通过水提取和甘油辅助瞬时弹射汽爆相结合的方法,提高玉米秸秆的酶法制糖能力

IF 4.3 3区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Fengqin Wang, Hongli Dong, Weiwei Yu, Yinling Gao, Guotao Mao, Yanxia An, Hui Xie, Andong Song, Zhanying Zhang
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引用次数: 0

摘要

与不含甘油的 ICSE 相比,木质纤维素的甘油辅助瞬时弹射汽爆(ICSE)是一种提高糖产量的有效预处理方法。本研究对玉米秸秆的甘油辅助 ICSE 进行了研究,以了解反应机制并进一步优化工艺。结果表明,在 ICSE 之前对玉米秸秆进行水提取可减少假木质素的形成。水提取和甘油辅助 ICSE 的组合可生成分子量(Mw)为 2851 g/mol 的木质素,低于水提取和无甘油 ICSE 组合生成的分子量(Mw)为 3521 g/mole 的木质素。1H-13C NMR 分析表明,甘油可能通过酯化作用与木质素的羧基羟基发生反应,而在 ICSE 中未观察到脂肪族羟基的醚化作用。这些木质素分析表明,在甘油辅助 ICSE 的过程中,甘油保护木质素不发生缩合/再聚合反应。酶水解结果表明,在不进行水提取的情况下,将甘油用量从 0.2 千克/千克秸秆提高到 0.4 千克/千克秸秆可将葡聚糖消化率提高到 78%,但进一步提高到 0.5 千克/千克秸秆会降低葡聚糖消化率。此外,在甘油用量为 0.2-0.4 千克/千克秸秆时,与未清洗的秸秆相比,清洗预处理过的秸秆以去除甘油和其他生物质衍生化合物并不能提高葡聚糖消化率。将水提取和甘油辅助 ICSE 结合使用,可获得 89.7% 的高葡聚糖消化率和 25.5 克葡萄糖/100 克秸秆的总葡萄糖产量,分别比无甘油 ICSE 的秸秆高出 30.1% 和 7.5 克/100 克秸秆。由于甘油是一种低成本的碳源,所产生的酶水解物既含有葡萄糖又含有甘油,可直接用于通过微生物发酵生产生物产品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Enhanced enzymatic sugar production from corn stover by combination of water extraction and glycerol-assisted instant catapult steam explosion

Enhanced enzymatic sugar production from corn stover by combination of water extraction and glycerol-assisted instant catapult steam explosion

Glycerol-assisted instant catapult steam explosion (ICSE) of lignocellulose is an effective pretreatment method for enhancing sugar production compared to glycerol-free ICSE. In this study, glycerol-assisted ICSE of corn stover was studied in order to understand the reaction mechanisms and further optimize the process. Results showed that water extraction of corn stover prior to ICSE reduced pseudo-lignin formation. The combination of water extraction and glycerol-assisted ICSE led to the formation of lignin with a lower molecular weight (Mw) of 2851 g/mol than 3521 g/mole of that from the combination of water extraction and glycerol-free ICSE. 1H-13C NMR analysis revealed that glycerol likely reacted with lignin carboxylic OHs through esterification while etherification of aliphatic OHs was not observed in ICSE. These lignin analyses indicated that glycerol protected lignin from condensation/repolymerization during glycerol-assisted ICSE. Enzymatic hydrolysis results showed that without water extraction increasing glycerol usage from 0.2 kg/kg stover to 0.4 kg/kg stover improved glucan digestibility to 78% but further increase to 0.5 kg/kg stover reduced glucan digestibility. In addition, at the glycerol usage of 0.2–0.4 kg/kg stover, washing of pretreated stover for removal of glycerol and other biomass-derived compounds did not improve glucan digestibility compared to unwashed ones. Combination of water extraction and glycerol-assisted ICSE led to a high glucan digestibility of 89.7% and a total glucose yield of 25.5 g glucose/100 g stover, which were 30.1% and 7.5 g/100 g stover higher than those derived from glycerol-free ICSE of stover, respectively. Since glycerol is a low-cost carbon source, the resulting enzymatic hydrolysate that contained both glucose and glycerol may be directly used to produce bioproducts by microbial fermentation.

Graphical Abstract

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来源期刊
Bioresources and Bioprocessing
Bioresources and Bioprocessing BIOTECHNOLOGY & APPLIED MICROBIOLOGY-
CiteScore
7.20
自引率
8.70%
发文量
118
审稿时长
13 weeks
期刊介绍: Bioresources and Bioprocessing (BIOB) is a peer-reviewed open access journal published under the brand SpringerOpen. BIOB aims at providing an international academic platform for exchanging views on and promoting research to support bioresource development, processing and utilization in a sustainable manner. As an application-oriented research journal, BIOB covers not only the application and management of bioresource technology but also the design and development of bioprocesses that will lead to new and sustainable production processes. BIOB publishes original and review articles on most topics relating to bioresource and bioprocess engineering, including: -Biochemical and microbiological engineering -Biocatalysis and biotransformation -Biosynthesis and metabolic engineering -Bioprocess and biosystems engineering -Bioenergy and biorefinery -Cell culture and biomedical engineering -Food, agricultural and marine biotechnology -Bioseparation and biopurification engineering -Bioremediation and environmental biotechnology
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