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首页> 外文期刊>Catalysis science & technology >Catalytic dehydration of ethanol over hierarchical ZSM-5 zeolites: studies of their acidity and porosity properties
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Catalytic dehydration of ethanol over hierarchical ZSM-5 zeolites: studies of their acidity and porosity properties

机译:催化脱水乙醇分级他们的酸度和ZSM-5沸石:研究孔隙度的属性

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摘要

The catalytic activity of novel micro/mesoporous ZSM-5 in the dehydration process of alcohols has been studied with respect to their acidity and porosity. Samples characterized by similar Si/Al ratios in the range between 23 and 36 were chosen to ensure the ability to properly monitor the changes in catalytic performance related to the concentration of acid sites, as well as their accessibility and strength. Special attention has been paid to porosity studies involving low-temperature nitrogen sorption and the quasi-equilibrated temperature programmed desorption of hydrocarbons. Thus, the wide range of materials from typically microporous ZSM-5 to micro/mesoporous analogues obtained by different methods, but presenting many similar properties, allowed us to investigate the influence of porosity character on catalytic performance. Both the acidity and porosity properties, which were significantly perturbed by various synthesis and modification strategies, were clearly reflected in the catalytic performance of hierarchical zeolites, described as volcano curve dependence.
机译:小说的催化活性微/介孔ZSM-5醇的脱水过程研究对他们的酸度和孔隙度。比率在23日和36之间选择确保适当的监控能力催化性能相关的变化酸的浓度网站,以及他们可访问性和力量。对孔隙度的研究涉及低温氮吸附和quasi-equilibrated温度设定解吸的碳氢化合物。通常微孔ZSM-5的材料微/介孔获得的类似物不同方法,但许多类似的属性,让我们调查的影响孔隙度对催化性能的特点。酸度和孔隙度属性,很大程度上受到各种合成和摄动修改策略,显然是反映在分层的催化性能沸石,称为火山曲线依赖。

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