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Studies on Mechanical, Thermal and Morphological Properties of Betel Nut Husk Nano Cellulose Reinforced Biodegradable Polymer Composites

机译:叶片螺母壳纳米纤维素增强可生物降解聚合物复合材料的机械,热和形态学性能研究

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Nanocellulose has recently gained a significant level of attention from academic and industrial researchers due to its non-toxic, biocompatible, bio-degradable, low-cost, and easy availability that connects many applications. In this research, cellulose extracted from betel nut husk fiber (BNHF) was converted to nanocellulose by chemical technique to examine their potential for use as reinforcement in bio-composite applications. The cellulose isolated from BNHF was subjected to acid hydrolysis using 62% sulfuric acid under ultrasonic treatment to convert cellulose into nanocellulose. The particle size of nanocellulose was determined by particle size analyzer. The morphology, structure and thermal properties of nanocellulose were also determined by scanning electron microscope (SEM) and Fourier-transform infrared (FTIR), thermogravimetric analysis (TGA), and differential scanning calorimetric (DSC) analysis. The bio-composites of nanocellulose–polyvinyl alcohol (PVA) and cellulose–PVA were prepared with different weight percentages (1–5%) of nanocellulose and cellulose via casting methods. The tensile, thermal and morphological properties were characterized for all composites. Enhancement in the tensile, thermal, and morphological properties was found in the nanocellulose–PVA biocomposites.
机译:由于其无毒,生物相容性,生物可降解,低成本,以及连接许多应用的易用性,纳米纤维素最近从学术和工业研究人员获得了显着的关注。在该研究中,通过化学技术将从玻璃螺母壳纤维纤维纤维(BNHF)提取的纤维素转化为纳米纤维素,以检查它们在生物复合应用中的增强件的用途。在超声处理下使用62%硫酸进行从BNHF中分离的纤维素进行酸性水解,将纤维素转化为纳米纤维素。通过粒度分析仪测定纳米纤维素的粒径。纳米纤维素的形态,结构和热性能也通过扫描电子显微镜(SEM)和傅立叶变换红外(FTIR),热重分析(TGA),以及差示扫描量热(DSC)分析来确定。通过铸造方法用不同的重量百分比(1-5%)纳米纤维素和纤维素制备纳米纤维素 - 聚乙烯醇(PVA)和纤维素-PVA的生物复合材料。对所有复合材料表征拉伸,热和形态特性。在纳米纤维素-PVA生物复合材料中发现拉伸,热和形态特性的增强。

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