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Ceiba speciosaSt. Hill fruit fiber as a potential source for nanocellulose production and reinforcement of polyvinyl acetate composites

机译:Ceiba Speciosast。 Hill Fruit纤维作为纳米纤维素生产和加固聚乙烯乙酸乙烯酯复合材料的潜在来源

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The natural cottony aspect of silk-floss tree fruit fiber allied with its high-cellulose content turned our attention for their application at the nanocellulose production since spares the prerefining and pulping processes that are obligatory for the size reduction of the main cellulosic fiber sources. This study presents preparation and characterization of cellulose nanofibers (CNFs) using mechanical defibrillation to explore their potential in the preparation of polymer composites using polyvinyl acetate (PVAc) emulsion. We characterized and subjected silk-floss fruit fiber to four chemical treatments. Based on the degree of delignification, treatments with sodium chlorite (II) and their mixture with methanol and toluene (IV) were chosen for further studies. The resulting CNFs were characterized by Fourier-transform infrared, X-ray diffraction, differential scanning calorimetry, thermogravimetric analysis, and scanning and transmission electron microscopy. Composites were prepared using several amounts (0.50-1.00 wt%) of CNFs and their tensile strengths were determined. Composites containing 1.00% CNFs (Treatment II) were found to exhibit lowest strength while those with 0.5% CNFs (Treatment IV) showed the highest strength with 351% and were 518% higher resistant than the PVAc matrix, respectively.
机译:丝绵树果纤维的天然棉质特性及其高纤维素含量引起了我们对其在纳米纤维素生产中应用的关注,因为它省去了主要纤维素纤维原料的预精炼和制浆过程。本研究采用机械除颤法制备和表征纤维素纳米纤维(CNF),以探索其在聚醋酸乙烯酯(PVAc)乳液制备聚合物复合材料中的潜力。我们对丝线水果纤维进行了表征,并对其进行了四种化学处理。根据脱木素程度,选择亚氯酸钠(II)及其与甲醇和甲苯(IV)的混合物进行进一步研究。通过傅立叶变换红外、X射线衍射、差示扫描量热法、热重分析、扫描和透射电子显微镜对所得CNF进行了表征。使用不同数量(0.50-1.00 wt%)的CNF制备复合材料,并测定其拉伸强度。研究发现,含有1.00%CNF的复合材料(处理II)的强度最低,而含有0.5%CNF的复合材料(处理IV)的强度最高,分别为351%和518%,比PVAc基体的抗腐蚀性高。

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