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采用离心纺丝技术制备木质素基生物纳米纤维。

Developing lignin-based bio-nanofibers by centrifugal spinning technique.

机构信息

Temag Labs, Istanbul Technical University, Istanbul, Turkey; Areka Advanced Ltd., Istanbul, Turkey.

Temag Labs, Istanbul Technical University, Istanbul, Turkey.

出版信息

Int J Biol Macromol. 2018 Jul 1;113:98-105. doi: 10.1016/j.ijbiomac.2018.02.047. Epub 2018 Feb 10.

Abstract

Lignin-based nanofibers were produced via centrifugal spinning from lignin-thermoplastic polyurethane polymer blends. The most suitable process parameters were chosen by optimization of the rotational speed, nozzle diameter and spinneret-to-collector distance using different blend ratios of the two polymers at different total polymer concentrations. The basic characteristics of polymer solutions were enlightened by their viscosity and surface tension. The morphology of the fibers produced was characterized by SEM, while their thermal properties by DSC and TG analysis. Multiply regression was used to determine the parameters that have higher impact on the fiber diameter. It was possible to obtain thermally stable lignin/polyurethane nanofibers with diameters below 500nm. From the aspect of spinnability, 1:1 lignin/TPU contents were shown to be more feasible. On the other side, the most suitable processing parameters were found to be angular velocity of 8500rpm for nozzles of 0.5mm diameter and working distance of 30cm.

摘要

通过离心纺丝从木质素-热塑性聚氨酯聚合物共混物中生产出基于木质素的纳米纤维。通过优化两种聚合物在不同总聚合物浓度下的不同共混比的转速、喷嘴直径和喷丝头-收集器距离来选择最合适的工艺参数。聚合物溶液的基本特性通过其粘度和表面张力得到启示。通过 SEM 对纤维的形态进行了表征,通过 DSC 和 TG 分析对其热性能进行了研究。多元回归用于确定对纤维直径有更高影响的参数。有可能获得热稳定的木质素/聚氨酯纳米纤维,直径低于 500nm。从可纺性方面来看,1:1 的木质素/TPU 含量更可行。另一方面,发现最适合的加工参数为喷嘴直径为 0.5mm 时的角速度为 8500rpm,工作距离为 30cm。

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