Results & Deliverables

Explore the project outcomes, public deliverables, and key exploitable results developed by the SUPREME-PILOTS consortium to advance circular bio-based polymer technologies.

Outcomes

Key Exploitable Results (KERs)

The technological innovations generated during the project are designed for commercial and scientific exploitation across European bio-based sectors.

AI Polymer Formulation Optimizer

A machine learning predictive tool trained on physical formulations. It accelerates the discovery of optimal bio-based PLA copolymer blends with customized flexibility and high thermal resistance.

WP LeaderCompetence Center CHASE
Access LevelCommercial / Software

Continuous Reactive Extrusion Protocol

An optimized solvent-free reactive extrusion process that modifies polymer properties inline. This process eliminates chemical solvents, reducing energy consumption and carbon emissions by up to 35%.

WP LeaderFundación AITIIP
Access LevelLicensed IP

Bio-based PTMG Polyurethane Copolymer

A bio-based copolymer formulation utilizing plant-derived PTMG to replace fossil-based elastomers. It is specifically tailored for rotational moulding and resilient industrial flooring.

WP LeaderNovamont S.p.A.
Access LevelMaterial Supply
Documentation

Project Deliverables

List of public and confidential deliverables submitted to the European Commission detailing the technical progress of the project.

D2.1
Technical specifications and compounding requirements of raw bio-materials
Public Submitted Download
D2.2
Design protocol for bio-based PTMG copolymer synthesis
Confidential Submitted Restricted
D3.1
AI model architecture and database schema for polymer formulations
Public Submitted Download
D3.2
Validation of predictive formulation accuracy on physical copolymer samples
Public Drafting Pending
D6.1
Life Cycle Assessment (LCA) boundary definitions and inventory report
Public Submitted Download
Dissemination

Scientific Publications

Research publications and conference proceedings published by members of the SUPREME-PILOTS consortium.

AI-driven predictive modelling of glass transition temperatures in PLA-PTMG copolymers
M. Huber, T. Schneider (Competence Center CHASE GmbH), R. Garcia (Fundación AITIIP)
Journal of Polymer Research (2025) DOI: 10.1007/s10965-025-00123-x
Reactive extrusion scale-up parameters for bio-based thermoplastic elastomers
J. Fernandez, A. Gomez (Fundación AITIIP), M. Rossi (Novamont S.p.A.)
Macro-Molecular Engineering & Science (2026) DOI: 10.1002/mame.202600456