Hosseinaei Omid, Harper David P, Bozell Joseph J, Rials Timothy G
Center for Renewable Carbon, University of Tennessee, 2506 Jacob Drive, Knoxville, TN 37996, USA.
Int J Mol Sci. 2017 Jul 1;18(7):1410. doi: 10.3390/ijms18071410.
Lignin/lignin blends were used to improve fiber spinning, stabilization rates, and properties of lignin-based carbon fibers. Organosolv lignin from Alamo switchgrass () and yellow poplar () were used as blends for making lignin-based carbon fibers. Different ratios of yellow poplar:switchgrass lignin blends were prepared (50:50, 75:25, and 85:15 ). Chemical composition and thermal properties of lignin samples were determined. Thermal properties of lignins were analyzed using thermogravimetric analysis and differential scanning calorimetry. Thermal analysis confirmed switchgrass and yellow poplar lignin form miscible blends, as a single glass transition was observed. Lignin fibers were produced via melt-spinning by twin-screw extrusion. Lignin fibers were thermostabilized at different rates and subsequently carbonized. Spinnability of switchgrass lignin markedly improved by blending with yellow poplar lignin. On the other hand, switchgrass lignin significantly improved thermostabilization performance of yellow poplar fibers, preventing fusion of fibers during fast stabilization and improving mechanical properties of fibers. These results suggest a route towards a 100% renewable carbon fiber with significant decrease in production time and improved mechanical performance.
木质素/木质素共混物被用于改善木质素基碳纤维的纤维纺丝、稳定化速率及性能。来自阿拉莫柳枝稷()和黄杨木()的有机溶剂木质素被用作共混物来制备木质素基碳纤维。制备了不同比例的黄杨木:柳枝稷木质素共混物(50:50、75:25和85:15)。测定了木质素样品的化学组成和热性能。使用热重分析和差示扫描量热法分析了木质素的热性能。热分析证实柳枝稷和黄杨木木质素形成了互溶共混物,因为观察到了单一的玻璃化转变。通过双螺杆挤出熔融纺丝制备木质素纤维。木质素纤维在不同速率下进行热稳定化处理,随后进行碳化。与黄杨木木质素共混显著提高了柳枝稷木质素的可纺性。另一方面,柳枝稷木质素显著改善了黄杨木纤维的热稳定化性能,防止了快速稳定化过程中纤维的融合,并提高了纤维的机械性能。这些结果表明了一条通往100%可再生碳纤维的途径,可显著缩短生产时间并提高机械性能。