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一种用于稳定木质素提取和高浓度乙醇生产的助溶剂预处理方法。

A hydrotrope pretreatment for stabilized lignin extraction and high titer ethanol production.

作者信息

Ji Hairui, Wang Le, Tao Furong, Yao Zhipeng, Li Xuezhi, Dong Cuihua, Pang Zhiqiang

机构信息

State Key Laboratory of Biobased Material and Green Papermaking, Qilu University of Technology (Shandong Academy of Sciences), 3501 Daxue road, Jinan, 250353, China.

School of Chemistry and Chemical Engineering, Qilu University of Technology (Shandong Academy of Sciences), 3501 Daxue road, Jinan, 250353, China.

出版信息

Bioresour Bioprocess. 2022 Apr 4;9(1):40. doi: 10.1186/s40643-022-00530-6.

Abstract

The biomass pretreatment strategies using organic acids facilitate lignin removal and enhance the enzymatic digestion of cellulose. However, lignin always suffers a severe and irreversible condensation. The newly generated C-C bonds dramatically affect its further upgrading. In this study, we used a recyclable hydrotrope (p-Toluenessulfonic acid, p-TsOH) to dissolve lignin under mild condition and stabilized lignin with a quenching agent (formaldehyde, FA) during extraction, achieving both value-added lignin extraction and efficient enzymatic saccharification of cellulose. Approximately 63.7% of lignin was dissolved by 80% (wt. %) p-TsOH with 1.5% FA addition at 80 °C, 30 min. The obtained lignin was characterized by FTIR spectroscopy, TGA, 2D HSQC NMR spectroscopy, and GPC. The results indicated that the extracted lignin exhibited excellent properties, such as light color, a low molecular weight (Mw, 5371 g/mol), and a narrow polydispersity (M/M, 1.63). The pretreated substrate was converted to ethanol via a quasi-simultaneous saccharification and fermentation process (Q-SSF). After fermentation of 60 h, the ethanol concentration reached 38.7 ± 3.3 g/L which was equivalent to a theoretical ethanol yield of 82.9 ± 2.2% based on the glucan content, while the residual glucose concentration was only 4.69 ± 1.4 g/L. In short, this pretreatment strategy protected lignin to form new C-C linkages and improved the enzymatic saccharification of glucan for high-titer ethanol production.

摘要

使用有机酸的生物质预处理策略有助于去除木质素并增强纤维素的酶促消化。然而,木质素总是会遭受严重且不可逆的缩合。新生成的C-C键极大地影响其进一步升级。在本研究中,我们使用一种可回收的助溶剂(对甲苯磺酸,p-TsOH)在温和条件下溶解木质素,并在提取过程中用淬灭剂(甲醛,FA)稳定木质素,实现了增值木质素提取和纤维素的高效酶促糖化。在80℃、30分钟条件下,添加1.5% FA的80%(重量)p-TsOH溶解了约63.7%的木质素。通过傅里叶变换红外光谱(FTIR)、热重分析(TGA)、二维异核单量子相干核磁共振光谱(2D HSQC NMR)和凝胶渗透色谱(GPC)对所得木质素进行了表征。结果表明,提取的木质素具有优异的性能,如颜色浅、低分子量(Mw,5371 g/mol)和窄多分散性(M/M,1.63)。预处理后的底物通过准同步糖化发酵过程(Q-SSF)转化为乙醇。发酵60小时后,乙醇浓度达到38.7±3.3 g/L,基于葡聚糖含量相当于理论乙醇产率为82.9±2.2%,而残留葡萄糖浓度仅为4.69±1.4 g/L。简而言之,这种预处理策略保护木质素形成新的C-C键,并改善了葡聚糖的酶促糖化以用于高滴度乙醇生产。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e57a/10992416/ad94ff130076/40643_2022_530_Fig1_HTML.jpg

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