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  5. Influence of Thermal Modification and Impregnation with Biocides on Physical Properties of Italian Stone Pine Wood (Pinus pinea L.)

Influence of Thermal Modification and Impregnation with Biocides on Physical Properties of Italian Stone Pine Wood (Pinus pinea L.)

Author(s)
De Angelis, Marco
Humar, Miha
Kržišnik, Davor
Tamantini, Swati
Romagnoli, Manuela  
Date Issued
2022
Type
article
Volume
12
Issue
8
DOI
10.3390/app12083801
Journal
Applied Sciences  
Abstract
The sudden availability of Italian stone pine (Pinus pinea L.) wood due to the infestation of pathogenic fungi and insects highlighted the need to promote its use as a short supply chain resource in Italy and other Mediterranean countries. However, the durability of stone pine sapwood must be enhanced if outdoor use is to be considered. The impregnability of stone pine wood was studied following the standard EN 351-1:2008, using immersion, vacuum, and high-pressure methods with natural waxes and organic solvent-based and copper-amino-based preservative solutions. The efficacy of the impregnation was determined by calculating the kilos of preservative absorbed per cubic meter of wood and by measuring the penetration depth of the preservative. Thermal modifications were carried out using five different maximum temperatures, and their efficacy was determined by measuring the mass loss and color change. Subsequent to thermal treatments, the wood was exposed to a water-vapor-saturated atmosphere, and the increase in mass was calculated for different periods. Stone pine and Scots pine sapwoods showed similar response to the treatments with the exception of soaking impregnation methods where stone pine showed higher uptake, in particular when Silvanolin was used. Our investigation shows that stone pine can be a suitable short supply chain resource in Italy that, when impregnated, could be tested for outdoor use, exactly as is the case with Scots pine.
Subjects

Pinus pinea wood

Thermal treatments

Impregnation

Durability

Short supply chain

Handle
http://hdl.handle.net/2067/48144
File(s)
Thumbnail Image
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2022-applsci-12-03801-DEANGELIS.pdf

Size

1.69 MB

Format

Adobe PDF

Checksum (MD5)

0439680343bc8398d9dab2626b670ed5

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