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首页> 外文期刊>The Canadian Journal of Chemical Engineering >Removal of Linear and Monobranched Alkane from Aviation Gasoline by 5A Zeolite Adsorption for Octane Number Enhancement
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Removal of Linear and Monobranched Alkane from Aviation Gasoline by 5A Zeolite Adsorption for Octane Number Enhancement

机译:5A沸石吸附去除航空汽油中的直链和单支链烷烃以提高辛烷值。

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Due to continued concern about effects of tetraethyl lead (TEL) emission on the environment and human health, the complete removal of TEL from aviation gasoline (avgas) is a desirable pursuit. In order to maintain high antiknock performance of avgas, an advanced adsorption method was developed using 5A zeolite to remove linear and monobranched alkane from avgas for octane number enhancement. An experimental study of single, binary, and quaternary adsorption of octane isomers on a fixed bed reactor was performed in this work. The effects of partial pressure, operating temperature, and initial mixture composition on breakthrough curves and sorption selectivity were thoroughly studied. At fixed partial pressure, normal octane was the strongest-adsorbed component, followed by 2-methylheptane, 2, 5-dimethylhexane, and 2, 2, 4-trimethylpentane. Adsorption capacity of all components increased with increased partial pressure and decreased with increased operating temperature. However, for all binary mixtures studied in this work, the sorption selectivity decreased as total pressure increased. At equimolar concentrations the normal and monobranched isomers were preferentially adsorbed, while when the volume percentages of the isomers were different, the adsorption of the isomer with the higher volume ratio was favoured. The quaternary breakthrough curves for octane isomers at 473 K with each component having partial pressure of 0.15 kPa also indicated the feasibility of simultaneous removal of normal and monobranched isomers from a multiple-component mixture by this 5A zeolite.
机译:由于持续关注四乙基铅(TEL)排放对环境和人类健康的影响,因此从航空汽油(avgas)中完全去除TEL是一项理想的追求。为了保持航空汽油的高抗爆性能,开发了一种先进的吸附方法,使用5A沸石从航空汽油中除去线性和单支链烷烃,以提高辛烷值。在这项工作中进行了辛烷异构体在固定床反应器上的单,二元和四元吸附的实验研究。彻底研究了分压,操作温度和初始混合物组成对穿透曲线和吸附选择性的影响。在固定的分压下,正辛烷是最强吸附的组分,其次是2-甲基庚烷,2,5-二甲基己烷和2,2,4-三甲基戊烷。所有组分的吸附能力随分压的增加而增加,随工作温度的升高而下降。但是,对于这项工作中研究的所有二元混合物,吸附选择性随总压力的增加而降低。在等摩尔浓度下,正支链和单支链异构体优先被吸附,而当异构体的体积百分比不同时,则有利于更高体积比的异构体的吸附。辛烷值异构体在473 K下的各组分的分压为0.15 kPa的四级穿透曲线也表明,通过这种5A沸石可同时从多组分混合物中除去正构和单分支异构体。

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