IMPROVEMENT OF FUEL OIL VACUUM RECTIFICATION PROCESS

Rozana Z. Gumerova, T. V. Alushkina
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Abstract

Primary oil distillation units form the basis of all oil refineries; the quality and yield of the resulting fuel components, as well as raw materials for secondary and other oil refining processes, depend on their operation. Many Atmospheric Vacuum Tubing (AVT) plants are characterized by low recovery of heavy vacuum gas oil. Insufficient selection of heavy vacuum gas oil production leads to a high yield of vacuum residue - tar, which reduces the volume of oil refining in general.The article analyzes ways to improve the process of vacuum distillation of fuel oil at CDU/AVT primary oil distillation units, and searches for ways to increase the efficiency of already built CDU/AVT plants by increasing the selection of heavy vacuum gas oil. Options for technical re-equipment are presented to improve the technical and economic efficiency of atmospheric-vacuum tubing plants with the maximum use of the best achievements in this area and the maximum possible selection of heavy vacuum gas oil at existing primary oil distillation units. The schemes of intensification during vacuum distillation by the method of fractionation of hydrocarbon raw materials by exposing it to electromagnetic oscillations, by the method of gas oil cryolysis. Besides, the schemes of fuel oil distillation according to a two-column scheme and the rectification of half-tar in an additional vacuum column are considered. The main features in the technological design of the process, as well as the features of installation operation, are noted. The proposed schemes make it possible to obtain high-quality feedstock for catalytic cracking and hydrocracking with a high recovery of vacuum gas oil.
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改进燃油真空净化工艺
初馏装置是所有炼油厂的基础;所产生的燃料成分以及二次和其他炼油工艺的原料的质量和产量都取决于初馏装置的运行。许多常压真空管(AVT)装置的特点是重真空气体油回收率低。文章分析了如何改进 CDU/AVT 一级石油蒸馏装置的燃料油真空蒸馏工艺,并寻找通过提高重质真空瓦斯油的选择率来提高已建 CDU/AVT 装置效率的方法。提出了技术改造方案,以提高常压真空油管厂的技术和经济效益,最大限度地利用该领域的最佳成果,并在现有的一次油蒸馏装置中尽可能多地选择重质真空气体油。通过将碳氢化合物原料置于电磁振荡中进行分馏的方法,以及通过气油低温分解的方法,实现真空蒸馏过程中的强化方案。此外,还考虑了根据双塔方案进行燃料油蒸馏的方案,以及在额外的真空塔中对半焦油进行精馏的方案。同时还指出了工艺技术设计的主要特点以及安装操作的特点。所提出的方案可以获得用于催化裂化和加氢裂化的高质量原料,并具有较高的真空气体油回收率。
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IMPROVING SAFETY SYSTEMS WHEN WORKING AT HEIGHTS DIGITAL SOLUTIONS FOR QUALITY CONTROL OF DEMULSIFIERS INTENSIFICATION OF HEAT TRANSFER OF CONTACT REACTOR FOR SULFURIC ACID ALKYLATION OF ISOBUTANE WITH BUTYLENES RESEARCH AND SELECTION OF CATALYSTS FOR INSTALLATION PENTANE-HEXANE ISOMERIZATION THE EFFECT OF DEPRESSANT-DISPERSING ADDITIVES ON SUMMER DIESEL FUEL
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