Lee Chuan Li, Chin Kit Ling, Khoo Pui San, Hafizuddin Mohd Sahfani, H'ng Paik San
Institute of Tropical Forestry and Forest Product, Universiti Putra Malaysia, Serdang 43400 UPM, Selangor, Malaysia.
Centre for Advanced Composite Materials, Universiti Teknologi Malaysia, Johor Bahru 81310, Johor, Malaysia.
Polymers (Basel). 2022 Sep 15;14(18):3863. doi: 10.3390/polym14183863.
The development of low-environmental-impact technologies for the elimination of biological damage is one of the vital goals of the wood protection industry. The possibility of utilizing pyroligneous acid as a wood preservative can be a great solution to extend the application of the currently fast-growing timber species, which has lower natural durability against biological damage. In this study, the effectiveness of pyroligneous acid as a wood preservative was evaluated by impregnating rubberwood with pyroligneous acid using vacuum-pressure treatment, and the treated woods were exposed to mould fungi, wood-decay fungi and termite attacks under laboratory conditions. Pyroligneous acids produced from rubberwood (RWPA) and oil palm trunk (OPTPA) at different pyrolysis temperatures were evaluated. To fully understand the effectiveness of pyroligneous acids as wood preservatives, different concentrations of pyroligneous acids were impregnated into rubberwood. Concentrations of 50% RWPA and 30% OPTPA were sufficient against mould and decay fungi on rubberwood. Rubberwood impregnated with pyroligneous acid acted as a slow-acting toxic bait to cause a high termite mortality rate due to toxic feeding and does not serve as a good repellent to prevent termites from feeding on the wood. In general, OPTPA has better biological durability compared to RWPA.
开发低环境影响的生物损害消除技术是木材保护行业的重要目标之一。利用焦木酸作为木材防腐剂的可能性,对于扩大目前快速生长但天然抗生物损害能力较低的木材品种的应用来说,可能是一个很好的解决方案。在本研究中,通过真空压力处理用焦木酸浸渍橡胶木,评估了焦木酸作为木材防腐剂的有效性,并在实验室条件下将处理过的木材暴露于霉菌、木材腐朽菌和白蚁侵害中。对在不同热解温度下由橡胶木(RWPA)和油棕树干(OPTPA)产生的焦木酸进行了评估。为了全面了解焦木酸作为木材防腐剂的有效性,将不同浓度的焦木酸浸渍到橡胶木中。50% RWPA和30% OPTPA的浓度足以抵抗橡胶木上的霉菌和腐朽菌。用焦木酸浸渍的橡胶木作为一种慢效毒饵,由于有毒取食导致白蚁死亡率很高,但并不能很好地驱避白蚁取食木材。总体而言,与RWPA相比,OPTPA具有更好的生物耐久性。