Increasing the Yield of Light Distillates by Wave Action on Oil Raw Materials

IF 0.5 Q4 CHEMISTRY, MULTIDISCIPLINARY
N. Zhakirova, R. Salakhov, L. Sassykova, R. Khamidullin, T. Deberdeev, U.R. Yalyshev, A.R. Khamidi, T. Seilkhanov
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引用次数: 3

Abstract

The article presents the results of the electromagnetic activation of petroleum feed in the vortex layer apparatus. It is shown that under the electromagnetic influence, there is a significant increase in the proportion of straight-run gasoline fraction distillate, as well as a change in the physicochemical parameters of the light fractions obtained as a result of the cavitation effect and the low-temperature cracking. It has been established that the processes of wave action on oil occurring in the electromagnetic field zone lead to a change in the individual and group hydrocarbon composition of the distillates obtained. The gasoline fraction produced from activated petroleum, due to an increase in the proportion of aromatic compounds, has a high octane number compared to the original straight-run fraction and low content of alkenes, which allows us to recommend its use as a high-octane component of motor fuels in the compounding and production of commercial gasoline.
波浪作用于石油原料提高轻质馏分油收率
本文介绍了涡流层装置中石油进料电磁活化的实验结果。结果表明,在电磁作用下,汽油直馏馏分馏出物的比例显著增加,轻质馏分的理化参数也因空化效应和低温裂解而发生变化。已经确定,在电磁场区发生的波浪作用于石油的过程导致所得到的馏分油的单体和群烃组成的变化。由活化石油生产的汽油馏分,由于芳香族化合物的比例增加,与原始的直馏馏分相比,辛烷值高,烯烃含量低,这使我们可以推荐将其作为汽车燃料的高辛烷值成分在商业汽油的配制和生产中使用。
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来源期刊
Eurasian Chemico-Technological Journal
Eurasian Chemico-Technological Journal CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
1.10
自引率
20.00%
发文量
6
审稿时长
20 weeks
期刊介绍: The journal is designed for publication of experimental and theoretical investigation results in the field of chemistry and chemical technology. Among priority fields that emphasized by chemical science are as follows: advanced materials and chemical technologies, current issues of organic synthesis and chemistry of natural compounds, physical chemistry, chemical physics, electro-photo-radiative-plasma chemistry, colloids, nanotechnologies, catalysis and surface-active materials, polymers, biochemistry.
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