Effect of Acid Treatment on the Properties of Zeolite Catalyst for Straight-Run Gasoline Upgrading

L. Velichkina, Ya. E. Barbashin, A. Vosmerikov
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引用次数: 1

Abstract

The objective of this research was to analyze the effect of different concentrations of nitric and hydrochloric acids on the structural, acidic, and catalytic properties of a post-synthetic treated ZSM-5 type zeolite at various temperatures. The properties of zeolite catalysts were determined using different methods, such as the Brunauer-Emmett-Teller (BET) method for specific surface area, temperature-programmed desorption (TPD) of ammonia method for acidic properties, and a flow-through unit with fixed bed catalyst (with upgrading straight-run gasoline fraction of oil) for catalytic activities of initial zeolite and acid-treated samples. The structural and acidic properties of both untreated and treated zeolites were investigated, and the effect of acid treatment on the catalytic properties of the samples in the course of upgrading the straight-run gasoline fraction of oil was determined. The post-synthetic treatment with aqueous nitric acid increased the specific surface area and volume of micropores of ZSM-5 zeolite, while the treatment with aqueous hydrochloric acid led to the formation of mesopores. Acid treatments of zeolite decreased the number of acid sites, mainly due to diminished concentration of low-temperature sites. The yield of liquid products in the conversion of straight-run gasoline fraction of oil, i.e., generation of high-octane gasolines with improved environmental features, was increased using acid-treated zeolites, which was due to the decrease in arene content.
酸处理对直馏汽油沸石催化剂性能的影响
本研究的目的是分析不同浓度的硝酸和盐酸对合成后处理的ZSM-5型沸石在不同温度下的结构、酸性和催化性能的影响。采用不同的方法测定沸石催化剂的性质,如比表面积的brunauer - emmet - teller (BET)法、酸性性质的程序化氨温度解吸(TPD)法,以及初始沸石和酸处理样品的催化活性的固定床催化剂(升级汽油馏分)的流动装置。研究了未经处理和处理的沸石的结构和酸性,并测定了酸处理对油中直馏汽油馏分提质过程中样品催化性能的影响。合成后硝酸水溶液处理增加了ZSM-5分子筛微孔的比表面积和体积,而盐酸水溶液处理导致中孔的形成。酸处理降低了沸石酸位的数量,主要是由于低温位的浓度降低。酸处理沸石降低了芳烃含量,提高了原油直馏汽油馏分转化过程中液体产品的收率,即生产环境性能更好的高辛烷值汽油。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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