化学
路易斯酸
乳酸
催化作用
果糖
水溶液
沸石
基础(拓扑)
碱金属
布朗斯特德-洛瑞酸碱理论
有机化学
无机化学
细菌
数学分析
生物
遗传学
数学
作者
Wenjie Dong,Zheng Shen,Bo-Yu Peng,Minyan Gu,Xuefei Zhou,Bo Xiang,Yalei Zhang
摘要
Abstract Lactic acid is an important platform molecule in the synthesis of a wide range of chemicals. However, in aqueous solutions without alkali, its efficient preparation via the direct catalysis of sugars is hindered by a side dehydration reaction to 5-hydroxymethylfurfural due to Brønsted acid, which originates from organic acids. Herein, we report that a previously unappreciated combination of common two metal mixed catalyst (Zn-Sn-Beta) prepared via solid-state ion exchange synergistically promoted this reaction. In water without a base, a conversion exceeding 99% for sucrose with a lactic acid yield of 54% was achieved within 2 hours at 190 °C under ambient air pressure. Studies of the acid and base properties of the Zn-Sn-Beta zeolite suggest that the introduction of Zn into the Sn-Beta zeolite sequentially enhanced both the Lewis acid and base sites and the base sites inhibited a series of side reactions related to fructose dehydration to 5-hydroxymethylfurfural and its subsequent decomposition.
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