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adaptive and scalable. The research effort will be directed towards the selective recovery in high yield of high-value polymers (e.g., PET, PS, PC, ABS) at high purity, while minimizing solvent consumption
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synthesis out of fossil-based and one time use to continuous reuse of polymeric products. Current recycling methods cannot recover high-value polymers from complex waste streams such as multilayer packaging
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losses and environmental impact As a Postdoc within the EvalueWaste consortium at TU Delft, you will: Scale-up of a solvothermal process to recover metals and polymers from cardiac catheters for reuse
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engineering Engineering » Process engineering Researcher Profile Recognised Researcher (R2) Application Deadline 1 Oct 2026 - 21:59 (UTC) Country Netherlands Type of Contract Temporary Job Status Not Applicable
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Production Printing, combining polymer science, rheology, and computational modeling to create the inks and coatings of tomorrow. Information Printing is evolving toward sustainability, precision, and
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brittle minerals into tough materials, like the nacre in seashells, by combining them with soft organic polymers. In this project, we explore a fundamentally different approach. Using 3D-printed concrete as
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biomolecular polymers, demonstrate its circularity, ensure product safety, and assess regulatory implications in preparation for future clinical studies. To conquer obesity, such a biodegradable, non-fossil
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materials engineering, plastics and metals present complementary strengths and challenges. Metals offer strength, conductivity, and wear resistance while polymers enable complex geometries and lightweight