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首页> 外文期刊>Journal of Materials Science >Acid catalytic hydrothermal conversion of carbohydrate biomass into useful substances
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Acid catalytic hydrothermal conversion of carbohydrate biomass into useful substances

机译:碳水化合物生物质的酸催化水热转化为有用物质

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摘要

Acidic hydrothermal degradation of glucose was examined in the presence of HCl, H2SO4, and H3PO4 with pH varying from 1.5 to 2.5 and reaction time varying from 1 to 10 min at 523 K, to investigate the effect of different acid catalysts and acid concentration on the production of 5-hydroxymethyl-2-furaldehyde (HMF) and levulinic acid from glucose. At lower acidities of pH 2.5, a considerably higher amount of HMF was produced. The increase in acid concentration accelerated the conversion of HMF to levulinic acid. The order for the production of HMF using the three acids is in the sequence of H3PO4 > H2SO4 > HCl. On the contrary, the order for production of levulinic acid follows HCl > H2SO4 > H3PO4. In the experimental conditions used in this study, the highest yield of levulinic acid is about 55%, which was obtained at pH 1.5 for 5 min in the case of HCl as an acid catalyst, and the total highest yields of HMF and levulinic acid are about 50%, which occurred at pH 2.0 for 5 min in the case of H3PO4 as an acid catalyst.
机译:在HCl,H2SO4和H3PO4存在下,在523 K下pH为1.5至2.5,反应时间为1至10 min的条件下,对葡萄糖的酸性水热降解进行了研究,以研究不同的酸催化剂和酸浓度对葡萄糖的影响。由葡萄糖生产5-羟甲基-2-糠醛(HMF)和乙酰丙酸。在较低的酸度(pH 2.5)下,会产生大量的HMF。酸浓度的增加加速了HMF向乙酰丙酸的转化。使用这三种酸生产HMF的顺序为H3PO4> H2SO4> HCl。相反,乙酰丙酸的生产顺序为HCl> H2SO4> H3PO4。在本研究中使用的实验条件下,乙酰丙酸的最高收率约为55%,这是在HCl作为酸催化剂的情况下在pH 1.5下5分钟获得的,而HMF和乙酰丙酸的总最高收率为在H3PO4作为酸催化剂的情况下,在pH值为2.0的情况下发生约50%的酸反应。

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