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ISSN 2457-9459 (Online)
ISSN-L 0576-9787 (Print)


2023

Journal Citation Reports
Impact factor 2023: 1.3
5-Year Impact Factor: 1.2
Article Influence® Score: 0.140
Ranked 9 out of 23
MATERIALS SCIENCE, PAPER & WOOD (Q2)

Scopus
CiteScore 2023: 2.3
SNIP: 0.405

SCImago
SJR: 0.264
H-Index: 42
Ranked Q3

 

Title
Assessment of chromophores in chemically treated and aged wood by UV-VIS Diffuse Reflectance Spectroscopy
Authors
TEREZA TRIBULOVA FRANTISEK KACIK DMITRY EVTUGUIN and IVETA CABALOVA

Received Dedicated to the 50th anniversary of Cellulose Chemistry and Technology and to the memory of its founder Acad. Prof. Cr. I. Simionescu
Published Volume 50 Issue 5-6 May-June
Keywords accelerated ageing, chemically treated wood, chromophores, diffuse reflectance spectroscopy, inorganic salts

Abstract
The optical properties and degradation of fir wood treated by different inorganic salts, which are components of waterborne wood preservatives, were studied before and after wet-thermal accelerated ageing (T=85 °C, RH=65%, for 30 days) using UV-Vis diffuse reflectance spectroscopy. The colour of all impregnated samples was due to the same chromophoric structures, thus revealing that the primary reactions leading to colour changes are essentially very similar. These chemically treated as well as standard (non-treated, unaged) and reference (treated only with distilled water, unaged/aged) samples have a significant absorption band at 358 nm, along with a shoulder near 265 nm of various intensity. The broad band at higher wavelength is attributed to the chromophoric structures derived especially from lignin, i.e. quinones, stilbenes, charge transfer complexes causing a bathochromic shift and other conjugated carbonyl structures. Coniferaldehyde is also a major contributor to this absorption. The band at 265 nm belongs to chromophores arising predominantly from carbohydrate degradation products, i.e. furan derivatives, quinone-type derivatives, catechol structures. Catechol structures (colourless) form coloured complexes with transition metal cations (Cu2+, Fe3+) or are oxidized to form highly coloured benzoquinone structures. Alkaline solutions of borax cause the reduction of conjugated and non-conjugated carbonyls and the degradation of coniferaldehyde. Generally, after ageing, the samples show higher absorptions in the visible region of the spectra in comparison with the unaged ones, which explains their yellowing and loss of brightness after the action of elevated temperature and moisture.


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