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Erschienen in: European Journal of Wood and Wood Products 6/2022

30.07.2022 | Original Article

Drying characteristics, hygroscopicity, and dimensional stability of natural tung oil dried bamboo

verfasst von: Luxi He, Tianfang Zhang, Jingjing Gao, Jing Qian, Xiangyu Zhao, Zhengbin He, Songlin Yi

Erschienen in: European Journal of Wood and Wood Products | Ausgabe 6/2022

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Abstract

Drying with hot oil is considered to simplify the process and improve the production efficiency of bamboo treatment. Herein, tung oil was used to dry and modify fresh bamboo. After bamboo samples were dried in tung oil at 110 °C, the changes in the mass of bamboo, moisture absorption, dimensional stability, surface morphology, and chemical structures were analyzed. The results illustrated that tung oil could dry bamboo rapidly and oil-dried bamboo had an improved hydrophobicity and dimensional stability. NMR results showed that the peak areas of free water and bound water both decreased with increasing drying time, while the peak positions continuously shifted toward the shorter transverse relaxation time. The moisture repellent effect (MRE) and anti-swelling efficiency (ASE) of tung oil-dried bamboo were 53.90% and 65.20%, respectively. Moreover, the water absorption was reduced by 49.89%, and the ASE of the tung oil-dried bamboo under water-saturated conditions could reach approximately 37.21%. The oil-dried samples had larger contact angles in the short term. Moreover, tung oil was able to penetrate the bamboo and solidify at the internal surface, occluding the channels that enabled water flow. Additionally, tung oil-drying decreased the hydrophilic groups and partially modified the chemical structure of bamboo.

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Metadaten
Titel
Drying characteristics, hygroscopicity, and dimensional stability of natural tung oil dried bamboo
verfasst von
Luxi He
Tianfang Zhang
Jingjing Gao
Jing Qian
Xiangyu Zhao
Zhengbin He
Songlin Yi
Publikationsdatum
30.07.2022
Verlag
Springer Berlin Heidelberg
Erschienen in
European Journal of Wood and Wood Products / Ausgabe 6/2022
Print ISSN: 0018-3768
Elektronische ISSN: 1436-736X
DOI
https://doi.org/10.1007/s00107-022-01866-8

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