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聚乙二醇改性碱木质素的制备与表征

Preparation and Characterization of Modified Soda Lignin with Polyethylene Glycol.

作者信息

Zhang Fangda, Lin Jian, Zhao Guangjie

机构信息

Beijing Key Laboratory of Wood Science and Engineering, Beijing Forestry University, Beijing 100083, China.

出版信息

Materials (Basel). 2016 Oct 7;9(10):822. doi: 10.3390/ma9100822.

Abstract

Soda lignin does not have thermal flowing characteristics and it is impossible for it to be further thermally molded. To achieve the fusibility of soda lignin for fiber preparation by melt-spinning, an effective method for soda lignin modification was conducted by cooking it with polyethylene glycol (PEG) 400 at various ratios. The higher the ratio of PEG that was used, the more PEG molecular chains were grafted at the alpha carbon of the soda lignin through ether bonds, resulting in lower thermal transition temperatures and more excellent fusibility. The modified soda lignin with a weight ratio of lignin to PEG of 1:4 exhibited a relative thermal stability of molten viscosity at selected temperatures. Thereafter, the resultant fusible soda lignin was successfully melt-spun into filaments with an average diameter of 33 ± 5 μm, which is smaller than that of some industrial lignins. Accordingly, it is possible to utilize soda lignin to produce fibrous carbonaceous materials.

摘要

碱木质素不具有热流动特性,因此无法进一步热成型。为了通过熔融纺丝实现碱木质素在纤维制备中的可熔性,采用了一种有效的碱木质素改性方法,即将其与聚乙二醇(PEG)400按不同比例进行蒸煮。使用的PEG比例越高,通过醚键接枝到碱木质素α碳上的PEG分子链就越多,从而导致热转变温度降低,可熔性更优异。木质素与PEG重量比为1:4的改性碱木质素在选定温度下表现出相对稳定的熔融粘度。此后,所得的可熔性碱木质素成功地熔融纺成平均直径为33±5μm的长丝,该直径小于一些工业木质素的直径。因此,利用碱木质素生产纤维状碳质材料是可行的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01d6/5456608/974f2e8a5900/materials-09-00822-g001.jpg

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