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Opuntia spp. Fibre Characterisation to Obtain Sustainable Materials in the Composites Field

机译:opuntia spp。纤维表征以获得复合材料领域的可持续材料

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摘要

Some studies have evaluated the use of Opuntia as reinforcement for polymeric matrices, obtaining good results in energy absorption tests and increasing the tensile elastic modulus. However, no studies focusing on the previous characterisation of the fibres and their treatment to improve compatibility with polymeric matrices have been found. This work analyses the chemical composition of Opuntia maxima (OM) and Opuntia dillenii (OD) cladodes and fibre, studying how different treatments influence it. AOAC 2000 methods were used to determine non-structural components and the Van Soest method was used to estimate structural components. Surface characteristics of the samples were also evaluated by Fourier Transform Infrared Spectroscopy (FTIR). Opuntia fibre presented higher cellulose (50–66%) and lignin (6–14%) content and lower hemicellulose (8–13%) content than Opuntia cladodes (9–14% cellulose, 20–50% hemicellulose, 1–4% lignin). Despite the variability of lignocellulosic materials, OD cladodes treated with water and acetic acid achieved an increase in the structural components. Alkaline fibre treatment removed pectin and hemicellulose from the fibre surface, slightly increasing the cellulose content. Future research should evaluate whether the treated Opuntia fibre can improve the mechanical properties of reinforced polymer.
机译:一些研究已经评估了使用Ipuntia作为聚合物基质的增强,获得能量吸收试验的良好结果并增加拉伸弹性模量。然而,未发现专注于纤维的先前表征的研究及其治疗以改善与聚合物基质的相容性。这项工作分析了仙飞民Maxima(OM)和Ipuntia dillenii(OD)Cladodes和纤维的化学成分,研究了不同的治疗如何影响它。 AOAC 2000方法用于确定非结构部件,并且使用VAR SOEST方法来估计结构部件。通过傅里叶变换红外光谱(FTIR)评估样品的表面特征。术语纤维含有更高的纤维素(50-66%)和木质素(6-14%)含量,低血米纤维素(8-13%)含量(8-13%)含量(9-14%纤维素,20-50%半纤维素,1-4%木质素)。尽管木质纤维素材料的可变性,但用水和乙酸处理的OD Cladode达到了结构部件的增加。碱性纤维处理除去纤维表面的果胶和半纤维素,略微增加纤维素含量。未来的研究应评估经过治疗的Ipuntia纤维是否可以改善增强聚合物的机械性能。

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