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BIOFILM STREAMER FORMATION IN A MICROFLUIDIC POROUS MEDIA MIMIC

机译:生物膜在微流体多孔介质中形成模仿

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Several bacterial species possess the ability to attach to surfaces and colonize themselves in thin films called biofilms. Biofilms that grow in porous media are relevant to several industrial and environmental processes such as wastewater treatment and CO_2 sequestration. We used Pseudomonas fluorescens, a gram negative aerobic biofilm forming bacteria, to investigate biofilm formation in a microfluidic porous media mimic device. The microfluidic device consists of an array of micro-posts, which were fabricated using soft-lithography. Subsequently, biofilm formation in this device was investigated as a function of time and the formation of filamentous biofilms known as streamers was observed. Furthermore, we used computational fluid mechanics simulation to better understanding of the streamer formation.
机译:几种细菌物种具有连接到表面的能力,并在称为生物膜的薄膜中定植。在多孔介质中生长的生物膜与若干工业和环境方法相关,如废水处理和CO_2封存。我们使用荧光荧光荧光笔,革兰根负性有氧生物膜形成细菌,以研究微流体多孔介质模拟装置中的生物膜形成。微流体装置由一系列微柱组成,其使用软光刻制造。随后,作为时间的函数研究了该装置中的生物膜形成,并且观察到称为杂物的丝状生物膜的形成。此外,我们使用计算流体力学模拟以更好地理解飘带形成。

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