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Demulsification of Water-in-Crude Oil Emulsions by Microwave Radiation: Effect of Aging, Demulsifier Addition, and Selective Heating

机译:微波辐射降解原油在水中的乳液:老化,破乳剂的添加和选择性加热的影响

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摘要

Microwave radiation to promote the destabilization of water-in-crude oil petroleum emulsions is already an alternative technology for heating. Recent studies have suggested that microwave heating is more effective than conventional heating. This study assessed the following effects on the demulsification process: the aging of emulsions for the two types of heating (microwave and conventional), the time interval between microwave heating and the addition of a chemical demulsifier, and the time of microwave irradiation on the heating of petroleum and brine fluids. In addition, this study compared the efficiency of water separation by conventional heating and microwave heating regarding the (a) mean temperature of the emulsion and (b) temperature of water droplets. It was observed that water separation is less efficient for the two types of heating when the emulsion is subjected to aging. The efficiency of water separation using microwave hearing is greater than with conventional heating when the mean temperature of the emulsion remains the same. However, they were equivalent when the temperatures of the water droplets are equal This fact indicates that the advantage of selectively heating water droplets by microwave radiation is that the temperature of the treatment of emulsions can be reduced: the higher temperature that is located in region of interest (water droplets and the periphery) facilitates the drainage of the interracial film and the stage of coalescence between the water droplets.
机译:微波辐射促进原油中水包油石油乳状液的失稳已经是一种替代性的加热技术。最近的研究表明,微波加热比常规加热更有效。这项研究评估了以下对破乳过程的影响:两种加热方式(微波加热和常规加热)的乳液老化,微波加热和添加化学破乳剂之间的时间间隔以及加热时微波照射的时间石油和盐水。另外,该研究就(a)乳液的平均温度和(b)水滴的温度比较了常规加热和微波加热的水分离效率。观察到,当乳液经受老化时,对于两种加热方式,水分离效率较低。当乳液的平均温度保持相同时,使用微波助听器进行水分离的效率要高于传统加热方法。但是,当水滴的温度相等时,它们是等效的。这一事实表明,通过微波辐射选择性加热水滴的优点是可以降低乳液处理的温度:位于有趣的是(水滴和周边)促进了异族膜的排水和水滴之间的聚结阶段。

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  • 来源
    《Energy & fuels》 |2013年第janaafeba期|615-621|共7页
  • 作者单位

    Petrobras Research Center, Avenida Horacio Macedo, 950, Cidade Universitaria, CEP 21941-915, Rio de Janeiro, Rio de Janeiro (RJ), Brazil,Laboratory of Macromolecules and Colloids for Petroleum Industry, Institute of Macromolecules, Federal University of Rio de Janeiro, Avenida Horacio Macedo, 2030, Ilha do Fundao, CEP 21941-598, Rio de Janeiro, Rio de Janeiro (RJ), Brazil;

    Petrobras Research Center, Avenida Horacio Macedo, 950, Cidade Universitaria, CEP 21941-915, Rio de Janeiro, Rio de Janeiro (RJ), Brazil;

    Laboratory of Macromolecules and Colloids for Petroleum Industry, Institute of Macromolecules, Federal University of Rio de Janeiro, Avenida Horacio Macedo, 2030, Ilha do Fundao, CEP 21941-598, Rio de Janeiro, Rio de Janeiro (RJ), Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 00:40:49

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