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首页> 外文期刊>Journal of Applied Polymer Science >Lignin-based carbon fibers: Accelerated stabilization of lignin fibers in the presence of hydrogen chloride
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Lignin-based carbon fibers: Accelerated stabilization of lignin fibers in the presence of hydrogen chloride

机译:基于木质素的碳纤维:在氯化氢存在下加速木质素纤维的稳定性

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摘要

Organosolv switchgrass lignin (SGL) and hardwood lignin (HWL) polymers are used as precursors to prepare low cost carbon fibers (CFs). Lignin powder and fiber samples are stabilized and carbonized at different conditions to investigate the effect of HCl on thermal-oxidative stabilization time, mass yield, fiber diameter, and mechanical properties. The results show that HCl can accelerate stabilization and reduce the stabilization time from many hours to 75 min for the SGL fibers, and to 35 min for the HWL fiber. The rate of rapid stabilization in HCl/air is at least four times faster than conventional stabilization in air. The CFs prepared with two different stabilization methods have almost the same strength and modulus, but higher carbon yield is obtained with the rapid stabilization due to a short time of oxidation. Pores and defects observed on the surface and the cross-section of the CFs across all stabilization conditions contribute to low fiber strength. (c) 2017 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2017, 134, 45507.
机译:Consorosolv Switchgrass Lignin(SGL)和硬木木质素(HWL)聚合物用作制备低成本碳纤维(CFS)的前体。木质素粉末和纤维样品在不同条件下稳定和碳化,以研究HCl对热氧化稳定时间,质量产量,纤维直径和机械性能的影响。结果表明,HCl可加速稳定化并将稳定时间从许多小时到75分钟降至75分钟,以及HWL纤维的35分钟。 HCl /空气中快速稳定的速率比空气中的常规稳定性快3倍。用两种不同的稳定化方法制备的CF具有几乎相同的强度和模量,但由于氧化短的时间,通过快速稳定地获得较高的碳产率。在表面上观察到的孔隙和缺陷和所有稳定条件的CFS的横截面有助于低纤维强度。 (c)2017 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2017,134,45507。

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