Simultaneous Improvement of Surface Wettability and UV Resistance of Wood with Lignin-Based Treatments

Author:

Herrera Rene12ORCID,Poohphajai Faksawat23,Sandak Anna245ORCID,Gordobil Oihana12

Affiliation:

1. Department of Chemical and Environmental Engineering, University of the Basque Country (UPV/EHU), Plaza Europa 1, 20018 Donostia-San Sebastián, Spain

2. InnoRenew CoE, Livade 6a, 6310 Izola, Slovenia

3. Department of Bioproducts and Biosystems, Aalto University School of Chemical Engineering, 00076 Aalto, Finland

4. Faculty of Mathematics, Natural Sciences and Information Technologies, University of Primorska, Glagoljaška 8, 6000 Koper, Slovenia

5. Andrej Marušič Institute, University of Primorska, Titov Trg 4, 6000 Koper, Slovenia

Abstract

Recent advancements in wood modification aim to enhance the inherent qualities of this versatile biological material, which includes renewability, ease of processing, and thermal insulation. This study focuses on evaluating the effectiveness of lignin as a protective agent for less durable wood species, namely, Pinus nigra and Fagus sylvatica L. The impregnation of wood with three various forms of lignin, such as kraft lignin, acetylated kraft lignin, and lignin nanoparticles, was carried out using the vacuum technique at room conditions. The results showed that the treatments significantly improve the hydrophobicity of wood surfaces, particularly in pine wood, and provide protection against UV ageing. Additionally, the treatments contributed to the stabilisation of moisture content at different humidity levels. Although slight colour variations were observed, their impact on the visual appearance was minimal, and the thermal analysis confirmed enhanced thermal properties. Additionally, plasma treatment further enhanced hydrophobicity after treatments, offering potential benefits in terms of moisture resistance and durability. The findings of this study highlight the promising effects of lignin-based treatments on wood properties, providing sustainable solutions for wood protection in various sectors. However, further optimisation is needed to fully explore the potential of lignin and lignin nanoparticles.

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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