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Technology/Business Opportunity Diw 3D Printed Porous Electrodes for Hybrid Flow Batteries

USARFP notice for Technology/Business Opportunity Diw 3D Printed Porous Electrodes for Hybrid Flow Batteries. The reference ID of the tender is 100534895 and it is closing on 26 May 2024.

Tender Details

  • Country: USA
  • Summary: Technology/Business Opportunity Diw 3D Printed Porous Electrodes for Hybrid Flow Batteries
  • UST Ref No: 100534895
  • Deadline: 26 May 2024
  • Financier: Self Financed
  • Purchaser Ownership: Government
  • Tender Value: Refer Document
  • Notice Type: Tender
  • Document Ref. No.: IL-13819
  • Purchaser's Detail:
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  • Description:
  • Description
    Opportunity:
    Lawrence Livermore National Laboratory (LLNL), operated by the Lawrence Livermore National Security (LLNS), LLC under contract no. DE-AC52-07NA27344 (Contract 44) with the U.S. Department of Energy (DOE), is offering the opportunity to enter into a collaboration to further develop and commercialize its DIW 3D printed porous electrode material for hybrid flow battery systems.

    Background:
    Renewable energy sources such as solar and wind produce electricity intermittently. To ensure a reliable grid that can deliver power around the clock, promising technologies like hybrid flow batteries are needed to store the electricity when it is not sunny or windy. At the core of these batteries are liquid electrolytes that typically contain dissolved metals that react to release or store electrons resulting in depositing and stripping of metal at the surface of the electrode. Their behavior depends on whether the battery is charging or discharging. Metal deposition and stripping behavior in these flow energy storage systems are limited due to the capacity of the electrode and flow structural features. The state-of-the-art technologies include planar electrodes or foam/felt electrodes, which all have limitations. Planar electrodes have limited storage capacity due to low surface areas. Foam and felt (typically carbon) electrodes have electrolyte flow and ion transport issues with internal clogging during charging process (metal deposition) as well as uncontrolled bulk part dissolution during discharging (metal stripping). These electrodes also have poor reaction kinetics for metal deposition and stripping. Thus, there is a need for novel porous electrodes that can perform better than currently available electrodes for hybrid flow batteries.

    Description:
    LLNL researchers have designed and produced, both conductive and non-conductive porous electrode components manufactured for improved metal deposition, discharging, and f...
  • Documents:

 Tender Notice

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Technology/Business Opportunity Diw 3D Printed Porous Electrodes for Hybrid Flow Batteries - USA Tender

The ENERGY, DEPARTMENT OF, a Government sector organization in USA, has announced a new tender for Technology/Business Opportunity Diw 3D Printed Porous Electrodes for Hybrid Flow Batteries. This tender is published on USARFP under UST Ref No: 100534895 and is categorized as a Tender. Interested and eligible suppliers are invited to participate by reviewing the tender documents and submitting their bids before the deadline on 2024-05-26.

The estimated tender value is Refer Document, and full details, including technical specifications and submission requirements, are provided in the official tender documents. Ensure all submissions meet the criteria outlined to be considered for evaluation.

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