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Rheology of Polyacrylonitrile/Lignin Blends in Ionic Liquids under Melt Spinning Conditions

机译:熔融纺丝条件下离子液体中聚丙烯腈/木质素混合物的流变学

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摘要

Lignin, while economically and environmentally beneficial, has had limited success in use in reinforcing carbon fibers due to harmful chemicals used in biomass pretreatment along with the limited physical interactions between lignin and polyacrylonitrile (PAN) during the spinning process. The focus of this study is to use lignin obtained from chemical-free oxidative biomass pretreatment (WEx) for blending with PAN at melt spinning conditions to produce carbon fiber precursors. In this study, the dynamic rheology of blending PAN with biorefinery lignin obtained from the WEx process is investigated with the addition of 1-butyl-3-methylimidazolium chloride as a plasticizer to address the current barriers of developing PAN/lignin carbon fiber precursors in the melt-spinning process. Lignin was esterified using butyric anhydride to reduce its hydrophilicity and to enhance its interactions with PAN. The studies indicate that butyration of the lignin (BL) increased non-Newtonian behavior and decreased thermo-reversibility of blends. The slope of the Han plot was found to be around 1.47 for PAN at 150 °C and decreased with increasing lignin concentrations as well as temperature. However, these blends were found to have higher elasticity and solution yield stress (47.6 Pa at 20%wt BL and 190 °C) when compared to pure PAN (5.8 Pa at 190 °C). The results from this study are significant for understanding lignin–PAN interactions during melt spinning for lower-cost carbon fibers.
机译:木质素尽管在经济上和环境上是有益的,但由于生物质预处理中使用的有害化学物质以及纺丝过程中木质素和聚丙烯腈(PAN)之间有限的物理相互作用,因此在增强碳纤维方面的成功有限。这项研究的重点是使用从无化学氧化生物量预处理(WEx)中获得的木质素,在熔融纺丝条件下与PAN共混,以生产碳纤维前体。在这项研究中,通过添加1-丁基-3-甲基咪唑鎓氯化物作为增塑剂,研究了PAN与从WEx工艺获得的生物炼厂木质素共混的动态流变学,以解决目前发展PAN /木质素碳纤维前体的障碍。熔纺工艺。使用丁酸酐将木质素酯化,以降低其亲水性并增强其与PAN的相互作用。研究表明,木质素(BL)的丁酸酯化增加了非牛顿行为并降低了混合物的热可逆性。对于150°C的PAN,Han图的斜率约为1.47,并且随着木质素浓度和温度的升高而减小。但是,与纯PAN(190°C时为5.8 Pa)相比,发现这些共混物具有更高的弹性和固溶屈服应力(在20%wt BL和190°C时为47.6 Pa)。这项研究的结果对于了解低成本碳纤维在熔融纺丝过程中木质素-PAN的相互作用具有重要意义。

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