Furanic Polymerization Causes the Change, Conservation and Recovery of Thermally-Treated Wood Hydrophobicity before and after Moist Conditions Exposure

Author:

Zhang Bengang1,Petrissans Mathieu1ORCID,Petrissans Anelie1,Pizzi Antonio2ORCID,Colin Baptiste1ORCID

Affiliation:

1. LERMAB, I.U.T. Hubert Curien, University of Lorraine, 7 Rue Fusillés Résistance, 88000 Epinal, France

2. LERMAB-ENSTIB, University of Lorraine, 27 Rue Philippe Seguin, 88000 Epinal, France

Abstract

The Whilhelmy method of contact angle, wood thermal properties (TG/DTG), infrared spectroscopy, etc. was used to define the hydrophobicity of heat-treated beech and fir wood at increasing temperatures between 120 °C and 300 °C. By exposure to wet conditions during 1 week, the hydrophobic character obtained by the heat treatment remains constant heat-treated. Heat induced wood hydrophobation, was shown by CP MAS 13C NMR and MALDI ToF mass spectrometry to be mainly caused by furanic moieties produced from heat-induced hemicelluloses degradation. This is caused by the acid environment generated by the hydrolysis of the hemicelluloses acetyl groups. Furfural polymerizes to linear and branched oligomers and finally to water repellent, insoluble furanic resins. The water repellent, black colored, cross-linked polymerized furanic network is present throughout the heat-treated wood. Wood darkening as well as its water repellency due to increasing proportions of black colored furanic resins increase as a function of the increase with treating temperature, becoming particularly evident in the 200 to 300 °C treating temperature range.

Funder

French Agence Nationale de la Recherche

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

Reference44 articles.

1. Dynamic wettability of wood;Gardner;Langmuir,1991

2. Wetting of wood;Mantanis;Wood Sci. Technol.,1997

3. Wettability of heat-treated wood;Bakali;Holzforschung,2003

4. Investigation of wood wettability changes during heat treatment on the basis of chemical analysis;Hakkou;Polym. Degrad. Stabil.,2005

5. Evolution of wood surface free energy after heat treatment;Petrissans;Polym. Degrad. Stabil.,2007

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