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Utilizing Bio-based Coatings to Address PFAS Concerns - A Strategic Analysis Using PESTLE and SWOT Tool

Ponzelli, Michele; Moreno, Raquel; Deligkiozi, Ioanna

Abstract

This poster was showcased at the Polymers 2024 conference held in Athens (Greece) on 28-31 May 2024. Abstract Per- and polyfluoroalkyl substances (PFAS) are known for their excellent water and oil-repellency properties and are utilized in a wide range of everyday products. However, these artificial chemicals are persistent and can severely impact the environment and human health. To overcome the use of PFAS in coatings, the BIO-SUSHY project aims to replace them by using bio-based alternatives comprising sol-gel precursors, polymers, and bio-additives.To guarantee efficient exploitation and the market uptake of the project, a PESTLE (Political, Economic, Social, Technological, Legal, Environmental) and SWOT (Strengths, Weaknesses, Opportunities, Threats) analyses have been conducted.While the PESTLE examines the macro external factors, the SWOT analysis considers both internal and external factors. In the BIO-SUSHY project, it was preliminarily identified that policy frameworks such as the Chemical Strategy for Sustainability and the thriving biobased market offer economic opportunities, complemented by societal preferences for sustainable and healthier alternatives. Ongoing technological trends with sol-gel coatings also support the project’s goals. Meanwhile, BIO-SUSHY’s SWOT analysis identified internal strengths like innovative bio-based coatings and robust methodologies. Moreover, the project consortium seems to benefit from social acceptance tools, a certification program, and market demand driven by PFAS restrictions. However, foreseen challenges include market price competitiveness, funding limitations, and compliance issues.Therefore, this work aims to provide an overview of the project concept and the use of business tools to facilitate the assessment of the strategic project planning process in the bio-based field.The BIO-SUSHY project is funded by the European Union under the Grant Agreement Number 101091464. Views and opinions expressed are however those of the author(s) only and do not necessarily reflect those of the European Union or the European Health and Digital Executive Agency (HaDEA). Neither the European Union nor the granting authority can be held responsible for them. Keywords PFAS; biobased; PESTLE; SWOT; bioadditives; coatings

Full text

Funded by the European Union under the GA number 101091464. Views and opinions expressed are however those of the author(s) only and do not necessarily reflect those of the European Union or European Health and Digital Executive Agency (HaDEA). Neither the European Union nor HaDEA can be held responsible for them. SUSTAINABLE SURFACE PROTECTION BY GLASS-LIKE HYBRID AND BIOMATERIALS COATINGS UTILIZING BIO-BASED COATINGS TO ADDRESS PFAS CONCERNS – A STRATEGIC ANALYSIS USING PESTLE AND SWOT TOOLS Project video @BIO-SUSHY Project @BIO_SUSHY www.bio-sushy.eu [email protected] Michele Ponzelli1, Raquel Moreno1, Ioanna Deligkiozi1 1 AXIA Innovation GmbH, Fritz-Hommel-Weg 4, 80805, Munich, Germany Introduction & Background Results and Discussion Perand polyfluoroalkyl substances (PFAS) are known for their excellent water and oil-repellency properties and are utilized in a wide range of everyday products. However, these artificial chemicals are persistent and can severely impact the environment and human health. The BIO-SUSHY project aims to replace PFAS in coatings using bio-based alternatives comprising sol-gel precursors, polymers, and bio-additives. To guarantee efficient exploitation and the market uptake of the project, a PESTLE (Political, Economic, Social, Technological, Legal, Environmental) and SWOT (Strengths, Weaknesses, Opportunities, Threats) analyses have been conducted. While the PESTLE examines the macro external factors, the SWOT analysis considers both internal and external factors. BIO-SUSHY benefits from conducive political and legal environments for bio-based coatings, complemented by strengths in innovative material development and market demand alignment. Nevertheless, the project confronts challenges in maintaining price competitiveness and navigating regulatory complexities. These obstacles are being tackled through strategic planning and rigorous technical validations in three industries: textile, food tray packaging, and glass cosmetic packaging. 1 •European Green Deal •SSbD European assessment framework •Chemicals Strategy for Sustainability (CSS) P E •Contributing to boosting EU’s R&D&I •Bio-based coatings CAGR = 9.5% (2022-2032) •Chemical manufacturing is the 4th larges EU ind. S •Consumers’ preference for sustainable products •Reduction of PFAS towards better human health and toxic-free environment T •Sol-gel coatings with superior features •IPR management within new developments •Circular industries’ interest in BIO-SUSHY results L•ECHA’s PFAS restriction proposal •European legislative framework: REACH, CLP E •Reduction of PFAS in the environment •Use of bio-based and sustainable raw materials, replacing fossil-based ones Reduction of PFAS Safer water & oil-repellent bio-based coatings SSbD criteria supported by data-driven modeling Standardization protocols Coating validation in three markets Social acceptance TO S Fulfillment of industry requirements Further investments for development & upscaling Meet optimal recyclability and compostability options of the advanced materials High end-user and market demand for sustainable and safer coatings European policies to support circular strategies Contribution to green jobs Help businesses and SMEs Financial, legal, and regulatory constraints Competition with similar bio-based development strategies Stock and fluctuations of raw materials Appropriate IPR management Keep competitiveness with fossil-based W