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Carbon fibres from renewable resources: the role of the lignin molecular structure in its blendability with biobased poly(ethylene terephthalate)

机译:可再生资源的碳纤维:木质素分子结构在其与生物化聚(乙二醇酯)的增生性的作用

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Biobased poly(ethylene terephthalate) has been successfully blended with isopropyl alcohol fractioned hardwood organosolv lignin. The blend compatibility was analysed using Gibbs free energy calculations and confirmed by glass transition temperature measurements as well as morphological studies. The carbon fibres obtained from this blend displayed a turbostratic carbon phase and their morphology exhibited a one phase smooth surface. The carbon yield of the blend was found to be improved by fractionation, reaching values of similar to 40%. The chemical structure of lignin, most notably the amount of available aromatic hydroxyl groups, was critical for the success of this work. The high molecular weight fraction is enriched with aromatic hydroxyl groups that can crosslink as ether type bonds such as beta-O-4 and beta-5 bonds. Upon aliphatic hydroxyl substitution in a modified lignin, the blend with BPET was found to be incompatible and produced a carbon fibre exhibiting two phases, low carbon yield and a low amount of the turbostratic phase.
机译:Biobased Poly(乙二醇酯)已成功与异丙醇分数硬木有机溶胶木质素共混。使用Gibbs自由能量计算分析混合相容性,并通过玻璃化转变温度测量以及形态学研究证实。由该混合物获得的碳纤维显示出涡轮响碳阶段,它们的形态表现出一个相光滑的表面。发现共混物的碳产率通过分馏改善,达到与40%相似的值。木质素的化学结构,最值得注意的是可用芳族羟基的量对于这项工作的成功至关重要。高分子量级分富含芳族羟基,其可以将作为醚型键的交联,例如β-O-4和β-5键。在改性木质素中的脂族羟基取代时,发现与BPET的混合物是不相容的,并制备碳纤维,其具有两相,低碳产率和较低量的涡轮阶段。

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