首页> 外文期刊>Iranian polymer journal >Isolation and characterisation of nanofibrillated cellulose from waste cotton: effects on thermo-mechanical properties of polylactic acid/MA-g-SEBS blends
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Isolation and characterisation of nanofibrillated cellulose from waste cotton: effects on thermo-mechanical properties of polylactic acid/MA-g-SEBS blends

机译:废棉中纳米原纤化纤维素的分离和表征:对聚乳酸/ MA-g-SEBS共混物热机械性能的影响

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摘要

In garment industry, cotton waste is the major threat for disposal or waste management due to environmental issues. Nanofibrillated cellulose (NFC) from waste cotton was isolated by steam explosion technique, an eco-friendly method in comparison with chemical methods. Nanocellulosewas characterised by different analysis techniques like TEM, SEM and XRD. The crystallinity index of nanocellulose was found to be 66% based on Seigel's empirical method. SEM micrographs showed highly entangled nanofibrils with diameters ranging from 67 to 70nm. TEM results revealed reduction in the size of fiber from micro to nano upon mild acid treatment along with steam explosion. Bionanocomposites of maleated styrene ethylene butylene styrene (MA-g-SEBS) toughened polylactic acid (PLA) reinforced with nanocellulose were fabricated by twin screw extruder and tested for thermo-mechanical behaviour using injection molded specimen. Mechanical property evaluation showed that the composites containing nanocellulose exhibited higher modulus compared to virgin PLA and PLA binary blend system containing SEBS or MA-g-SEBS. The elongations of bionanocomposites were substantially increased, possibly due to good dispersion of nanocellulose and its plasticizing effect. Morphological studies were also carried out to investigate the effect of nanocellulose on toughened PLA. The impact strength was also found to be higher compared to virgin PLA by the incorporation of nanocellulose to SEBS toughened PLA. Differential scanning calorimetry measurements observed an increase in crystallization of PLA by heterogeneous nucleation effect of NFC.
机译:在服装工业中,由于环境问题,棉花废物是处置或废物管理的主要威胁。通过蒸汽爆破技术从废棉中分离出纳米原纤化纤维素(NFC),与化学方法相比,这是一种生态友好的方法。纳米纤维素的特征在于不同的分析技术,如TEM,SEM和XRD。根据赛格尔的经验方法,发现纳米纤维素的结晶度指数为66%。 SEM显微照片显示高度缠结的纳米纤维,直径范围为67至70nm。 TEM结果表明,经过轻度酸处理和蒸汽爆炸后,纤维的尺寸从微米减小到了纳米。用双螺杆挤出机制备了纳米纤维素增强的马来酸苯乙烯乙烯丁烯苯乙烯增韧聚乳酸(PLA)的生物复合材料,并用注塑样品测试了其热机械性能。力学性能评估表明,与原始的PLA和含有SEBS或MA-g-SEBS的PLA二元共混体系相比,含有纳米纤维素的复合材料表现出更高的模量。生物纳米复合材料的伸长率显着增加,这可能是由于纳米纤维素的良好分散及其增塑作用所致。还进行了形态学研究,以研究纳米纤维素对增韧的PLA的影响。通过将纳米纤维素掺入SEBS增韧的PLA中,还发现与原始PLA相比,其冲击强度更高。差示扫描量热法测量观察到由于NFC的异质成核作用,PLA的结晶增加。

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