFBs) have emerged as promising solutions for stationary grid energy storage due to their high efficiency, scalability, safety, near-room-temperature operation conditions, and the ability to size power and energy capacities independently. The redox reactions in a redox flow battery occur at the surfaces of the electrodes in contact with the electrolyte. Any modifications to the electrode surface can affect the electrochemical activity and affect the overall battery performance.

In an effort to extend the lifespans of VRFBs, Lawrence Livermore National Laboratory (LLNL) scientists and collaborators from the Pacific Northwest National Laboratory (PNNL) have explored the surface functionality of carbon electrodes and their propensity for degradation during electrochemical cycles.



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