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基于农业废弃物的生物基复合材料。

Bio-based composites from waste agricultural residues.

机构信息

Department of Chemical Industries, Iranian Research Organization for Science and Technology (IROST), P.O. Box 15815-3538, Tehran, Iran.

出版信息

Waste Manag. 2010 Apr;30(4):680-4. doi: 10.1016/j.wasman.2009.08.003. Epub 2009 Sep 8.

Abstract

The main objective of this research was to study the potential of waste agricultural residues such as sunflower stalk, corn stalk and bagasse fibers as reinforcement for thermoplastics as an alternative to wood fibers. The effects of two grades (Eastman G-3003 and G-3216) of coupling agents on the mechanical properties were also studied. In the sample preparation, one level of fiber loading (30wt.%) and three levels of coupling agent content (0, 1.5 and 2.5wt.%) were used. For overall trend, with addition of both grades of the coupling agents, tensile, flexural and impact properties of the composites significantly improved, as compared with untreated samples. In addition, morphological study revealed that the positive effect of coupling agent on interfacial bonding. The composites treated with G-3216 gave better results in comparison with G-3003. This could be caused by the high melt viscosity of G-3003. In general, bagasse fiber showed superior mechanical properties due to its chemical characteristics.

摘要

本研究的主要目的是研究向日葵秸秆、玉米秸秆和甘蔗渣纤维等农业废弃物作为热塑性塑料增强材料的潜力,以替代木材纤维。还研究了两种偶联剂(Eastman G-3003 和 G-3216)对力学性能的影响。在样品制备中,使用了纤维负载水平(30wt.%)和偶联剂含量水平(0、1.5 和 2.5wt.%)各三个。总的来说,与未处理的样品相比,添加两种等级的偶联剂均显著提高了复合材料的拉伸、弯曲和冲击性能。此外,形态研究表明,偶联剂对界面结合有积极影响。用 G-3216 处理的复合材料的效果优于用 G-3003 处理的复合材料。这可能是由于 G-3003 的熔体粘度较高。一般来说,由于甘蔗纤维的化学特性,其力学性能更优。

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