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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >NMR Insights on the Properties of ZnCl2 Molten Salt Hydrate Medium through Its Interaction with SnCl4 and Fructose
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NMR Insights on the Properties of ZnCl2 Molten Salt Hydrate Medium through Its Interaction with SnCl4 and Fructose

机译:NMR观察ZnCl2熔融盐水合物介质与SnCl4和果糖相互作用的性质

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The solvent properties of ZnCl2 molten salt medium and its synergic effect with the Lewis acid catalyst, Sn4+, for biomass conversion, were investigated by nuclear magnetic resonance. The tautomeric distribution of fructose in the ZnCl2 molten salt medium was examined, and its effect for humins formation during the biomass conversion was evaluated. The ion complex composed by Sn4+ and Zn2+ indicated that there is a synergic catalytic effect between these two Lewis acid ions. 13C NMR spectra of fructose in different ZnCl2 molten salt hydrate concentrations revealed that the concentration of β-furanose and α-furanose tautomers, which lead to 5-HMF, were significantly decreased with increased salt concentration. Meanwhile the β- pyranose tautomer, which is correlated with humins formation, was increased significantly.
机译:通过核磁共振研究了ZnCl2熔盐介质的溶剂性质及其与路易斯酸催化剂Sn4 +的协同转化作用。检查了果糖在ZnCl2熔融盐介质中的互变异构分布,并评估了其对生物质转化过程中腐殖质形成的影响。由Sn4 +和Zn2 +组成的离子络合物表明这两个路易斯酸离子之间存在协同催化作用。果糖在不同的ZnCl2熔融盐水合物浓度中的13C NMR光谱显示,导致5-HMF的β-呋喃糖和α-呋喃糖互变异构体的浓度随着盐浓度的增加而显着降低。同时,与腐殖质形成相关的β-吡喃糖互变异构体显着增加。

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