Understanding the structural changes of lignin in poplar following steam explosion pretreatment

To understand the modifications of lignin in the steam explosion process (209°C, 7 min), lignin samples in native poplar (L ), steam explosion solid residue (L ) and steam explosion liquid (L ) were separated and studied. The lignin samples (L , L and L ) were characterized and analyzed by size excl...

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Veröffentlicht in:Holzforschung 2020-03, Vol.74 (3), p.275-285
Hauptverfasser: Wang, Huimei, Liu, Zhong, Hui, Lanfeng, Ma, Lan, Zheng, Xu, Li, Jingzhi, Zhang, Yan
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Sprache:eng
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Zusammenfassung:To understand the modifications of lignin in the steam explosion process (209°C, 7 min), lignin samples in native poplar (L ), steam explosion solid residue (L ) and steam explosion liquid (L ) were separated and studied. The lignin samples (L , L and L ) were characterized and analyzed by size exclusion chromatography (SEC), Fourier transform infrared spectroscopy (FTIR), and nuclear magnetic resonance [carbon 13 numclear magnetic resonance ( C-NMR) and heteronuclear single quantum coherence or heteronuclear single quantum correlation experiment NMR (HSQC) NMR] analysis. The results revealed that the pretreatment induced reductions in amounts of β-O-4′, β-β′, and spirodienone structure, and increases in the syringyl/guaiacyl (S/G) ratio from 1.14 (L ) to 1.70 (L ) and 1.86 (L ). The HSQC NMR spectra also gave more information about the predominance of G and S units, and only small amounts of p-hydroxyphenyl (H) units. Moreover, SEC demonstrated the depolymerization and repolymerization of lignin, which were the main reasons for the increase in the average molecular weight of L and the decrease in average molecular weight of L , respectively. In brief, after steam explosion treatment, the lignin structure changed, but the backbone structure was not noticeably modified.
ISSN:0018-3830
1437-434X
DOI:10.1515/hf-2019-0087