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Particleboards production from date palm biomass

机译:枣椰子生物质生产的刨花板

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摘要

Date palm biomass is a renewable natural resource that has not widely been utilized in industry. The objective of this study was to examine some chemical properties of date palm trunk and rachis (holocellulose, cellulose, lignin and extractives) and to evaluate their suitability to produce composite panels. Particleboards were produced using trunk and rachis as an alternative raw material for forest products industry in the presence of two types of polycondensation resins (phenol–formaldehyde and melamine urea–formaldehyde) which were selected as binding agents. The panels were tested for their physical (water absorption and thickness swelling) and mechanical (modulus of rupture, modulus of elasticity and internal bond strength) properties. The internal bond strength of date palm trunk and date palm rachis based boards met the requirements of the general purpose product standards (EN 312) at 0.70 g/cm3 density. The panels made with phenol–formaldehyde resin showed better performance with respect to the panels made with melamine urea–formaldehyde. In addition, the particleboard made with date palm trunk particles had better quality compared to the particleboard made from date palm rachis particles. Based on preliminary results of this work, raw materials from date palm trunks and rachis can have a promising potential in the manufacture of particleboards and as a substitute for wood in board production
机译:椰枣生物量是一种可再生的自然资源,尚未在工业中得到广泛利用。这项研究的目的是检查枣椰子树干和树根的某些化学性质(纤维素,纤维素,木质素和提取物),并评估它们对生产复合板的适用性。在选择了两种缩聚树脂(苯酚-甲醛和三聚氰胺脲-甲醛)作为粘合剂的情况下,刨花板使用树干和拉奇作为林产品工业的替代原料生产。测试了面板的物理(吸水和厚度膨胀)和机械(断裂模量,弹性模量和内部粘合强度)性能。基于枣棕树干和基于枣棕轴的板的内部粘合强度在0.70 g / cm3的密度下满足通用产品标准(EN 312)的要求。与三聚氰胺脲醛树脂制成的面板相比,酚醛树脂制成的面板表现出更好的性能。此外,与由椰枣拉奇颗粒制成的刨花板相比,由椰枣树干制成的刨花板具有更好的质量。根据这项工作的初步结果,来自枣椰树干和松树的原料在刨花板的生产中具有潜力,并可以替代木板生产中的木材。

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