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Optimization of micromixer with triangular baffles for chemical process in millidevices

机译:小型设备中用于化学过程的带有三角挡板的微混合器的优化

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摘要

A new micromixer design (MTB - micromixer with triangular baffles and circular obstructions) was proposed aiming the combination of three mass transfer enhancements mechanisms: reduction of molecular diffusion path, split and recombination of streams and vortex generation. The geometric variables were also optimized considering the mixing performance and the required pressure drop. The optimal design was used for the mixing of different binary mixtures (vegetable oil/ethanol and water/ethanol) under the Reynolds number range from 0.01 to 200 and the chemical reaction process of vegetable oil transesterification with ethanolic solution of sodium hydroxide (biodiesel synthesis). High mixing index (M = 0.99) was observed for the oil/ethanol mixing for several channel heights (200 mu m - 2000 mu m) and widths (1500 mu m - 3000 mu m). The geometry W3000H400 (i.e., MTB with channel width of 3000 mu m and height of 400 mu m) was employed as the millireactor, providing a maximum oil conversion of 92.67% for a residence time of 30 s. For the water/ethanol mixing, the geometry W1500H200 was used. High mixing index (M = 0.99) was observed at very low Reynolds number (Re = 0.1) and also in higher Reynolds numbers of 50 and 100. Moreover, at Re = 0.1, high mixing index (M congruent to 0.90) was obtained already at 3.5mm of channel length. However, for higher Reynolds number the fluids required longer distances to achieve superior mixing, about 10.5mm at Re = 100. The MTB, unlike the ones found in the literature, can be used in microdevices (e.g., sensors) with low flow rates and in microdevices with large dimensions (eg, millidevices and milireactors) with high flow rates, allowing an easier application in chemical process aiming the commercial production.
机译:提出了一种新的微混合器设计(MTB-具有三角形挡板和圆形障碍物的微混合器),旨在结合三种传质增强机制:分子扩散路径的减少,流的分裂和重组以及涡流的产生。考虑到混合性能和所需的压降,还优化了几何变量。最佳设计用于雷诺数范围为0.01至200的不同二元混合物(植物油/乙醇和水/乙醇)的混合,以及植物油与氢氧化钠乙醇溶液的酯交换反应的化学反应过程(生物柴油合成) 。在几个通道高度(200微米至2000微米)和宽度(1500微米至3000微米)的油/乙醇混合中,观察到高混合指数(M = 0.99)。使用几何形状W3000H400(即通道宽度为3000μm,高度为400μm的MTB)作为毫力作用器,在30 s的停留时间内可提供92.67%的最大油转化率。对于水/乙醇混合,使用几何形状W1500H200。在非常低的雷诺数(Re = 0.1)以及较高的雷诺数50和100时,观察到高混合指数(M = 0.99)。此外,在Re = 0.1时,已经获得高混合指数(M等于0.90)通道长度为3.5mm但是,对于更高的雷诺数,流体需要更长的距离才能实现出色的混合,在Re = 100时约为10.5mm。与文献中发现的MTB不同,MTB可以用于流速低,流量大的微型设备(例如传感器)中。高流量的大尺寸微器件(例如毫器件和milireactor)中的这种器件,可以更轻松地应用于针对商业化生产的化学过程。

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