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Studies of Liquid-liquid Separation in Fibre Coalescer

机译:纤维聚结器液液分离的研究

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摘要

This thesis focuses on fibre coalescers whose efficiency is based on the surface properties/characteristics. They have the ability to preferentially wet or interact with one or more of the fluids to be separated. Thus, the interfacial phenomena governing the separation efficiency of the coalescers is investigated depending on physical factors such as flowrates, phase ratios and coalescer packing density. Design of process equipment to produce and separate of the emulsions was carried out.The experimentation was carried out to test the separation efficiency of the coalescing medias, namely fibreglass, polyester I and polyester II. The performances of the coalescing medias were assessed via droplet size information. In conclusion, the objectives (design of process equipment and experimentation) were achieved. Fibre glass was the best coalescing media, next was polyester I and then finally polyester II. Droplets sizes increased with decreased flowrates and increased packing density of the coalescer. Phase ratio had effect on the droplet sizes of the feed but had no effect on the coalescence of droplets of the feed.
机译:本文的重点是纤维聚结器,其效率取决于表面性质/特性。它们具有优先润湿一种或多种要分离的流体或与之相互作用的能力。因此,取决于流速,相比和聚结器堆积密度等物理因素,研究了控制聚结器分离效率的界面现象。进行了乳液的生产和分离的工艺设备的设计。进行了实验以测试聚结介质即玻璃纤维,聚酯I和聚酯II的分离效率。通过液滴尺寸信息评估聚结介质的性能。总之,目标(过程设备的设计和实验)得以实现。玻璃纤维是最好的聚结介质,其次是聚酯I,最后是聚酯II。液滴尺寸随着流速的降低和聚结器堆积密度的增加而增加。相比对进料的液滴尺寸有影响,但对进料的液滴的聚结没有影响。

著录项

  • 作者

    Amoanu Daniel;

  • 作者单位
  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 en
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