Author
Listed:
- Rasdianah Dahali
(Faculty of Forestry, Universiti Putra Malaysia, Serdang 43400 UPM, Selangor, Malaysia
Institute of Tropical Forestry and Forest Products, Universiti Putra Malaysia, Serdang 43400 UPM, Selangor, Malaysia)
- Seng Hua Lee
(Institute of Tropical Forestry and Forest Products, Universiti Putra Malaysia, Serdang 43400 UPM, Selangor, Malaysia)
- Zaidon Ashaari
(Faculty of Forestry, Universiti Putra Malaysia, Serdang 43400 UPM, Selangor, Malaysia)
- Edi Suhaimi Bakar
(Faculty of Forestry, Universiti Putra Malaysia, Serdang 43400 UPM, Selangor, Malaysia)
- Hidayah Ariffin
(Institute of Tropical Forestry and Forest Products, Universiti Putra Malaysia, Serdang 43400 UPM, Selangor, Malaysia
Biomass Technology Centre, Faculty of Biotechnology and Biomolecular Sciences, Universiti Putra Malaysia, Serdang 43400 UPM, Selangor, Malaysia)
- Pui San Khoo
(Institute of Tropical Forestry and Forest Products, Universiti Putra Malaysia, Serdang 43400 UPM, Selangor, Malaysia)
- Paiman Bawon
(Faculty of Forestry, Universiti Putra Malaysia, Serdang 43400 UPM, Selangor, Malaysia)
- Qamariah Norhidayah Salleh
(Faculty of Forestry, Universiti Putra Malaysia, Serdang 43400 UPM, Selangor, Malaysia)
Abstract
In this study, the effect of superheated steam (SHS) treatment on the changes of the chemical composition and biological properties of two tropical hardwoods was investigated. SHS was carried out on light red meranti ( Shorea spp.) and kedondong ( Canarium spp.) wood with dimensions of 410 × 25 × 25 mm, using superheated steam as the heating medium. Wood samples were heat-treated at nine treatment levels, ranging from 172 to 228 °C and 95 to 265 min, respectively. The chemical constituents and resistance against white rot fungus ( Pycnoporus sanguineus ) and subterranean termite ( Coptotermus curvignathus ) of the treated wood were evaluated. A significant reduction in holocellulose content and increment in lignin was observed after SHS treatment. Consequently, the resistance against white rot fungus and termites improved. The biological durability improved with an increasing treatment temperature and time. A regression analysis revealed that the reduced equilibrium moisture content imparted superior biological resistance to the treated wood. Weight loss caused by the thermal degradation also served as a good indicator for fungal decay, as the loss of weight was directly proportional to the improvement in fungal resistance. However, this did not apply to termite resistance, as a very weak relationship was found between the two variables.
Suggested Citation
Rasdianah Dahali & Seng Hua Lee & Zaidon Ashaari & Edi Suhaimi Bakar & Hidayah Ariffin & Pui San Khoo & Paiman Bawon & Qamariah Norhidayah Salleh, 2020.
"Durability of Superheated Steam-Treated Light Red Meranti ( Shorea spp.) and Kedondong ( Canarium spp.) Wood against White Rot Fungus and Subterranean Termite,"
Sustainability, MDPI, vol. 12(11), pages 1-15, May.
Handle:
RePEc:gam:jsusta:v:12:y:2020:i:11:p:4431-:d:364767
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