Avvaru Balasubrahmanyam, Venkateswaran Natarajan, Uppara Parasuveera, Iyengar Suresh B, Katti Sanjeev S
Reliance Research and Development Centre, Reliance Corporate Park, Ghansoli, Navi Mumbai 400701, India.
Reliance Research and Development Centre, Reliance Corporate Park, Ghansoli, Navi Mumbai 400701, India.
Ultrason Sonochem. 2018 Apr;42:493-507. doi: 10.1016/j.ultsonch.2017.12.010. Epub 2017 Dec 5.
Technologies based on cavitation, produced by either ultrasound or hydrodynamic means, are part of growing literature for individual refinery unit processes. In this review, we have explained the mechanism through which these cavitation technologies intensify individual unit processes such as enhanced oil recovery, demulsification of water in oil emulsions during desalting stage, crude oil viscosity reduction, oxidative desulphurisation/demetallization, and crude oil upgrading. Apart from these refinery processes, applications of this technology are also mentioned for other potential crude oil sources such as oil shale and oil sand extraction. The relative advantages and current situation of each application/process at commercial scale is explained.
基于超声或流体动力方式产生的空化作用的技术,在针对各个炼油装置工艺的不断增加的文献中有所涉及。在本综述中,我们阐述了这些空化技术强化各个装置工艺的机制,如提高原油采收率、在脱盐阶段破乳油包水乳液中的水、降低原油粘度、氧化脱硫/脱金属以及原油升级。除了这些炼油工艺外,还提到了该技术在其他潜在原油来源(如油页岩和油砂开采)中的应用。解释了每种应用/工艺在商业规模下的相对优势和现状。