Physical Properties of Rice Husk-Pine Wood Particleboard

Z. Z. Low, T. C. Lee, M. A. Selimin, N. Pagan, J. Halip
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引用次数: 6

Abstract

Rice husk is one types of sustainable and economical agricultural wastes that could produce particleboard as the substitute for solid wood. The problems that encourage this research are due to the increasing of deforestation and the increment demand for solid wood in various industries. Malaysia produces a significant amount of agricultural biomass waste every year. It is noteworthy to mention that agricultural wastes can be fully used in an environmentally friendly way. This study aims to evaluate the properties of particleboard made from rice husk at different fibre loading and mixture. Different formulated composition of rice husk and pine wood shaving was prepared for the production of particleboard by hot pressing at temperature 160 °C for 6 min using Urea-Formaldehyde (UF) resin with additional of ammonium chloride (NH4Cl) as a hardener. The results showed the density values and moisture content of particleboards ranging from 0.547 to 0.660 g/cm3 and 8.072 to 8.929 %, respectively. The thickness swelling and water absorption were increased as the increment of soaking time. Besides, the colour of the rice husk-pine particleboards has no significant difference and changes except for particleboard made from 100% rice husk. While the more proportion of pine wood shaving has the better compaction of particleboards, and the addition of grinded rice husk also make the particleboards have fewer voids. This study is expected to reduce deforestation activities and to maximize the usage of agricultural wastes.
稻壳松木刨花板的物理性能
稻壳是一种可持续的、经济的农业废弃物,可以生产刨花板代替实木。鼓励这项研究的问题是由于森林砍伐的增加和各种工业对实木需求的增加。马来西亚每年产生大量的农业生物质废弃物。值得一提的是,农业废弃物可以以环保的方式得到充分利用。本研究旨在评价稻壳刨花板在不同纤维负荷和混合料下的性能。以脲醛树脂(UF)为原料,添加氯化铵(NH4Cl)为硬化剂,在160℃下热压6 min,制备了不同配方的稻壳和松木刨花板。结果表明:刨花板的密度值为0.547 ~ 0.660 g/cm3,含水率为8.072 ~ 8.929%;随着保温时间的延长,材料的厚度膨胀和吸水率均有所增加。此外,除了100%稻壳制成的刨花板外,稻壳松木刨花板的颜色没有明显的差异和变化。而松木刨削比例越大,刨花板的压实性越好,而且磨碎的稻壳的加入也使刨花板的空隙更少。这项研究预计将减少毁林活动,并最大限度地利用农业废物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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