Ultrasonic viscosity-reduction vacuum residue oil

IF 4.9 3区 工程技术 Q1 ENGINEERING, CHEMICAL Reviews in Chemical Engineering Pub Date : 2022-06-23 DOI:10.1515/revce-2021-0086
Yi Pan, Xu Lou, Shuangchun Yang, Xianglong Cui, Zabiti Mubuto Stephan
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引用次数: 1

Abstract

Abstract With the rapid development of economy, the demand for energy is increasing rapidly. And the output and processing amount of vacuum residue oil are also increasing year by year. The processing of vacuum residue oil is always a difficult problem in petrochemical industry. The high viscosity is the significant characteristic of vacuum residue oil. It is easy to cause serious influence in residue oil processing, such as reactor blockage. With the development of ultrasonic technology, ultrasonic viscosity reduction has become the focus of research. Its potential role in petrochemical industry has attracted more and more attention. Ultrasonic viscosity reducing vacuum residue oil is a new viscosity reducing process. Compared with the traditional viscosity reduction method, it has good viscosity reduction effect. The research progress of ultrasonic viscosity reducing vacuum residue oil is reviewed. In this paper, the mechanism of ultrasonic action, physical and chemical effects, ultrasonic viscosity reduction treatment conditions, viscosity reduction residue oil system influence and viscosity recovery, ultrasonic sound field simulation are reviewed and analyzed. In addition, ultrasound has a synergistic effect. Ultrasonic synergistic physicochemical methods (microwave; hydrogen donor) also has remarkable effects. Ultrasonic treatment technology is adopted on the basis of traditional microwave viscosity reduction and residue oil hydrogenation donor. This kind of ultrasonic collaborative method has excellent application prospect. But there are problems with this technology. The research direction of ultrasonic viscosity reduction residue oil in the future is also suggested. It can provide reference for related research.
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超声波降粘减压渣油
随着经济的快速发展,对能源的需求也在快速增长。真空渣油的产量和加工量也在逐年增加。真空渣油的加工一直是石油化工行业的难题。高粘度是真空渣油的显著特点。在渣油处理过程中容易造成反应器堵塞等严重影响。随着超声技术的发展,超声降粘已成为研究的热点。它在石油化工领域的潜在作用越来越受到人们的重视。超声波降粘真空渣油是一种新的降粘工艺。与传统的降粘方法相比,具有良好的降粘效果。综述了超声降粘真空渣油的研究进展。本文对超声波的作用机理、物理化学效应、超声波降粘处理条件、降粘渣油体系影响及粘度恢复、超声波声场模拟等方面进行了综述和分析。此外,超声具有协同作用。超声协同物化方法(微波;氢供体)也有显著的效果。在传统微波降粘和渣油加氢供体的基础上,采用超声波处理技术。这种超声协同方法具有良好的应用前景。但这项技术也存在一些问题。提出了超声降粘渣油今后的研究方向。可为相关研究提供参考。
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来源期刊
Reviews in Chemical Engineering
Reviews in Chemical Engineering 工程技术-工程:化工
CiteScore
12.30
自引率
0.00%
发文量
37
审稿时长
6 months
期刊介绍: Reviews in Chemical Engineering publishes authoritative review articles on all aspects of the broad field of chemical engineering and applied chemistry. Its aim is to develop new insights and understanding and to promote interest and research activity in chemical engineering, as well as the application of new developments in these areas. The bimonthly journal publishes peer-reviewed articles by leading chemical engineers, applied scientists and mathematicians. The broad interest today in solutions through chemistry to some of the world’s most challenging problems ensures that Reviews in Chemical Engineering will play a significant role in the growth of the field as a whole.
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