4.7 Article

Comparison of Corn Stover Pretreatments with Lewis Acid Catalyzed Choline Chloride, Glycerol and Choline Chloride-Glycerol Deep Eutectic Solvent

期刊

POLYMERS
卷 13, 期 7, 页码 -

出版社

MDPI
DOI: 10.3390/polym13071170

关键词

lewis acid; choline chloride; glycerol; deep eutectic solvent; lignocellulosic pretreatment

资金

  1. National Key R&D Program of China [2018YFB1501701]
  2. Science and Technology Service Network Program of Chinese Academy of Sciences [KFJ-STS-QYZX-096]

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In this study, it was found that acidified solutions of ChCl and glycerol were more efficient at removing lignin and xylan from corn stover compared to DES. Acidified ChCl solution showed better pretreatment performance than acidified glycerol solution. Additionally, the presence of 20% water in DES reduced its capability for delignification and xylan removal. Enzymatic saccharification of pretreated CS was highly correlated to delignification and cellulose crystallinity, but less correlated to xylan removal.
Herein, corn stover (CS) was pretreated by less corrosive lewis acid FeCl3 acidified solutions of neat and aqueous deep eutectic solvent (DES), aqueous ChCl and glycerol at 120 degrees C for 4 h with single FeCl3 pretreatment as control. It was unexpected that acidified solutions of both ChCl and glycerol were found to be more efficient at removing lignin and xylan, leading to higher enzymatic digestibility of pretreated CS than acidified DES. Comparatively, acidified ChCl solution exhibited better pretreatment performance than acidified glycerol solution. In addition, 20 wt% water in DES dramatically reduced the capability of DES for delignification and xylan removal and subsequent enzymatic cellulose saccharification of pretreated CS. Correlation analysis showed that enzymatic saccharification of pretreated CS was highly correlated to delignification and cellulose crystallinity, but lowly correlated to xylan removal. Recyclability experiments of different acidified pretreatment solutions showed progressive decrease in the pretreatment performance with increasing recycling runs. After four cycles, the smallest decrease in enzymatic cellulose conversion (22.07%) was observed from acidified neat DES pretreatment, while the largest decrease (43.80%) was from acidified ChCl pretreatment. Those findings would provide useful information for biomass processing with ChCl, glycerol and ChCl-glycerol DES.

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