Articles
Jul 28, 2026

Too much energy, too little certainty: the second-life batteries paradox

Long after they stop powering cars, lithium-ion batteries still have years of useful life ahead of them. From designer lamps to solar-powered rickshaws, innovative second-life applications are proving their enormous potential. But before repurposing can become the norm, Europe must solve a far less glamorous challenge: deciding who is responsible when something goes wrong.

By Cornelia Trefflich

 

When e-scooters power designer lamps

At first glance, the KLAAP lamp looks like a minimalist design object: a simple aluminium tube and a tiltable square cover that, when opened, releases a soft, indirect light, rechargeable via USB whenever needed. Yet it holds something special inside; its technological heart is a second-life battery salvaged from an e-scooter.

Although the battery has grown too weak over time to drive an e-scooter, it still delivers a completely stable, long-lasting supply for a table lamp, as explains Juan Costa, CEO of ONA, the company that created the prototype of the lamp.

“Even if these batteries are discarded because they can no longer meet the demanding requirements of their original application, they still retain a significant percentage of charge. With so much capacity left, they have a long secondary lifespan in other fields, such as our own lighting sector.”

The Valencia-based company is a lighting design publisher specialising in illumination and exclusive objects, and it has been involved in EU-funded circular-economy projects for years.

“At the beginning, the goal was to integrate a solar panel that would define the form of the object and its inclination. However, developing a solar version within the timeframe and resources of the project became very challenging. We also realised that integrating the solar technology would have affected the lightness of the design, as the thin plate would have needed to become much thicker. That’s when the idea of reusing electric batteries was proposed as a way to keep the original intention of design while giving these batteries a second life,” recalls Paola Bergier of PAAK, which won the competition for designing the lamp.

For PAAK, it was a matter of conviction that good design shouldn’t stop at form: Their lamp is built for circularity and can be taken apart in just a few steps, making repair and recycling far easier, as Costa elaborates: “Effective recycling relies on quick, contamination-free disassembly – a major industry challenge that the KLAAP light fixture directly solves. By removing just five screws, three at the base and two inside, the entire fixture completely separates into its core materials. This smart design minimises disassembly time, lowers recycling costs and ensures maximum material recovery.”

Second-life batteries in rural India and beyond: power to the people

The KLAAP lamp is no isolated case. Around the world, everyday objects are giving batteries a second life. Cells that no longer hold enough energy for their original purpose are not thrown away – they are put to work elsewhere.

One example can be found in a rural region of southern India, where electric rickshaws carry women and their goods to the market. These three-wheelers are charged at solar-powered stations in which retired Audi e-tron batteries serve as energy storage. Behind the initiative is Nunam, a German-Indian startup working with the Audi Environmental Foundation to give retired batteries from an Audi e-tron test fleet a second life. The original idea, however, came earlier – from an observation Nunam co-founder Prodip Chatterjee made in Indian villages:

“If you don’t have a power supply and you need electricity, the only option […] is a small solar system with a storage unit. And it was clear that the storage unit is one of the parameters that is very expensive and also not particularly efficient.”

The second-life element sits in the charging stations. During the day, while the rickshaws are out on the road, the stations store solar power from the roof of the local project partner; in the evening, when the vehicles return, they recharge on that sustainably generated electricity.

For the women, the project translates above all into independence. Where they once had to rely on middlemen, they can now bring their goods to market themselves. The effect has spread, as Chatterjee adds: “We started with four women, and now ten more have got their driver’s licences […] because they saw the others and now they want to get a vehicle for themselves too.”

While in rural India second-life batteries help power electric rickshaws and expand access to clean transport, they are also finding their way into everyday consumer products. The KLAAP lamp is just one example of how they can be repurposed into objects such as designer lighting or Bluetooth speakers. British company Gomi takes the idea further, turning discarded e-bike batteries into speakers made from non-recyclable plastics, delivering around 32 hours of playback on a single charge.

 

Who is liable if my lamp catches fire?

Examples like these show that second-life batteries can work in everyday life. Why their use remains the exception rather than the rule is exactly what the EU-funded REBELION project – the very project under which the KLAAP lamp was created – sets out to change. This European initiative aims to develop cutting-edge technologies that make a circular model for electric-mobility lithium-ion batteries possible, while making repurposing economically viable.

“All the goals come together to the same general goal, that is to make this combination of recycling, repurposing […] profitable. Which is not the case at the moment,” explains Guillermo Sánchez Plaza, REBELION project coordinator at the Universitat Politècnica de València.

Three hurdles have blocked wider adoption so far: certification, liability, and economic viability. Just how decisive certification and standardisation are becomes clear with the KLAAP lamp. To be sold, it must be certified, and for that, its prototype maker, ONA, needs valid documentation for the battery cells inside. But the original cell maker, Samsung, will not provide it, because the cells have been dismantled and repurposed.

Sánchez Plaza describes the problem: “We have to certify these lamps. […] The battery provider, which is Samsung, would have to provide those certificates. […] It is not clear that they want to, because you have manipulated the cells. This is the bottleneck we are facing right now. And it’s a huge one.”

Then there’s liability. Who is to blame if a battery built for a different purpose fails? “What about if that lamp in that house burns? […] I find out it was the cell from the original manufacturer […] and he says ‘oh, forget about it. It’s not my responsibility, it’s not its primary use,'” Sánchez Plaza sums up.

On top of that, every reused module carries its own history, so the condition of each battery, unlike new stock, is unique, as Nunam co-founder Chatterjee confirms from experience: “[…] if you get 50 used vehicle battery packs, those 50 have all been driven differently […] which means there is massive heterogeneity in terms of what the battery’s first life was like.”

This lack of uniformity is what drives up costs and undermines economic viability. Since every cell currently has to be inspected individually and processed by hand, the effort is enormous. For Sánchez Plaza, the key therefore lies in standardisation: “[…] the cells are all the same, all equal, same format, so you can really automate. This industry is about automation, and you can automate to the extent that the cells have standard format.”

Because most standards date from a time when repurposing and recycling barely mattered, the market stays blocked. REBELION targets exactly this bottleneck, developing the tools to open the way for everyday reuse.

 

Dismantling, diagnosing, reusing: the toolkit that gives batteries a new life

Behind it all lies a clear philosophy: recycling is right and good – but only after a battery has lived its second life. A car battery deemed “spent” and ready for replacement still holds 70 to 80 percent of its original capacity. Shredding it straight away would waste enormous untapped potential; for less demanding uses, it has years of energy left, as REBELION’s technical coordinator, Jaime Alcalá Sanz, points out:

“The value of the battery is more than the value of the materials combined […] it has a design, it has a purpose, and it’s still profitable for five, ten years extra.”

The credo, then: use, repurpose, and only then recycle. To make that work, Alcalá Sanz and his colleagues are building a diagnostic procedure that determines each cell’s “state of health” and sorts it into categories, an automated system for dismantling and testing used packs, and a blockchain-based digital battery passport that traces the full history of every battery. Only this traceability lays the groundwork for deciding who might be held liable if something goes wrong, even if the rules for that still have to be written, as Alcalá Sanz confirms:

“The question that’s hard to answer is who takes responsibility if something goes wrong and regulation is not clear. In the project we have the digital battery passport […] there will be traceability of everything that has happened to the battery […] this will be a way to assign responsibility. […] But the regulation will come after the technology is fully developed.”

The effort could pay off for Europe. According to the European Commission, the EU depends heavily on imports of critical raw materials, while in 2025 more than one in four cars sold in Europe was electric. The number of batteries that will soon have served their purpose is therefore rising fast, and repurposing them before recycling would make the continent less dependent on costly imports:

“The quality of the recycling delivers higher purity materials and […] maximises the value of these raw materials for Europe – recycling is our mining, this is what is always said,” Alcalá Sanz points out.

For that vision to become reality, legislation has to keep pace with the technology, something Chatterjee is convinced of as well: “Everything must be done to ensure regulatory clarity […] and that the regulations are based on technical realities.” Once the legal framework is in place, a smart idea like the KLAAP lamp can become a standard that lights up our daily lives as a matter of course.

Featured image by Yiting He on Unsplash.

Events
Oct 20, 2026 to Oct 22, 2026
Allianz MiCo
Milan Italy

REBELION at NetZero Milan 2026

The REBELION Consortium is pleased to announce its participation in NetZero Milan 2026, taking place from 20–22 October 2026 at Allianz MiCo, Milan (Italy). As one of Europe’s leading events dedicated to the net-zero transition, NetZero Milan brings together industry leaders, research organisations, public authorities, innovators and investors to accelerate the deployment of sustainable technologies. […]

The REBELION Consortium is pleased to announce its participation in NetZero Milan 2026, taking place from 20–22 October 2026 at Allianz MiCo, Milan (Italy).

As one of Europe’s leading events dedicated to the net-zero transition, NetZero Milan brings together industry leaders, research organisations, public authorities, innovators and investors to accelerate the deployment of sustainable technologies. The event provides an excellent opportunity for REBELION to engage with key stakeholders and showcase its contribution to more circular and sustainable battery value chains.

REBELION, now approaching its final phase, will be featured at the ICONS Stand within the Solutions Hub, alongside other EU-funded projects coordinated and supported by ICONS. Visitors will have the opportunity to discover the project’s objectives, ongoing activities and latest developments, and discuss its innovative approach to battery circularity with consortium representatives.

REBELION is developing innovative solutions to improve the diagnosis, second-life assessment and recycling of end-of-life lithium-ion batteries from electric mobility. By supporting more efficient and circular battery value chains, the project contributes to Europe’s transition towards a sustainable and climate-neutral economy.

See you at NetZero Milan 2026!

Stop by the ICONS Stand to discover REBELION’s work, meet the project team, and explore how collaboration can drive the future of circular battery technologies.

Featured image by Francesco Ungaro on Pexels.

News
Jun 11, 2026

REBELION General Assembly Marks Final Project Phase

On 9–10 June 2026, the REBELION consortium met in Spain for a two-day General Assembly hosted by project coordinator Universitat Politècnica de València. Taking place between Alcoy and Valencia, the meeting represented an important milestone as the project enters its final months and partners intensify their efforts towards the successful completion of all planned activities. […]

On 9–10 June 2026, the REBELION consortium met in Spain for a two-day General Assembly hosted by project coordinator Universitat Politècnica de València. Taking place between Alcoy and Valencia, the meeting represented an important milestone as the project enters its final months and partners intensify their efforts towards the successful completion of all planned activities.

Day 1 in Alcoy

The first day was held in Alcoy, at the Universitat Politècnica de València’s campus. The morning was dedicated to a comprehensive review of all work packages, allowing partners to assess the progress achieved in recent months, identify areas requiring additional effort before the project’s conclusion, and align priorities for the final implementation phase. These discussions were particularly valuable in clarifying interdependencies among work packages and strengthening collaboration across partners involved in shared tasks.

In the afternoon, participants visited the UPV laboratory facilities and attended a demonstration of the Safety Container developed within the project, providing an opportunity to observe key technical developments firsthand and discuss their integration within the broader REBELION framework.

Day 2 in Valencia

The second day took place at UPV’s main campus in Valencia and focused on planning the next steps towards the project’s final objectives. Special attention was devoted to the System Validation and Use Case Study in the Pilot Plant, one of the project’s most significant activities and a task that requires close cooperation among all consortium partners.

To facilitate productive exchanges, dedicated working groups were organised around specific topics. Their conclusions and recommendations were then presented and discussed with the entire consortium, helping to define a common path forward for the remaining months of the project.

Beyond the technical activities, partners also agreed on a number of strategic actions related to communication, dissemination, and exploitation, ensuring that REBELION’s results will reach relevant stakeholders and maximise their impact beyond the project’s lifetime.

Conclusions and next steps

The General Assembly confirmed the strong commitment of all partners to achieving the project’s goals. The meeting took place in a highly collaborative and constructive atmosphere, combining focused technical discussions with valuable opportunities for networking and team building. As REBELION approaches its final stage, the consortium remains fully engaged in delivering the project’s innovative solutions and ensuring the successful completion of all planned activities.

Events
Apr 17, 2026
Webinar

REBELION at the 4th InnoBatt Meetup on Circular Batteries

REBELION will take part in the 4th InnoBatt Meetup, an online event dedicated to advancing the circular economy of batteries in Europe, taking place on 17 April 2026. Organised by the Hungarian Battery Association, the event will bring together European projects and national stakeholders to address a key question: How can Europe unlock the full […]

REBELION will take part in the 4th InnoBatt Meetup, an online event dedicated to advancing the circular economy of batteries in Europe, taking place on 17 April 2026.

Organised by the Hungarian Battery Association, the event will bring together European projects and national stakeholders to address a key question: How can Europe unlock the full value of batteries beyond their first life?

At the core of the event is the Circular Battery Cluster, a joint initiative bringing together four EU-funded projects (REBELION, REINFORCE, RECIRCULATE, and BatteReverse) working collaboratively to tackle the challenges of battery circularity from multiple angles. By combining expertise across the entire value chain, from diagnostics and dismantling to logistics, digitalisation, and second-life applications, the cluster aims to develop integrated and scalable solutions to support a more sustainable battery ecosystem in Europe.

The meetup will showcase recent results from the cluster and provide a platform for dialogue between research and industry, fostering collaboration and exploring pathways to maximise the value of batteries beyond their first life.

Event details

  • Date: 17 April 2026
  • Time: 10:00 – 11:30 CET
  • Location: Online (Microsoft Teams)
  • Language: English

Participation is free, but registration is required.

Register now! Secure your spot and join the discussion on the future of circular batteries in Europe.

Cover image by Iyan Ryan on Unsplash

News
Mar 18, 2026

REBELION celebrates Global Recycling Day by promoting second-life batteries

On 18th March, Global Recycling Day, the REBELION project highlights the essential role of lithium-ion battery (LIB) reuse and recycling in supporting a circular economy for electric mobility. While the adoption of electric vehicles continues to accelerate, managing the end-of-life of batteries is becoming a critical challenge. Many LIBs that are no longer suitable for […]

On 18th March, Global Recycling Day, the REBELION project highlights the essential role of lithium-ion battery (LIB) reuse and recycling in supporting a circular economy for electric mobility.

While the adoption of electric vehicles continues to accelerate, managing the end-of-life of batteries is becoming a critical challenge. Many LIBs that are no longer suitable for vehicle use still retain significant capacity and can be safely repurposed for second-life applications, extending their service for up to a decade.

REBELION focuses on advanced battery performance assessment, automated inspection, and robotics-driven disassembly solutions. These technologies enable accurate prediction of battery longevity, identification of reusable components, and optimisation of recycling processes. By combining automation and data-driven approaches, the project is helping create safer, faster, and more scalable circular pathways for lithium-ion batteries.

Participating in Global Recycling Day, REBELION emphasizes the importance of sustainable resource management, industrial innovation, and cross-sector collaboration. The project demonstrates how research, technology development, and coordinated efforts across academia and industry can contribute to efficient circular battery systems, reducing waste, recovering valuable materials, and supporting resilient supply chains.

Follow the REBELION campaign on social media for updates and partner insights, and join the conversation using #RebelionRecycling.

Photo by CHUTTERSNAP on Unsplash

News
Feb 9, 2026

REBELION moves into its final year after Birmingham Review Meeting

On 3–4 February, the REBELION consortium gathered in Birmingham, UK, for its second Review Meeting, hosted by The Extreme Robotics Lab at the University of Birmingham, a partner of the project. During the two-day meeting, partners reviewed the progress achieved so far and confirmed that REBELION is advancing according to plan. As REBELION enters its […]

On 3–4 February, the REBELION consortium gathered in Birmingham, UK, for its second Review Meeting, hosted by The Extreme Robotics Lab at the University of Birmingham, a partner of the project.

During the two-day meeting, partners reviewed the progress achieved so far and confirmed that REBELION is advancing according to plan. As REBELION enters its final year, set to conclude at the end of December 2026, discussions focused on consolidating results and preparing for the next steps.

Taking advantage of the visit, consortium members also toured the Sustainable Robotics Centre at the Birmingham Energy Innovation Centre (Tyseley Technology Park), gaining further insight into cutting-edge research infrastructures in the field.

About REBELION

REBELION is an EU-funded project tackling the waste management challenges of lithium-ion batteries used in electric mobility. By developing advanced recycling solutions, the project aims to recover and valorise critical raw materials, strengthening Europe’s strategic autonomy and supporting a more sustainable and competitive battery value chain.

 

News
Jan 21, 2026

REBELION featured in the Spanish design magazine Experimenta

REBELION has been featured in the Spanish magazine “Experimenta”, specialised in design, graphics, architecture and technology, thanks to the contribution of project partner ONA Product SL. Within REBELION, ONA leads the development and prototyping of the lamp that integrates second-life batteries. The article spotlights KLAAP, the lamp designed by Studio PAAK, presented at the Barcelona […]

REBELION has been featured in the Spanish magazine “Experimenta”, specialised in design, graphics, architecture and technology, thanks to the contribution of project partner ONA Product SL. Within REBELION, ONA leads the development and prototyping of the lamp that integrates second-life batteries.

The article spotlights KLAAP, the lamp designed by Studio PAAK, presented at the Barcelona Design Week and selected for Lagranja Open Design Editions. As part of the REBELION vision, the KLAAP lamp gives discarded batteries a second life: originally set aside because they could not handle high power peaks, these batteries are still perfectly suited to deliver stable, long-lasting energy. Their integration into a lighting system highlights the project’s commitment to reuse as a concrete strategy to extend component lifetimes and reduce environmental impact through design.

Read the full article (in Spanish) and stay tuned for more REBELION updates.