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碱预处理对桉树木材木质素结构的影响。

Effect of alkaline preswelling on the structure of lignins from Eucalyptus.

机构信息

Beijing Key Laboratory of Lignocellulosic Chemistry, Beijing Forestry University, Beijing, 100083, PR China.

Department of Bioproducts and Biosystems Engineering, University of Minnesota, Saint Paul, Minnesota 55108-6130, United States.

出版信息

Sci Rep. 2017 May 2;7:45752. doi: 10.1038/srep45752.

Abstract

A clear elucidation of structural feature of whole lignin in plant cell wall is of great importance for understanding lignin biosynthesis mechanism and developing lignin based chemicals or materials under the current biorefinery scenario. Swollen residual enzyme lignin (SREL) has been identified as an ideal representative for native lignin in the plant walls. To investigate the influence of preswelling conditions on the structural features, the SREL obtained through preswelling the ball-milled Eucalyptus wood powder in 2, 4 and 8% NaOH solutions and subsequent in-situ enzymatic hydrolysis were thoroughly characterized. A cellulolytic enzyme lignin (CEL) was also prepared as a comparison. The quantitative NMR analyses indicated that the relative contents of β-O-4' linkages in SRELs were higher than that in CEL. The lignin structure tended to undergo more destruction with the elevated NaOH concentration. A relatively low NaOH concentration (2% in this study), which could be applied to effectively remove hemicelluloses and transform cellulose structure from cellulose I to cellulose II, was competent to prepare SREL as an ideal representative for the protolignin. An optimization of SREL preparation was essential for a better understanding of the whole protolignin.

摘要

阐明植物细胞壁中木质素的整体结构特征对于理解木质素生物合成机制以及在当前生物炼制背景下开发木质素基化学品或材料具有重要意义。溶胀残余酶木质素(SREL)已被确定为植物细胞壁中原生木质素的理想代表。为了研究预溶胀条件对结构特征的影响,通过在 2%、4%和 8%NaOH 溶液中对球磨桉树木粉进行预溶胀,然后进行原位酶水解,得到了 SREL。还制备了一种纤维素酶木质素(CEL)作为比较。定量 NMR 分析表明,SREL 中β-O-4'键的相对含量高于 CEL。木质素结构随着 NaOH 浓度的升高而更容易受到破坏。在这项研究中,相对较低的 NaOH 浓度(2%)能够有效地去除半纤维素并将纤维素结构从纤维素 I 转化为纤维素 II,因此能够制备出 SREL,作为原木质素的理想代表。为了更好地理解整个原木质素,对 SREL 的制备进行优化是必要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9c7/5411976/17413cfe20ae/srep45752-f1.jpg

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