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摘要:
Isomerization of glucose derived from lignocellulosic biomass is an important step in biorefinery. Fructose isomerized from glucose, is used as a highly attractive sweetener in the food and beverages industries. However, the prevalence of side reactions at high glucose concentrations is a serious issue, leading to a significant reduction in the fructose yield, especially in the aqueous phase. In this study, an efficient method for the conversion of highly concentrated glucose into fructose under low temperature conditions using triethylamine as the catalyst was developed. It was demonstrated that high fructose yield could be maintained at high glucose concentration. At 60℃, fructose yield of 38.7%and fructose selectivity of 80.6%were achieved in 1 mol/L (approximately 17 wt%) glucose. When glucose concentration was increased to 2 mol/L (approximately 31 wt% ), the fructose yield and selectivity were maintained at 34.7% and 77.4%, respectively. 13C nuclear magnetic resonance (NMR) spectrometer was used to examine the glucose isomerization reaction. Compared to the NaOH catalytic system, triethylamine acted as a buffer to provide a stable alkaline environment for the catalytic system, further maintaining a high level of catalytic efficiency for the isomerization of glucose to fructose.
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篇名 Triethylamine-catalyzed Isomerization of Glucose to Fructose under Low Temperature Conditions in Aqueous Phase
来源期刊 造纸与生物质材料(英文) 学科
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年,卷(期) 2020,(4) 所属期刊栏目 Isomerization of Glucose
研究方向 页码范围 27-35
页数 9页 分类号
字数 语种 英文
DOI 10.12103/j.issn.2096-2355.2020.04.004
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造纸与生物质材料(英文)
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2096-2355
10-1401/TS
北京市朝阳区启阳路4号院2号楼
eng
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