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Fungal Treatment Modifies Kraft Lignin for Lignin- and Cellulose-Based Carbon Fiber Precursors

机译:真菌治疗改变牛皮油木质素用于木质素和纤维素的碳纤维前体

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The kraft lignin’s low molecular weight and too high hydroxyl content hinder its application in bio-based carbon fibers. In this study, we were able to polymerize kraft lignin and reduce the amount of hydroxyl groups by incubating it with the white-rot fungus Obba rivulosa . Enzymatic radical oxidation reactions were hypothesized to induce condensation of lignin, which increased the amount of aromatic rings connected by carbon–carbon bonds. This modification is assumed to be beneficial when aiming for graphite materials such as carbon fibers. Furthermore, the ratio of remaining aliphatic hydroxyls to phenolic hydroxyls was increased, making the structure more favorable for carbon fiber production. When the modified lignin was mixed together with cellulose, the mixture could be spun into intact precursor fibers by using dry-jet wet spinning. The modified lignin leaked less to the spin bath compared with the unmodified lignin starting material, making the recycling of spin-bath solvents easier. The stronger incorporation of modified lignin in the precursor fibers was confirmed by composition analysis, thermogravimetry, and mechanical testing. This work shows how white-rot fungal treatment can be used to modify the structure of lignin to be more favorable for the production of bio-based fiber materials.
机译:牛皮纸的低分子量和过高的羟基含量妨碍其在生物基碳纤维中的应用。在这项研究中,我们能够将牛皮油聚合并通过与白腐真菌孵育 obba rivulosa来降低羟基的量。酶自由基氧化反应被假设以诱导木质素的缩合,这增加了通过碳 - 碳键连接的芳环的量。假设该修改在旨在瞄准诸如碳纤维的石墨材料时是有益的。此外,剩余脂族羟基与酚羟基的比例增加,使得结构更有利于碳纤维生产。当改性木质素与纤维素混合在一起时,通过使用干射流湿纺,混合物可以将混合物旋入完整的前体纤维中。与未修饰的木质素原料相比,改性木质素泄漏到旋浴,使旋转浴溶剂的再循环更容易。通过组成分析,热重试验和机械测试证实了在前体纤维中改性木质素的强掺入。这项工作表明,白腐真菌治疗如何用于改变木质素的结构,对生产生物基纤维材料更有利。

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