首页> 外文期刊>Journal of Polymers and the Environment >Polylactic Acid Composites Utilising Sequential Surface Treatments of Lignocellulose: Chemistry, Morphology and Properties
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Polylactic Acid Composites Utilising Sequential Surface Treatments of Lignocellulose: Chemistry, Morphology and Properties

机译:利用木质纤维素顺序表面处理的聚乳酸复合材料:化学,形态和性能

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Polylactic acid (PLA)—maple fibre composites have been synthesised using a series of sequentially mod ified cellulose fibres (namely alkylation followed by either acetylation or silanation). Confirmations of the sequential modifications were made using Fourier Transform Infrared Spectroscopy and Inductively Coupled Plasma—Atomic Emission Spectroscopy and the new surface morphologies analysed using Scanning Electron Microscopy. The key advantage of the use of sequential treatments (with initial alkali treatment) was the allowance for direct grafting of suitable chemical groups onto the cellulose in the fibre due to the removal of lignin, hemicellulose and other surface impurities. However, a balance was found to exist between alkali exposure time, concentration and resulting fibre integrity. The conditions used resulted in a loss in fibre weight, fibre moisture content and tensile strength. Sequential treatments with acetylation or silane resulted in a 15-21% strength recovery from that of the alkali treated composite. Factors that influenced this recovery in strength were the improved fibre-polymer interface, namely the hydrophilic balancing of the fibres and this further affected the thermal-hydrolysis of the PLA during composite fabrication.
机译:聚乳酸(PLA)-枫木纤维复合材料已使用一系列顺序改性的纤维素纤维合成(即烷基化,然后乙酰化或硅烷化)。使用傅立叶变换红外光谱法和电感耦合等离子体-原子发射光谱法对顺序修饰进行了确认,并使用扫描电子显微镜分析了新的表面形态。由于去除了木质素,半纤维素和其他表面杂质,使用顺序处理(采用初始碱处理)的主要优点是可以将合适的化学基团直接接枝到纤维中的纤维素上。然而,发现在碱暴露时间,浓度和所得纤维完整性之间存在平衡。使用的条件导致纤维重量,纤维水分含量和拉伸强度的损失。顺序进行乙酰化或硅烷处理可使强度恢复到碱处理后的复合材料的15-21%。影响强度恢复的因素是纤维-聚合物界面的改善,即纤维的亲水平衡,这进一步影响了复合材料制造期间PLA的热水解。

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