A study of poplar organosolv lignin after melt rheology treatment as carbon fiber precursors

作者:Sun Qining; Khunsupat Ratayakorn; Akato Kokouvi; Tao Jingming; Labbe Nicole*; Gallego Nidia C; Bozell Joseph J; Rials Timothy G; Tuskan Gerald A; Tschaplinski Timothy J; Naskar Amit K*; Pu Yunqiao; Ragauskas Arthur J*
来源:Green Chemistry, 2016, 18(18): 5015-5024.
DOI:10.1039/c6gc00977h

摘要

Lignins from various poplar genotypes were isolated by using organosolv fractionation and subjected to rheological treatment at various temperatures. Physicochemical characterization of the lignin variants shows a broad distribution of glass transition temperatures, melt viscosity, and pyrolysis char residues. Rheological treatment at 170 degrees C induces lignin repolymerization accompanied with an increase in condensed linkages, molecular weights, and viscosities. In contrast, rheology testing at 190 degrees C results in the decrease in lignin aliphatic and phenolic hydroxyl groups, beta-O-aryl ether linkages, molecular weights, and viscosity values. Lignin under air cooling generates more oxygenated and condensed compounds, but lower amounts of ether linkages than lignin cooled under nitrogen. Lignin with a lower syringyl/guaiacyl ratio tends to form more cross-linkages along with higher viscosity values, higher molecular weight and larger amounts of condensed bonds.

  • 出版日期2016