
The GREEN-LOOP project focuses on designing and optimizing three innovative bio-based materials and components: multifunctional rubber panels for vibration damping and fire retardancy, bioplastic bottle closures for oil and spirits, and wood composite bearings for the appliance and tooling industry. The project aims to enhance the bioeconomy through robust product design adapted to sustainable and circular schemes, reducing manufacturing costs and accelerating market introduction. A key output is the GREEN-LOOP Value Chain Platform, a digital ecosystem utilizing AI-powered tools to predict bio-rubber, bioplastic, and wood composite properties, facilitating faster, smarter material design with reduced environmental impact. The platform supports collaboration, circularity assessments for enterprises, partner searches, and access to validated datasets. The ambition is to reduce reliance on fossil fuels and promote reuse and recycling throughout the value chain.

The GREEN-LOOP project focuses on designing and optimizing three innovative bio-based materials and components: multifunctional rubber panels for vibration damping and fire retardancy, bioplastic bottle closures for oil and spirits, and wood composite bearings for the appliance and tooling industry. The project aims to enhance the bioeconomy through robust product design adapted to sustainable and circular schemes, reducing manufacturing costs and accelerating market introduction. A key output is the GREEN-LOOP Value Chain Platform, a digital ecosystem utilizing AI-powered tools to predict bio-rubber, bioplastic, and wood composite properties, facilitating faster, smarter material design with reduced environmental impact. The platform supports collaboration, circularity assessments for enterprises, partner searches, and access to validated datasets. The ambition is to reduce reliance on fossil fuels and promote reuse and recycling throughout the value chain.