Electric cars: What will happen to all the dead batteries?
“The rate at which we’re growing the industry is absolutely scary,” says Paul Anderson from Birmingham University.
He’s talking about the market for electric cars in Europe.
By 2030, the EU hopes that there will be 30 million electric cars on European roads.
“It’s something that’s never really been done before at that rate of growth for a completely new product,” says Dr Anderson, who is also the co-director of the Birmingham Centre for Strategic Elements and Critical Materials.
While electric vehicles (EVs) may be carbon neutral during their working lifetime, he’s concerned about what happens when they run out of road – in particular what happens to the batteries.
“In 10 to 15 years when there are large numbers coming to the end of their life, it’s going to be very important that we have a recycling industry,” he points out.
EV batteries are larger and heavier than those in regular cars and are made up of several hundred individual lithium-ion cells, all of which need dismantling. They contain hazardous materials, and have an inconvenient tendency to explode if disassembled incorrectly.
“Currently, globally, it’s very hard to get detailed figures for what percentage of lithium-ion batteries are recycled, but the value everyone quotes is about 5%,” says Dr Anderson. “In some parts of the world it’s considerably less.”
Recent proposals from the European Union would see EV suppliers responsible for making sure that their products aren’t simply dumped at the end of their life, and manufacturers are already starting to step up to the mark.
Nissan, for example, is now reusing old batteries from its Leaf cars in the automated guided vehicles that deliver parts to workers in its factories.
Volkswagen is doing the same, but has also recently opened its first recycling plant, in Salzgitter, Germany, and plans to recycle up to 3,600 battery systems per year during the pilot phase.
“Dismantled parts of the battery systems such as aluminium and copper are given into established recycling streams.”
Renault, meanwhile, is now recycling all its electric car batteries – although as things stand, that only amounts to a couple of hundred a year. It does this through a consortium with French waste management company Veolia and Belgian chemical firm Solvay.
“We are aiming at being able to address 25% of the recycling market. We want to maintain this level of coverage, and of course this would cover by far the needs of Renault,” says Jean-Philippe Hermine, Renault’s VP for strategic environmental planning.
“It’s a very open project – it’s not to recycle only Renault batteries but all batteries, and also including production waste from the battery manufacturing plants.”
The issue is also receiving attention from scientific bodies such as the Faraday Institution, whose ReLiB project aims to optimise the recycling of EV batteries and make it as streamlined as possible.
Currently, for example, much of the substance of a battery is reduced during the recycling process to what is called black mass – a mixture of lithium, manganese, cobalt and nickel – which needs further, energy-intensive processing to recover the materials in a usable form.