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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Visualization of compound drops formation in multiphase processes for the identification of factors influencing bubble and water droplet inclusions in oil drops
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Visualization of compound drops formation in multiphase processes for the identification of factors influencing bubble and water droplet inclusions in oil drops

机译:可视化多相过程中化合物滴的形成,以识别影响油滴中气泡和水滴夹杂物的因素

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An innovative methodology for visualizing and identifying some mechanisms by which complex structures such as air-in-oil-in-water (A/O/W) and water-in-oil-in-water (W/O/W) may be formed inside mixing tanks dispersing various phases is described. In the case of A/O/W inclusions, isolated inclusion events could be observed by the first time with an experimental setup designed to produce sudden turbulence in a small confined space simulating a three-phase fermentation system. It was observed that high-energy direct-collisions of the bodies are not required for inclusions to occur; rather, a gentle contact between the phases was needed. Then, by maintaining an oil drop in a fixed position while it was impacted by single air bubble, it was feasible to calculate the percentage of air-bubble inclusions into oil drops for different compositions of the continuous phase. By adding biomass as a solid phase, the inclusion occurrence reached 61%; likely this was caused by a mechanical effect of the added biomass (making the interface breakable or unstable) with a minor contribution by the decreased surface tension. In the case of W/O/W, a basic mechanism by which the inclusion of water droplets in oil drops may occur is described. This was derived from the analysis of the hydrodynamic process of the formation of a water drop inside a volume of oil where the differential pressures occurring along the water-oil interface were mapped. This is the first time that factors influencing water and air inclusions in oil drops are identified, and possible mechanisms behind their occurrence are proposed, based on visual evidence.
机译:一种用于可视化和识别某些机制的创新方法论,通过这些机制可以构建复杂的结构,例如水包油中的空气(A / O / W)和水包油中的水(W / O / W)描述了在混合罐内部分散各种相的混合物。在A / O / W夹杂物的情况下,可以通过实验装置首次观察到孤立的夹杂物事件,该装置设计为在小密闭空间中模拟三相发酵系统,从而产生突然的湍流。据观察,不需要高能量的直接碰撞来产生夹杂物。而是需要阶段之间的温和接触。然后,通过在油滴受到单个气泡影响的同时将油滴保持在固定位置,可以计算出连续相不同组成的油滴中气泡夹杂物的百分比。通过添加生物质作为固相,夹杂物的发生率达到61%。这很可能是由于添加的生物质的机械作用(使界面易碎或不稳定)引起的,而表面张力的降低对此影响很小。在W / O / W的情况下,描述了可能发生在油滴中包含水滴的基本机理。这是从对在一定体积的油中形成水滴的流体力学过程的分析得出的,在该过程中绘制了沿水-油界面出现的压差。这是首次根据目视证据确定影响油滴中水和空气夹杂物的因素,并提出了其背后的可能机制。

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