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Safe and sustainable by design of next generation chemicals and materials: SSbD4CheM project innovations in the textiles, cosmetic and automotive sectors

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posted on 2025-06-06, 14:02 authored by Mansoor Ahmad BhatMansoor Ahmad Bhat, Tanja RaduTanja Radu, Nacho Martin-Fabiani-CarratoNacho Martin-Fabiani-Carrato, Panagiotis D Kolokathis, Anastasios G Papadiamantis, Stephan Wagner, Yvonne Kohl, Hilda Witters, Wouter A Gebbink, Yentl Pareja Rodriguez, Giuseppe Cardelini, Roel Degens, Ivana Burzic, Beatriz Alfaro Serrano, Claudia Pretschuh, Eduardo Santamaría-Aranda, Elena Contreras-García, Judith Sinic, Christoph Jocham, Dror Cohen, Ze’evi Maor, Assaf Assis, Ondrej Panák, Uroš Novak, Sukriti Hans, Antje Biesemeier, Pau Camilleri, Fruela Pérez Sánchez, Thomas Arblaster, Nils Thonemann, Jeroen Guinée, Andrea Pipino, Onur Çelen, Hariprasad Alwe, Roland Drexel, Roland Welz, Florian Meier, Indre Piragyte-Langa Oliva, Ghada Tagorti, Barry Hardy, Milica Velimirovic

The strategic objective of the Safe and sustainable by design of next generation chemicals and materials (SSbD4CheM) project is to develop screening and testing strategies for a variety of substances and materials to ensure safer and more sustainable products in line with the Sustainable Products Initiative. SSbD4CHeM is focusing on chemical safety using new approach methods, including in vitro studies without animal models and in silico tools. Additionally, it integrates environmental sustainability for the implementation of the Safe and Sustainable by Design (SSbD) framework including risk assessment and ex-ante life cycle assessment. New methods and models for safety and sustainability assessment along chemical, material and product life cycles will be developed, validated, and applied to three case studies, including biobased self-cleaning, water repellent, and antimicrobial treatments for textiles, nanocellulose as an additive in cosmetics, and microcellulose composites for the automotive industry. By employing a multidisciplinary strategy, SSbD4CHeM addresses key challenges in material innovation, ensuring regulatory compliance while reducing hazards to environmental and human health. The project will accelerate the development of next-generation sustainable materials, promoting industry innovation, regulatory progress, and improved consumer safety. Ultimately, SSbD4CheM aims to establish a new benchmark for the development of chemicals and materials that conform to safety and sustainability goals.

Funding

European Union’s Horizon Europe research and innovation programme under grant agreement number 101138475

UKRI grant agreement number 10110559

Swiss State Secretariat for Education, Research and Innovation (SERI)

History

School

  • Architecture, Building and Civil Engineering

Published in

Computational and Structural Biotechnology Journal

Volume

29

Pages

60 - 71

Publisher

Elsevier B.V.

Version

  • VoR (Version of Record)

Rights holder

©The Author(s)

Publisher statement

This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/)

Acceptance date

2025-03-13

Publication date

2025-03-01

Copyright date

2025

ISSN

2001-0370

Language

  • en

Depositor

Dr Tanja Radu. Deposit date: 24 March 2025

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