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Comparison of Moving-Bed Catalytic Tar Hydrocracking Processes

机译:移动床催化焦油加氢裂化方法的比较

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摘要

In recent years, there has been a trend in the global oil industry to improve the proportion of heavy high-sulfur crude oils in the total volume of extracted and processed resources, reserves of which are estimated at over 800 billion metric tons. Therefore, the main line of oil refining is processing of heavy crudes and residua to allow maximum use of the hydrocarbon potential and yield of high-margin products. Hydrogenation processes of heavy raw materials are most attractive in terms of product quality. This article analyzes tar hydrocracking processes that are either in operation or at the stage of full-scale testing. These include Veba Combi-Cracker (VCC), Uniflex, suspended-bed catalyst hydrocracking (ENI), and vacuum residue hydroconversion (TIPS RAS). These technologies use heterogeneous catalysts and are designed to obtain the largest possible amount of liquid products. This article discusses the features of each technology, highlights their advantages and disadvantages, shows the main approaches to process management, and speculates about the development of these technologies. Tar refining is a major process in heavy oil upgrading, and the development of efficient tar-processing methods will influence refinery configurations and management.
机译:近年来,全球石油工业呈趋势,提高大型高硫原油中的比例,在提取和加工资源的总量中,储备估计超过8000亿公吨。因此,炼油的主要线是重型钻石和残渣的加工,以允许最大限度地利用烃潜力和高裕度产品的产量。重型原料的氢化过程在产品质量方面最具吸引力。本文分析了在运行或全规模测试阶段的焦油加氢裂化过程。这些包括VEBA组合饼干(VCC),uniflex,悬浮床催化剂加氢裂化(ENI)和真空残留水耦合(TIPS RAS)。这些技术使用异质催化剂,设计用于获得最大量的液体产品。本文讨论了各技术的特征,突出了它们的优缺点,显示了处理管理的主要方法,并推测了这些技术的发展。 Tar Refining是重油升级中的主要过程,高效的焦油处理方法的发展将影响炼油厂配置和管理。

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