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首页> 外文期刊>The Journal of Supercritical Fluids >Microfluidic investigation into mass transfer in compressible multi-phase systems composed of oil, water and carbon dioxide at elevated pressure
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Microfluidic investigation into mass transfer in compressible multi-phase systems composed of oil, water and carbon dioxide at elevated pressure

机译:在高压下由油,水和二氧化碳组成的可压缩多相系统中传质的微流研究

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Mass transfer has been investigated quantitatively in the compressible ternary multi-phase system composed of the oil component ethyl acetate, water and carbon dioxide at the elevated pressure of 8.5 MPa and at temperatures of 298 K and 310.5K. The multi-phase system has been generated inside a micro capillary. Each of the involved mass transfer paths could be quantified though taking place simultaneously between the three phases: oil, water and CO2. The quantification is based experimentally on the application of an optical long distance microscopy technique which provides information about the CO2 volume shrinkage and the refractive index of the oil phase. Both parameters allowed the solution of the mass transfer model which considers the mutual interaction of the involved transfer paths.
机译:在由石油组分乙酸乙酯,水和二氧化碳组成的可压缩三元多相系统中,在8.5 MPa的高压和298 K和310.5K的温度下,对传质进行了定量研究。多相系统已在微毛细管内部生成。尽管在三个阶段(油,水和二氧化碳)之间同时发生,但可以量化每个涉及的传质路径。定量基于实验,基于光学长距离显微镜技术的应用,该技术可提供有关CO2体积收缩率和油相折射率的信息。这两个参数都允许解决传质模型的问题,该模型考虑了相关传递路径的相互影响。

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