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基于水热水解工艺从能源高粱中同时提取可溶性糖和不可溶性糖。

Co-extraction of soluble and insoluble sugars from energy sorghum based on a hydrothermal hydrolysis process.

机构信息

Guangdong Key Laboratory of New and Renewable Energy Research and Development, Key Laboratory of Renewable Energy, Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences, Guangzhou 510640, China.

Guangdong Key Laboratory of New and Renewable Energy Research and Development, Key Laboratory of Renewable Energy, Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences, Guangzhou 510640, China; University of Chinese Academic of Sciences, Beijing 100039, China.

出版信息

Bioresour Technol. 2016 Dec;221:111-120. doi: 10.1016/j.biortech.2016.08.118. Epub 2016 Sep 13.

Abstract

A process for co-extraction of soluble and insoluble sugars from energy sorghum (ES) was developed based on hydrothermal hydrolysis (HH). Two series of ES were investigated: one (N) with a high biomass yield displayed a higher recalcitrance to sugar release, whereas the second (T) series was characterized by high sugar extraction. The highest total xylose recoveries of 87.2% and 98.7% were obtained for N-11 and T-106 under hydrolysis conditions of 180°C for 50min and 180°C for 30min, respectively. Moreover, the T series displayed higher enzymatic digestibility (ED) than the N series. The high degree of branching (arabinose/xylose ratio) and acetyl groups in the hemicellulose chains of T-106 would be expected to accelerate sugar release during the HH process. In addition, negative correlations between ED and the lignin content, crystallinity index (CrI) and syringyl/guaiacyl (S/G) lignin ratio were observed. Furthermore, finding ways to overcome the thickness of the cell wall and heterogeneity of its chemical composition distribution would make cellulose more accessible to the enzyme.

摘要

从能源高粱(ES)中同时提取可溶性和不溶性糖的方法是基于水热水解(HH)开发的。研究了两种 ES 系列:一种(N)具有较高的生物质产量,表现出更高的抗糖释放性,而第二种(T)系列的特点是糖提取率高。在 180°C 水解 50min 和 180°C 水解 30min 的条件下,N-11 和 T-106 的总木糖回收率最高分别为 87.2%和 98.7%。此外,T 系列的酶解消化率(ED)高于 N 系列。T-106 半纤维素链中支化程度高(阿拉伯糖/木糖比)和乙酰基,预计在 HH 过程中会加速糖的释放。此外,还观察到 ED 与木质素含量、结晶度指数(CrI)和愈创木基/松柏基(S/G)木质素比之间呈负相关。此外,找到克服细胞壁厚度和其化学成分分布不均匀的方法将使纤维素更容易被酶作用。

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