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Characterization of the corn husk fibre and improvement in its thermal stability by banana pseudostem sap

机译:Banana Pseudostem SAP的玉米壳纤维的表征及其热稳定性的改进

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An alkali based method has been optimised and proposed to extract the cellulosic fibres from the corn husks. Physicochemical and morphological properties of the fibres extracted from corn husk have been studied in detail, and compared with the well-explored cellulosic fibre, like cotton and ligno-cellulosic fibre, like jute. Scanning electron microscopy and energy dispersive X-ray were used to study the surface and cross-sectional morphology and the elemental analysis of the corn-husk fibres and compared with cotton and jute fibres. The analysis showed that the morphological and the physico-chemical properties of the extracted corn husk fibres are comparable with ligno-cellulosic jute fibre. Also, improvement in thermal stability of corn husk fibre was obtained by application of the agro-waste banana pseudostem sap (BPS). BPS treated corn husk fibre showed the limiting oxygen index (LOI) value of 32 against the LOI value of 21 for the control corn fibre. In vertical burning test BPS treated corn yarn showed self extinguishing behaviour and 50 mm char length whereas control corn yarn was burnt within 1 min with flame and afterglow. TG analysis of the BPS treated corn yarn showed more than 30% weight retention at 450 degrees C compared to the 20% weight retention of the control corn yarn at the said temperature. In addition, major mass loss peak in TG curve has been shifted from 350 to 300 degrees C after BPS treatment (signature of the dehydration effect of the treated corn yarn). The flame retardant treatment process is comparatively simple and cost-effective, as add-on remains only at 8% and the BPS is available in large quantity in many countries.
机译:已经优化了基于碱的方法,并提出从玉米壳中提取纤维素纤维。已经详细研究了从玉米壳中提取的纤维的物理化学和形态学性质,并与探索型纤维素纤维相比,如棉花和木质纤维纤维,如黄麻。扫描电子显微镜和能量分散X射线用于研究玉米壳纤维的表面和横截面形态和元素分析,并与棉花和黄麻纤维进行比较。分析表明,提取的玉米壳纤维的形态学和物理化学性质与木纤维纤维黄麻纤维相当。此外,通过施用农渣香蕉假刺肌(BPS)获得玉米壳纤维热稳定性的提高。 BPS处理的玉米壳纤维显示控制玉米纤维的LOI值为32的限制氧指数(LOI)值。在垂直燃烧试验BPS处理的玉米纱线上显示出自灭火行为,50毫米炭长度,而控制玉米纱线在1分钟内燃烧,火焰和余辉在1分钟内烧焦。与上述温度下对照玉米纱线的20%重量保持相比,BPS处理的玉米纱的TG分析显示出超过30%的重量保留。此外,在BPS处理后,Tg曲线中的主要质量损失峰值已从350°C移位(治疗玉米纱的脱水效果的签名)。阻燃治疗过程比较简单且成本效益,因为附加仍然只有8%,而BPS在许多国家的大量可用。

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