A great variety of current products make use of components or materials (e.g. electronics, steel and aluminium alloys) that utilise increasing amounts of ‘critical’ or scarce metals (SM). For example, design trends for cars point at increasing SM utilisation in order for regulatory, business and consumer requirements on environmental performance, safety, costs, comfort and infotainment to be met. Modern cars now hold SM in substantial amounts, i.e. the circa one billion cars in use worldwide today, constitute a significant near-term secondary SM resource. However, current end-of-life vehicle (ELV) recycling is mainly aimed at isolating hazardous contents, dismantling spare parts and recycling bulk metals. There is thus a clear risk that ELV...
Recycling and recovery of materials and energy from waste is a key factor to mitigate virgin materia...
Recycling of some minor but essential scarce metals used in vehicles may serve as an important strat...
Recycling and recovery of materials and energy from waste is a key factor to mitigate virgin materia...
A great variety of current products make use of components or materials (e.g. electronics, steel and...
A great variety of current products make use of components or materials (e.g. electronics, steel and...
Improved recycling of end-of-life vehicles (ELVs) may serve as an important strategy to address reso...
There are currently a billion cars in use worldwide, and car design trends point at increasing varie...
This report provides extended supplementary material to the article “Are Scarce Metals in Cars Funct...
According to the concept of a circular economy, further promotion of reuse and recycling might aid i...
Concurrent with the demand for cleaner, lighter, and more efficient vehicles, many scarce metals (SM...
Car electronics form an extensive yet untapped source for secondary critical raw mate-rials. The com...
One of the major applications of critical metals (CMs) is in electrical and electronic equipment (EE...
In some common uses metals are lost by intent–copper in brake pads, zinc in tires, and germanium in ...
The automotive industry is expected to transition from a net-consumer to a net-producer of aluminum ...
Cars and electronic products are characterised by high metal complexity. Meanwhile, recycling indust...
Recycling and recovery of materials and energy from waste is a key factor to mitigate virgin materia...
Recycling of some minor but essential scarce metals used in vehicles may serve as an important strat...
Recycling and recovery of materials and energy from waste is a key factor to mitigate virgin materia...
A great variety of current products make use of components or materials (e.g. electronics, steel and...
A great variety of current products make use of components or materials (e.g. electronics, steel and...
Improved recycling of end-of-life vehicles (ELVs) may serve as an important strategy to address reso...
There are currently a billion cars in use worldwide, and car design trends point at increasing varie...
This report provides extended supplementary material to the article “Are Scarce Metals in Cars Funct...
According to the concept of a circular economy, further promotion of reuse and recycling might aid i...
Concurrent with the demand for cleaner, lighter, and more efficient vehicles, many scarce metals (SM...
Car electronics form an extensive yet untapped source for secondary critical raw mate-rials. The com...
One of the major applications of critical metals (CMs) is in electrical and electronic equipment (EE...
In some common uses metals are lost by intent–copper in brake pads, zinc in tires, and germanium in ...
The automotive industry is expected to transition from a net-consumer to a net-producer of aluminum ...
Cars and electronic products are characterised by high metal complexity. Meanwhile, recycling indust...
Recycling and recovery of materials and energy from waste is a key factor to mitigate virgin materia...
Recycling of some minor but essential scarce metals used in vehicles may serve as an important strat...
Recycling and recovery of materials and energy from waste is a key factor to mitigate virgin materia...