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Adaptive Micromixer Based on the Solutocapillary Marangoni Effect in a Continuous-Flow Microreactor

机译:连续流微反应器中基于溶质毛细血管效应的自适应微混合器

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摘要

Continuous-flow microreactors are an important development in chemical engineering technology, since pharmaceutical production needs flexibility in reconfiguring the synthesis system rather than large volumes of product yield. Microreactors of this type have a special vessel, in which the convective vortices are organized to mix the reagents to increase the product output. We propose a new type of micromixer based on the intensive relaxation oscillations induced by a fundamental effect discovered recently. The mechanism of these oscillations was found to be a coupling of the solutal Marangoni effect, buoyancy and diffusion. The phenomenon can be observed in the vicinity of an air–liquid (or liquid–liquid) interface with inhomogeneous concentration of a surface-active solute. Important features of the oscillations are demonstrated experimentally and numerically. The periodicity of the oscillations is a result of the repeated regeneration of the Marangoni driving force. This feature is used in our design of a micromixer with a single air bubble inside the reaction zone. We show that the micromixer does not consume external energy and adapts to the medium state due to feedback. It switches on automatically each time when a concentration inhomogeneity in the reaction zone occurs, and stops mixing when the solution becomes sufficiently uniform.
机译:连续流微反应器是化学工程技术的重要发展,因为制药生产需要灵活地重新配置合成系统,而不是大量的产品产量。这种类型的微反应器有一个特殊的容器,在该容器中组织了对流涡流以混合试剂以增加产品产量。基于最近发现的基本效应引起的强烈弛豫振荡,我们提出了一种新型的微混合器。发现这些振荡的机制是溶质的马兰戈尼效应,浮力和扩散的耦合。可以在空气-液体(或液体-液体)界面附近存在表面活性溶质浓度不均匀的现象。振荡的重要特征在实验和数值上得到了证明。振荡的周期性是马兰戈尼驱动力反复再生的结果。此功能用于我们的微混合器设计中,反应区内部只有一个气泡。我们表明,微混合器不消耗外部能量,并且由于反馈而适应于中等状态。每当反应区中出现浓度不均匀性时,它都会自动打开;当溶液变得足够均匀时,它会停止混合。

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