New Sustainable Intumescent Coating Based on Polyphenols Obtained from Wood Industry Waste

Author:

Montoya Luis F.1ORCID,Flores Julio1,Ramírez Jesús2ORCID,Rojas David3,Oñate Ángelo3ORCID,Fernández Katherina1ORCID,Jaramillo Andrés F.45ORCID,Miranda Cristian6,Melendrez Manuel F.7

Affiliation:

1. Department of Chemical Engineering, University of Concepción, Concepción 4070386, Chile

2. College of Engineering, Architecture, and Design, Universidad San Sebastián, Campus Las Tres Pascualas, Lientur 1457, Concepción 4060000, Chile

3. Department of Materials Engineering (DIMAT), Faculty of Engineering, Universidad de Concepción, 315 Ed-mundo Larenas, Concepcion 4070415, Chile

4. Department of Mechanical Engineering, Universidad de La Frontera, 01145 Francisco Salazar, Temuco 4780000, Chile

5. Departamento de Ingeniería Mecánica, Universidad de Córdoba, Cr 6 #76-103, Montería 230002, Colombia

6. Unidad de Desarrollo Tecnológico, 2634 Av. Cordillera, Parque Industrial Coronel, P.O. Box 4051, Concepción 4191996, Chile

7. Facultad de Ciencias para el Cuidado de la Salud, Universidad San Sebastián, Campus Las Tres Pascualas, Lientur 1457, Concepción 4060000, Chile

Abstract

The global proliferation of Pinus radiata, known for its rapid growth and wood density, has led to an environmental challenge—significant waste production, especially bark, without a clear valorization route. This waste poses ecological concerns, and despite the crucial role of forest resources in structural applications, their limited fire resistance requires the use of coatings. However, traditional coatings lack an eco-friendly footprint. Addressing this challenge, this study aims to develop an intumescent coating with tannins extracted from waste bark, offering a sustainable alternative. This not only repurposes waste on a global scale but also aligns with the imperative for environmentally friendly materials, contributing to sustainable practices in the construction and wood treatment industry. This study achieved an eco-friendly FRR15 (fire resistance ratio 15) fire resistance classification with a 15% equivalence of low-molecular-weight tannins, presenting a sustainable alternative to commercial products. Characterization showed low-molecular-weight tannins comparable to conventional charring agents, with high hydroxyl content and oil absorption, while high-molecular-weight tannins exhibited lower viability. A reference coating achieved FRR30 fire resistance, aligning with commercial strength. The mechanical properties of tannin-based coatings matched commercial standards, with increased abrasion resistance and adhesion and decreased flexibility. Intumescent coatings with higher tannin content significantly reduced wood substrate charring and mass loss in flame response assessments.

Funder

FONDECYT REGULAR

FONDEQUIP Project

PIA/APOYO CCTE

FONDEF IDEA

Publisher

MDPI AG

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