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Controllable preparation of nanoparticles by drops and plugs flow in a microchannel device

机译:通过微通道设备中的滴流和塞流可控地制备纳米颗粒

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Well controlled two-liquid-phase flows in a T-junction microchannel device have been realized. The system of H2SO4 and BaCl2, respectively, in two phases to form BaSO4 nanoparticles was used as a probe to characterize the microscale two-phase flow and transport conditions of a system with interphase mass transfer and chemical reaction. Nanoparticles with narrow size and good dispersibility were produced through drops or plugs flow in the microdevice. As a novel work, the influence of mass transfer and chemical reaction on interfacial tension and flow patterns was discussed based on the experiments. At the same time, the effect of the two-phase flow patterns on the nanoparticle size was also discussed. It was found that the increase of the amount of mass transfer and chemical reaction could change the flow patterns from plugs flow to drops flow. The drop diameter or plug length could be changed in a wide range. Accordingly, a new parameter of mu(0)u(c)/gamma(0)/Q(d) was defined to distinguish the flow patterns. The prepared nanoparticles ranged in size from 10 to 40 nm. Apparently, the particle size decreased with the increase of the drop diameter or plug length. Reasons were discussed based on the mass transfer direction and speed in drops and plugs flow patterns.
机译:已经实现了在T型结微通道装置中控制良好的两液相流。分别以H2SO4和BaCl2两相形成BaSO4纳米粒子的体系作为探针,表征了具有相间传质和化学反应的系统的微观两相流和输运条件。通过微设备中的液滴或活塞流产生了尺寸狭窄且分散性好的纳米颗粒。作为一项新颖的工作,在实验的基础上,讨论了传质和化学反应对界面张力和流动方式的影响。同时,还讨论了两相流模式对纳米颗粒尺寸的影响。发现传质和化学反应量的增加可以将流动模式从活塞流变为液滴流。墨滴直径或塞子长度可以在很宽的范围内变化。因此,定义了新参数mu(0)u(c)/ gamma(0)/ Q(d)来区分流型。制备的纳米颗粒的尺寸为10至40nm。显然,粒径随着液滴直径或塞子长度的增加而减小。根据传质方向和液滴和塞流模式的速度讨论了原因。

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