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Funding Radar

Demonstration for Long-duration Battery Energy Storage Systems (BATT4EU Partnership)

eu HORIZON-CL5-2027-05-D2-08 · Horizon Europe (HORIZON)

Statusforthcoming
Opens05 May 2027
Deadline15 Sep 2027 — 367 days
ActionHORIZON Innovation Actions
Official pagehttps://ec.europa.eu/info/funding-tenders/opportunities/portal/screen/opportunit…
Fetched2026-09-13 04:00:37+00:00

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Scope

Expected Outcome: Projects are expected to contribute to all of the following outcomes: Demonstrated system-level long-duration energy storage (LDES) solutions, explicitly aimed at enhancing grid stability, resilience, and flexibility in Europe. Substantial reduction of Europe's dependence on critical raw materials through the use of abundant, low-cost, and sustainable materials. Contribute to strategic insights for a coherent EU-wide stationary storage deployment strategy, enhancing European energy autonomy and sustainability. Sufficient and reproducible operational data and insights to serve as reliable input towards detailed technoeconomic analyses. Scope: Proposals should focus on system-level demonstrations of innovative long-duration (> 8 hours) battery storage concepts that can effectively support utility-scale energy systems or industrial consumers in achieving energy security and operational sustainability. Projects are expected to cover all the following points: Demonstration of advanced long-duration storage technologies not yet on the market such as novel redox flow batteries (standard or mediated), high-temperature systems, metal-air systems, multivalent chemistries (organic or aqueous), or other non-commercialised technologies or architectures. Assessment and definition of use case(s) intended for the proposed technology (front-of-the-meter grid-scale storage, behind-the-meter large industrial energy consumer, firming of renewable generation) along with quantified impact on improved grid resilience, reduced emissions, safety, and lowered energy storage cost. Assessment of hybridization potential of complementary energy storage technologies (e.g., redox flow batteries with supercapacitors) to optimize overall system performance for the intended use case(s) and extending system lifecycle. Utilization of abundant, low-cost, and sustainable materials, explicitly prioritizing materials with reliable and scalable European supply chains, accompanied by realistic and detailed pathways to production routes at scale. Integration of advanced digital technologies, for accurate state-of-charge (SOC), state-of-health (SOH), and lifetime predictions, optimizing battery management systems (BMS), energy management systems (EMS), and overall component performance for extended system longevity. Comprehensive techno-economic analyses, including realistic assessments of CAPEX, OPEX, based on measured technical performance metrics (e.g., self-discharge rates, calendar life, cycle life, round-trip efficiency, necessary safety investments) to clearly establish …

What consortia for this call have looked like

2 projects have been funded under this line (HORIZON-CL5-D2-08) in Horizon Europe and H2020. This is what they were made of — not a recommendation, just what the Commission signed.

22partners, typically
range 14–22
10countries per consortium
14 seen across all of them
36organisations in total
across those projects

The mix of organisations

13 universities
9 research organisations
9 companies
4 public bodies
1 other organisation

Who coordinated them

Coordinating an EU project is a demanding, specific job. These organisations have done it on this topic line before.

Malardalens Universitet · SE Politecnico Di Milano · IT

This is the shape, not the consortium. It says how many partners these projects had and what kinds of organisation were in them. It does not know whether your idea needs the same mix, who is available, who is already committed elsewhere, or how the work and the budget should be divided. Those are judgement calls on a specific proposal, and no amount of public data answers them.

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