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首页> 外文期刊>Applied Petrochemical Research >Dehydration of emulsified lubricating oil by three fields: swirl centrifugal field, pulse electric field and vacuum temperature field
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Dehydration of emulsified lubricating oil by three fields: swirl centrifugal field, pulse electric field and vacuum temperature field

机译:乳化润滑油的三个场脱水:涡旋离心场,脉冲电场和真空温度场

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摘要

Lubricating oil can be easily polluted by water and emulsified, thereby negatively affecting the lubricating property. Meanwhile, wasted lubricating oil, a complex composition, presents high water content and exists with emulsion. A single technological method is difficult to be satisfied for efficient demulsification and dehydration of emulsified lubricating oil. In this paper, it is proposed that the swirl centrifugal field made by hydrocyclone, pulse electric field, and vacuum temperature field are coupled to achieve the oil's dehydration. Based on the theories, it is reasonable to use three fields for oil's demulsification. In the experiment of three-field dehydrating, the demulsification device is divided into two parts, namely, the coupled unit of pulse electric field and hydrocyclone, and the vacuum heating unit. The structure and size of the device were optimized through numerical simulation. With two modes of single field and three-field, the experiments were carried out. Results indicated that the use of three-field was more energy efficient and faster compared with the traditional vacuum heating method only.
机译:润滑油容易被水污染并乳化,从而不利地影响润滑性能。同时,浪费的润滑油,复杂的组成,具有高的水含量并且与乳液一起存在。对于乳化润滑油的有效的乳化和脱水,难以满足单一的技术方法。本文提出将水力旋流器产生的旋涡离心场,脉冲电场和真空温度场耦合以实现油的脱水。根据这些理论,使用三个领域进行石油的破乳是合理的。在三场脱水实验中,破乳装置分为脉冲电场与水力旋流器耦合单元和真空加热单元两部分。通过数值模拟优化了器件的结构和尺寸。用单场和三场两种模式进行了实验。结果表明,与仅使用传统的真空加热方法相比,使用三电场具有更高的能源效率和更快的速度。

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