EventsThe 2nd International Electronic Conference on Forests — Sustainable Forests: Ecology, Management, Products and Trade
Published
This submission belongs to the session S5. Wood Science, Forest Products and Trade of the event The 2nd International Electronic Conference on Forests — Sustainable Forests: Ecology, Management, Products and Trade
Published date
14 Mar, 2022
Academic Editor
author-avatarMiha Humar
Citation
Emiliano Gennari, Rodolfo Picchio, Angela Lo Monaco, Water absorption behaviour and dimensional stability of a thermally modified tropical hardwood (Triplochiton scleroxylon K. Schum), in Proceedings of The 2nd International Electronic Conference on Forests — Sustainable Forests: Ecology, Management, Products and Trade, 1 September–15 September 2021, MDPI: Basel, Switzerland, doi: 10.3390/IECF2021-10822
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Water absorption behaviour and dimensional stability of a thermally modified tropical hardwood (Triplochiton scleroxylon K. Schum)

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1. Tuscia University
Abstract

The thermal modification of wood is well known and widespread as method to improve the dimensional stability and natural durability of this interesting material with biological origin. This work aims to evaluate the effect of a 3 hour at 215°C thermal modification cycle, carried out with an industrial system with a slight initial vacuum, on some physical properties of ayous wood (Triplochiton scleroxylon K. Schum). This research will offer an overview on the dimensional stability and the water absorption behaviour of the material, comparing these properties between untreated and heat-treated ayous wood. To collect the data, the ISO reference standard was adopted. The data here presented highlight the influence of the thermal modification in the reduction of wood hygroscopicity. It has been possible to verify that heat-treated wood shows less swelling and reaches a lower humidity than untreated wood with the same environmental conditions. Therefore, the dimensional stability of the heat-treated wood was also improved, making the material more suitable for outdoor use.

Keywords
absorption behaviour
dimensional stability
heat treatment
thermal modification
hygroscopicity
Triplochiton scleroxylon.
Manuscript
Poster
Water behaviour ppt.pdf
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