Acid activation as a method to control the catalytic properties of montmorillonite in the synthesis of solketal from glycerol and acetone

O. Kovalenko, I. Simentsova, V. N. Panchenko, M. Timofeeva
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引用次数: 0

Abstract

The effect of acid activation using 0.125–0.5 mol/l Н2SO4, HCl and HNO3 on the physicochemical and catalytic properties of natural clay (95 % montmorillonite, Mukhartalinsk deposit) was investigated. The rate and selectivity of the solketal (2,2-dimethyl-4-hydroxymethyl-1,3-dioxolane) synthesis from glycerol and acetone were shown to depend on the concentration and type of the acid. The reaction rate and the yield of solketal increase with increasing concentration of the acid, which is consistent with the growth in the amount of Broensted sites. As the surface acidity increases, the efficiency of the system increases in the series MM/HCl > MM/HNO3 > MM/H2SO4.
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用酸活化法控制蒙脱土在甘油丙酮合成索酮过程中的催化性能
研究了0.125 ~ 0.5 mol/l Н2SO4、HCl和HNO3酸活化对天然粘土(Mukhartalinsk矿床95%蒙脱土)理化性能和催化性能的影响。由甘油和丙酮合成索酮(2,2-二甲基-4-羟甲基-1,3-二恶索烷)的速率和选择性取决于酸的浓度和类型。反应速率和溶剂收率随酸浓度的增加而增加,这与溴化位点的增加是一致的。随着表面酸度的增加,体系的效率依次为MM/HCl > MM/HNO3 > MM/H2SO4。
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