Skip to main content

Funding for EV battery recycling research

Axeon has announced it is one of six British companies to receive funding from the UK's Technology Strategy Board for feasibility studies into the recycling and re-use of batteries for hybrid and electric vehicles. As well as researching the recycling process, the project will look at how to determine end-of-life, which is still a major issue with automotive batteries for both manufacturers and consumers.
April 18, 2012 Read time: 2 mins
RSSAxeon has announced it is one of six British companies to receive funding from the UK's 2231 Technology Strategy Board for feasibility studies into the recycling and re-use of batteries for hybrid and electric vehicles. As well as researching the recycling process, the project will look at how to determine end-of-life, which is still a major issue with automotive batteries for both manufacturers and consumers.

The Axeon-led project, which looks into the economic viability of automotive battery recycling in the UK, involves Oxford Brookes University as a partner. It will define the context in which battery recycling must take place, including the legal issues, as well as develop the recycling process and work out the business model for recycling end-of-life batteries.

As Axeon CEO, Lawrence Berns points out, “The issue of end-of-life for batteries in hybrid and electric vehicles is incredibly important to OEMs and car buyers alike, particularly in respect of the economic and environmental considerations. Our project will help to define industry standards and best practice for battery recycling, which will be key to the mass commercialisation of battery-powered vehicles.”

Related Content

  • TRL to contribute to new autonomous vehicle research programme
    October 23, 2015
    The UK’s Transport Research Laboratory (TRL) the, has announced it is part of a new US$17 million five-year research programme to develop fully autonomous cars. The programme, jointly funded by Jaguar Land Rover and the Engineering and Physical Sciences Research Council (EPSRC), will look at some key technologies and questions that need to be addressed before driverless cars can be allowed on the roads without jeopardising the safety of other road users, including cyclists and pedestrians. TRL is the on
  • Project to develop inductive charging for EVs
    April 25, 2012
    Volvo Car Corporation is participating in an inductive charging project. Together with Belgian technological and development specialists Flanders' Drive and others, Volvo is developing systems and methods that need neither power sockets nor charging cables. With inductive charging, energy is transferred wirelessly to the car's battery via a charging plate buried in the road surface.
  • Cooperative infrastructure systems waiting for the go ahead
    February 3, 2012
    Despite much research and technological promise, progress towards cooperative infrastructure system deployment is still slow. Here, Robert Cone and John Miles take a considered look at how and when it might come about. From a systems engineering viewpoint it looks logical and inevitable that vehicles should be communicating between themselves and with the road infrastructure. But seen from a business viewpoint the case is not proven.
  • Pivot Power: 'We need to rethink the EV customer experience'
    October 10, 2018
    Electric vehicles will increasingly become a key part of the mobility mix but charging infrastructure is currently patchy. Adam Hill talks to Matt Allen of Pivot Power about disruption, horses, slot machines – and the importance of customer experience. Electric vehicles (EVs) – including buses, taxis and cars for individual and shared use – are already a common sight on our roads. They are not yet ubiquitous. But that will come. There will be around 30 million electric cars in the world by 2030 (as they