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室温下,采用溶解预处理的 LiBr·3HO 实现纤维素润湿性的超快提升。

Ultrafast improvement of cellulose accessibility via non-dissolving pretreatment with LiBr·3HO under room temperature.

机构信息

CAS Key Laboratory of Biofuels, Shandong Engineering Laboratory of Single Cell Oil, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao, Shandong 266101, China; National Engineering Laboratory of Textile Fiber Materials and Processing Technology, Zhejiang Sci-Tech University, Hangzhou 310018, China.

CAS Key Laboratory of Biofuels, Shandong Engineering Laboratory of Single Cell Oil, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao, Shandong 266101, China.

出版信息

Carbohydr Polym. 2022 May 15;284:119180. doi: 10.1016/j.carbpol.2022.119180. Epub 2022 Jan 29.

Abstract

The development of sustainable and effective pretreatment methods to improve the accessibility of cellulose is of vital importance for its utilization. Herein, a novel high-efficiency pretreatment method based on lithium bromide trihydrate (LBTH) was established, which realized the fast improvement of cellulose accessibility under ambient conditions without dissolution of cellulose. The cellulose I structure of microcrystalline cellulose (MCC) was transformed into amorphous structure just within 5 min of LBTH pretreatment, and the crystallinity was reduced from 79.1 to 19.9%. After pretreatment for 30 min, the BET surface area of MCC increased from 2.1 to 125.9 m/g. Particularly, the pretreated cellulose could be near-completely saccharified to glucose (98.3%) with ultra-low enzyme dosage (2.5 mg protein/g-glucan) just within 24 h, while the conversion of untreated MCC under the same conditions was only 16.7%. Additionally, this non-dissolving pretreatment is beneficial to the separation and recycling of LBTH, guaranteeing a clean and sustainable process.

摘要

发展可持续且有效的预处理方法以提高纤维素的可及性对于其利用至关重要。在此,建立了一种基于三水合溴化锂(LBTH)的新型高效预处理方法,该方法实现在环境条件下无需溶解纤维素即可快速提高纤维素的可及性。微晶纤维素(MCC)的纤维素 I 结构在 LBTH 预处理的 5 分钟内转变为无定形结构,结晶度从 79.1%降低至 19.9%。预处理 30 分钟后,MCC 的 BET 比表面积从 2.1 增加至 125.9 m/g。特别地,预处理后的纤维素仅在 24 小时内即可近乎完全糖化生成葡萄糖(98.3%),而相同条件下未经处理的 MCC 的转化率仅为 16.7%。此外,这种不溶解的预处理有利于 LBTH 的分离和回收,保证了清洁和可持续的工艺过程。

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