CRUSADE | Recycling technologies for ELV components to create a sustainable source of market grade materials for EU applications

Summary
CRUSADE upscales novel technologies to TRL7 integrated in a universal hydrometallurgical method to recycle up to 500 tn/year of spent automotive components (autocatalysts, fuel cells, batteries and printed circuit boards) from end-of-life vehicles and recover ca 40 tn/year of critical raw materials (Cu, C, Co, Mn, Ni, Pt, Pd, Rh, Li, Ru) at commercial specifications. The project leverages predeveloped technologies to establish a market ready pilot unit utilising novel concepts for material tracing using blockchain (AKO, SAISLAB, ENTE) and pan European collection network establishment from the pioneers of the automotive components manufacturers (SUN, ADV, CRF, MONO, ACU) which guarantee the long term sustainable operation of the unit. The material processing covers the whole chain from pre-treatment using validated technologies from the experts on the CRMs recovery (MONO, TUBAF, KUL) and upstream processing using a microwave assisted leaching methodology enabling a 15-80% lower CO2 emission process (depending on the feed), compared to commercial processing. High specification market ready materials are prepared as outputs of the project undergoing a downstream purification and recovery process using solvent extraction and electrowinning, guided by industrial standards for end-use applications, while validated and benchmarked during the course of the project in new automotive products. The processing is automated aiming to a 15% time reduction compared to current processes with the use of an industrial robot and artificial technology guiding the sorting and the hydrometallurgical treatment (Industry 4.0 concept). The materials are commercialised at 15% lower price compared to market standards due to the automated innovative cost efficient processing, CAPEX/OPEX reaching max 70% of product cost (average 30% gross profit margin depending on feed).
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More information & hyperlinks
Web resources: https://cordis.europa.eu/project/id/101138642
Start date: 01-01-2024
End date: 31-12-2027
Total budget - Public funding: 8 777 756,25 Euro - 6 956 943,00 Euro
Cordis data

Original description

CRUSADE upscales novel technologies to TRL7 integrated in a universal hydrometallurgical method to recycle up to 500 tn/year of spent automotive components (autocatalysts, fuel cells, batteries and printed circuit boards) from end-of-life vehicles and recover ca 40 tn/year of critical raw materials (Cu, C, Co, Mn, Ni, Pt, Pd, Rh, Li, Ru) at commercial specifications. The project leverages predeveloped technologies to establish a market ready pilot unit utilising novel concepts for material tracing using blockchain (AKO, SAISLAB, ENTE) and pan European collection network establishment from the pioneers of the automotive components manufacturers (SUN, ADV, CRF, MONO, ACU) which guarantee the long term sustainable operation of the unit. The material processing covers the whole chain from pre-treatment using validated technologies from the experts on the CRMs recovery (MONO, TUBAF, KUL) and upstream processing using a microwave assisted leaching methodology enabling a 15-80% lower CO2 emission process (depending on the feed), compared to commercial processing. High specification market ready materials are prepared as outputs of the project undergoing a downstream purification and recovery process using solvent extraction and electrowinning, guided by industrial standards for end-use applications, while validated and benchmarked during the course of the project in new automotive products. The processing is automated aiming to a 15% time reduction compared to current processes with the use of an industrial robot and artificial technology guiding the sorting and the hydrometallurgical treatment (Industry 4.0 concept). The materials are commercialised at 15% lower price compared to market standards due to the automated innovative cost efficient processing, CAPEX/OPEX reaching max 70% of product cost (average 30% gross profit margin depending on feed).

Status

SIGNED

Call topic

HORIZON-CL4-2023-RESILIENCE-01-05

Update Date

12-03-2024
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Horizon Europe
HORIZON.2 Global Challenges and European Industrial Competitiveness
HORIZON.2.4 Digital, Industry and Space
HORIZON.2.4.0 Cross-cutting call topics
HORIZON-CL4-2023-RESILIENCE-01
HORIZON-CL4-2023-RESILIENCE-01-05 Recycling technologies for critical raw materials from EoL products (IA)
HORIZON.2.4.4 Advanced Materials
HORIZON-CL4-2023-RESILIENCE-01
HORIZON-CL4-2023-RESILIENCE-01-05 Recycling technologies for critical raw materials from EoL products (IA)