首页> 外文会议>IMECE2009;ASME international mechanical engineering congress and exposition >Use of the Freely-Swimming, Serratia Marcescens Bacteria to Enhance Mixing in Microfluidic Systems
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Use of the Freely-Swimming, Serratia Marcescens Bacteria to Enhance Mixing in Microfluidic Systems

机译:使用自由游泳的粘质沙雷氏菌细菌增强微流控系统中的混合

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摘要

Mixing has become a challenge in micro-fluidic systems because of the low Reynolds number in micro-channels. The method which is implemented in this paper is to use freely-swimming bacteria to enhance the mixing process. Accordingly, the Serratia marcescens bacteria were used for this matter. The mixing performance of the system is quantified by measuring the diffusion rate of Rhodamine B in a particular section of a channel connected to a chamber with varying Rhodamine B concentration. The concentration of Rhodamine B was measured using the Laser Induced Fluorescence (LIF) technique. The channel is in the form of a pipe and is closed on the extending side. In this paper, it is demonstrated that the corresponding diffusion coefficient can be augmented by bacterial participation and that this augmentation can be continued for several hours, depending on the environmental conditions. Additionally, it is shown that the mixing process reacts in response to modifications to the chemical environment of the system, which in turn affect the metabolic activity of the bacteria. Also, a 30 mM glucose buffer was used to show the impact of food on the performance of the bacterial system. It is thus shown that the existence of glucose increases the mixing ability of bacteria.
机译:由于微通道中的雷诺数低,因此混合已成为微流体系统中的一个挑战。本文采用的方法是使用自由游动的细菌来增强混合过程。因此,粘质沙雷氏菌(Serratia marcescens)细菌被用于此问题。通过测量罗丹明B在连接到具有变化罗丹明B浓度的腔室的通道的特定部分中的扩散速率,可以量化系统的混合性能。罗丹明B的浓度使用激光诱导荧光(LIF)技术进行测量。该通道为管的形式,并且在延伸侧是封闭的。在本文中,证明了相应的扩散系数可以通过细菌的参与而增加,并且这种增加可以持续数小时,具体取决于环境条件。另外,表明混合过程响应于对系统化学环境的改变而反应,这继而影响细菌的代谢活性。另外,使用30 mM葡萄糖缓冲液显示食物对细菌系统性能的影响。因此表明,葡萄糖的存在增加了细菌的混合能力。

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