Active Materials & Manufacturing Engineering
Empowering Circular Operations in the Automotive Plastics Value Chain
Summary
Original abstract (not yet simplified)The overall objective of the EcoPlast project is to develop comprehensive digital solutions to enhance circularity in the automotive plastic value chain. These solutions will help ensure high quality, non-toxicity and durability of secondary materials. Share of secondary materials will be increased in new products. Recovery, recycling and upcycling rates will be increased and uptake of secondary materials for high...
View original technical description
The overall objective of the EcoPlast project is to develop comprehensive digital solutions to enhance circularity in the automotive plastic value chain. These solutions will help ensure high quality, non-toxicity and durability of secondary materials. Share of secondary materials will be increased in new products. Recovery, recycling and upcycling rates will be increased and uptake of secondary materials for high value applications will be proliferated. We will develop EcoPlast platform which will consist of secured and privacy protected collaborative space, ecoDesign tool assisting circular product design, LCA (Life Cycle Assessment) tool for increasing sustainability, CI (Circularity Index) calculator for measuring circularity, Digital Twins (DTs) for process optimisation for extrusion and injection moulding processes as well as upcycling and recycling processes. AI and robotics will be integrated for End-of-life Vehicle (ELV) management processes consisting detection, sorting, and dismantling. Blockchain based Digital Product Passport (DPP) will be employed for automotive plastic products’ traceability to increase trust among the value chain partners. DPP will also help achieving 100% sorting efficiency. A circular marketplace in the platform will help trading recycled and upcycled products. This will also help in reuse, repair, refurbish and remanufacture of dismantled automotive plastic parts. All these activities will help create new value chains around the automotive plastic sector.Automotive plastic parts will be manufactured in this project using recycled plastics, bio-composites and biobased plastics and will be demonstrated, tested, and validated along with the developed digital technologies in large-scale facilities. Novel recycling and upcycling technologies will also be demonstrated. Wider adaptation of EcoPlast solution will help address almost all the challenges automotive plastic value chain actors are currently facing.
Related Research
Grants with similar aims, by meaning.
EMNANDI: Advanced Characterisation and Aging of Compostable Bioplastics for Automotive Applications
EPSRC Manufacturing Research Hub for a Sustainable Future in Engineering Plastics
Dynamic Optimisation of Manufacturing Parameters for the Processing of Low-Grade, Mixed Plastic Waste as a Feedstock
Plastic Recycling Technology and Outputs: Enhancing Material Longevity and Product Quality towards Commercialisation
Recycling Technologies: A sustainable manufacturing platform for the chemical recycling of mixed plastic waste into high value products
Original classification
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