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脉动流中的光驱动微游动器:迈向一种新型收集方法。

Phototactic microswimmers in pulsatile flow: Toward a novel harvesting method.

作者信息

Minh Chau Nguyen, Peerhossaini Hassan, Jarrahi Mojtaba

机构信息

CNRS, FAST Lab, Université Paris-Saclay, Orsay, France.

出版信息

Biomicrofluidics. 2022 Sep 27;16(5):054103. doi: 10.1063/5.0097580. eCollection 2022 Sep.

Abstract

Phototactic behavior is coupled with pulsatile flow features to reveal the advantages of pulsation for separating motile algae cells in a double Y-microchannel. The underlying mechanism is as follows: during half of the pulsation cycle, when the flow rate is low, the phototactic microswimmers are mainly redirected by the external stimulation (light); while, during the rest of the cycle, the flow effects become dominant and the microswimmers are driven toward the desired outlet. The results show that in the absence of light source, the pulsatile flow has no advantage over the steady flow for separation, and the microswimmers have no preference between the exit channels; the separation index (SI) is around 50%. However, when the light is on, SI increases to 65% and 75% in the steady and pulsatile flows, respectively. Although the experiments are conducted on the well-known model alga, , a numerical simulation based on a simple model demonstrates that the idea can be extended to other active particles stimulated by an attractive or repulsive external field. Thus, the potential applications can go beyond algae harvesting to the control and enhancement of separation processes without using any mechanical component or chemical substance.

摘要

趋光行为与脉动流特征相结合,揭示了脉动在双Y型微通道中分离运动藻类细胞的优势。其潜在机制如下:在脉动周期的一半时间内,当流速较低时,趋光性微游动体主要受外部刺激(光)的重新定向;而在周期的其余时间里,流动效应占主导地位,微游动体被驱动向期望的出口。结果表明,在没有光源的情况下,脉动流在分离方面并不比稳定流有优势,微游动体在出口通道之间没有偏好;分离指数(SI)约为50%。然而,当有光时,在稳定流和脉动流中,SI分别增加到65%和75%。尽管实验是在著名的模式藻类上进行的,但基于一个简单模型的数值模拟表明,这一想法可以扩展到受吸引或排斥外部场刺激的其他活性粒子。因此,潜在应用可以超越藻类收获,扩展到在不使用任何机械部件或化学物质的情况下控制和增强分离过程。

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