THE CHANGE IN HYDROCARBON COMPOSITION OF GASOLINE CATALYTIC CRACKING MSCC AS A RESULT OF HIS POSTTREATMENT THROUGH THE PRIME G+ PROCESS

Main Article Content

А. YERMAK
О. BUGAEVICH

Abstract

Regularities of distribution of sulfur compounds and hydrocarbons on fractions of catalytic cracking gasoline are considered. Need of carrying out purification of gasoline of catalytic cracking before its use as a component of commercial gasoline is shown. The essence of modern technologies of a hydrotreating of catalytic cracking gasoline is considered. Consistent patterns of change of properties of catalytic cracking gasoline of MSCC process (UOP) before and after its hydrotreating through the Prime G+ process (Axens) are determined. Features of change of hydrocarbonic composition of catalytic cracking gasoline as a result of its hydrotreating through the Prime G+ process are revealed. The hydrocarbonic composition of the light and heavy gasolines received in the course of a hydrotreating of catalytic cracking gasoline through the Prime G+ process is studied. The reasons of decrease in octane number of catalytic cracking gasoline of MSCC process in the course of its hydrotreating through the Prime G+ process are established.

Article Details

How to Cite
YERMAK А., & BUGAEVICH О. (2015). THE CHANGE IN HYDROCARBON COMPOSITION OF GASOLINE CATALYTIC CRACKING MSCC AS A RESULT OF HIS POSTTREATMENT THROUGH THE PRIME G+ PROCESS. Vestnik of Polotsk State University. Part B. Industry. Applied Sciences, (11), 127-132. Retrieved from https://journals.psu.by/industry/article/view/5571
Section
Chemical technology
Author Biography

А. YERMAK, Polotsk State University

канд. техн. наук, доц.

References

Роль процесса каталитического крекинга в производстве высокооктановых автомобильных бензинов / Р.А. Шарипов [и др.] // Современные проблемы науки и образования. – 2015. – № 1 [Электронный ресурс]. – Режим доступа: http://www.science-education.ru/121-18061. – Дата доступа: 28.07.2015.

Основные процессы нефтепереработки: справочник / Р.А. Мейерс [и др.]; пер. с англ. 3-го изд.; под ред. О.Ф. Глаголевой, О.П. Лыкова. – СПб.: ЦОП «Профессия», 2011. – 944 с.

Особенности пуска комбинированной установки каталитического крекинга по технологии MSCC UOP / В.Г. Баран [и др.] // Нефтепереработка и нефтехимия. – 2004. – № 11. – С. 14–17.

Syed Ahmed Ali, Nadhir A. Al-Baghli. Overview of FCC Gasoline Post-Treating Technologies // 14th Annual Saudi-Japanese Symposium: Catalysts in Petroleum Refining and Petrochemicals, 2004.

Yankov, V. Integration of the processes FCC feed hydrotreatment and FCC gasoline posttreatment through the Prime G process – opportunity for production of EURO V gasolines at increased profitability / Vassil Yankov, Dicho Stratiev, Atanas Yalamov // 45th International Petroleum Conference, June 13, 2011, Bratislava, Slovak Republic. – 17 p.

Hydrocarbon Processing’s Refining Processes 2006 Handbook. – 222 р.

Саханен, А.Н. Переработка нефти. Термические и каталитические процессы производства моторных топлив / А.Н. Саханен. – М.-Л.: Гостоптехиздат, 1947. – 429 с.

Поконова, Ю.В. Нефть и нефтепродукты: справочник. – СПб.: АНО НПО «Профессионал», 2003. – 528 с.

Гуреев, А.А. Применение автомобильных бензинов / А.А. Гуреев. – М.: Химия, 1972. – 368 с.

Разработка базы данных по октановым числам для математической модели процесса компаундирования товарных бензинов / Ю.А. Смышляева [и др.] // Изв. Томского политехн. ун-та. – 2011. – Т. 318, № 3. – С. 75–80.