双分子反应中化学-流体动力学振荡对混合的影响

IF 3.1 Q2 CHEMISTRY, MULTIDISCIPLINARY
Adam Bigaj, Dr. Marcello A. Budroni, Prof. Laurence Rongy
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引用次数: 0

摘要

长期以来,人们一直在研究涉及非线性化学反馈的复杂化学系统中的自组织行为。Belousov-Zhabotinsky和Bray-Liebhafsky反应)。在这里,我们通过耦合更简单的化学过程来探索振荡动力学的出现,以双分子反应的形式,和自然对流(即。由反应过程中密度和表面张力的变化引起的流动)。基于化学驱动的Marangoni(表面张力诱导)和浮力驱动的(密度诱导)流动之间的相互作用,我们研究并分类了不同的可能情景。这种耦合可以是对抗性的,即两个生成的流是相反的(例如:一种增加表面张力和降低密度的反应),或者是两种流动在同一方向上的协同反应。增加表面张力和密度的反应)。我们进一步研究了这些振荡对混合和反应速率的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Influence of Chemo-Hydrodynamical Oscillations in Bimolecular Reactions on Mixing

Influence of Chemo-Hydrodynamical Oscillations in Bimolecular Reactions on Mixing

Self-organizing behaviors have long been studied in complex chemical systems involving a nonlinear chemical feedback (e. g. the Belousov-Zhabotinsky and Bray-Liebhafsky reactions). Here we explore the emergence of oscillatory dynamics by coupling simpler chemical processes, in the form of a bimolecular reaction, and natural convection (i. e. flows induced by changes in density and surface tension occurring during the reaction). We study and classify different possible scenarios based on the interplay between chemically-driven Marangoni- (surface tension induced) and buoyancy-driven (density induced) flows. This coupling can either be antagonistic, whereby both generated flows are opposing (e. g. a reaction increasing the surface tension and decreasing the density), or cooperative if both flows act in the same direction (e. g. a reaction increasing both surface tension and density). We further investigate the impact of these oscillations on the mixing and reaction rate.

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