Kinetic Model Development of the Oligomerization of High Olefin Containing Hydrocarbon By-products to Clean Engine Fuels on Amberlyst Catalyst

IF 1.4 4区 工程技术 Q3 ENGINEERING, CHEMICAL Periodica Polytechnica Chemical Engineering Pub Date : 2022-05-12 DOI:10.3311/ppch.19628
Ágnes Bárkányi, T. Varga, J. Hancsók
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Abstract

Nowadays, since the demand for engine fuels is continuously changing, in petroleum refineries, increasing the flexibility of gasoline/middle distillate is still an important issue, e.g. by oligomerizing light olefins (3–6 carbon atoms). The aim of our work was to develop a valid kinetic model based on the extended Eley-Rideal mechanism to describe the oligomerization of the olefin content of light naphtha by fluidized catalytic cracking (FCC) on an ion-exchange resin. Experiments were carried out in a fixed-bed tubular reactor at temperatures of between 80 and 130 °C with liquid hourly space velocities (LHSV) of between 0.5 and 2.0 1/h using Amberlyst® 15 as a catalyst. The oligomerization process was characterized based on the composition of products determined by gas chromatography. The conversion of olefins and the selectivity of the oligomerization reactions forming C8-11 and C12+ hydrocarbons (C8-11 and C12+ selectivity; unit: relative %) were dependent on factors that determine the reactor performance in order to identify the kinetic model parameters. Given that the developed reactor model described the measured data reasonably accurately, it can be used in terms of the optimal design of an industrial oligomerization reactor.
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高含烯烃副产物在Amberlyst催化剂上低聚制备清洁发动机燃料动力学模型的建立
如今,由于对发动机燃料的需求不断变化,在炼油厂中,增加汽油/中间馏分油的灵活性仍然是一个重要的问题,例如通过低聚化轻烯烃(3-6个碳原子)。本研究的目的是基于扩展的Eley-Rideal机制,建立一个有效的动力学模型来描述轻石脑油在离子交换树脂上流化催化裂化(FCC)对烯烃含量的低聚反应。实验在固定床管式反应器中进行,温度在80 ~ 130℃之间,液体每小时空速(LHSV)在0.5 ~ 2.0 /h之间,使用Amberlyst®15作为催化剂。通过气相色谱法对产物组成进行表征。烯烃的转化和形成C8-11和C12+烃的低聚反应的选择性(C8-11和C12+选择性);单位:相对%)依赖于决定反应器性能的因素,以便确定动力学模型参数。所建立的反应器模型能较准确地描述实测数据,可用于工业低聚反应器的优化设计。
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来源期刊
CiteScore
3.10
自引率
7.70%
发文量
44
审稿时长
>12 weeks
期刊介绍: The main scope of the journal is to publish original research articles in the wide field of chemical engineering including environmental and bioengineering.
期刊最新文献
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