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首页> 外文期刊>Sensors and Actuators, A. Physical >Nanoliter segment formation in micro fluid devices for chemical and biological micro serial flow processes in dependence on flow rate and viscosity
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Nanoliter segment formation in micro fluid devices for chemical and biological micro serial flow processes in dependence on flow rate and viscosity

机译:取决于流速和粘度的用于化学和生物微串联流动过程的微流体装置中的纳升段形成

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Micro segmentation of liquids inside micro channels and micro tubes opens an easy way for highly parallelized chemical, biochemical and microbiological processes. The production of liquid segments can be done as a fast serial process and leads to a linear arrangement of samples, which are always individually characterized by their position. The segment formation is a function of injector geometry, interface forces, viscosity of the carrier liquid and flow rate. The formation of droplets inside channels of about 500 mu m diameter was investigated. Therefore, a micro module made by polymethyl-methacryl ate (PMMA) was used for segmentation and integrated in a modular micro fluid arrangement. Microscopic imaging controlled fluidic processes. The inert aliphatic liquid tetradecane and a mineral oil were used as embedding liquids. Segmentation occurred in aqueous solutions of the cationic triphenylmethane dye Malachite Green. The influence of the flow rate on the segment volumes was found to be strongly dependent on the viscosity of the embedding liquid. Operations with series of segments in serial processes as well as possible applications are discussed. (c) 2004 Elsevier B.V. All rights reserved.
机译:微通道和微管内液体的微分段为高度并行化的化学,生化和微生物过程提供了一种简便的方法。液体片段的生产可以通过快速的连续过程完成,并导致样品的线性排列,这些样品始终以其位置进行单独表征。段的形成是喷射器几何形状,界面力,载液粘度和流速的函数。研究了直径约500微米的通道内液滴的形成。因此,将由聚甲基丙烯酸甲酯(PMMA)制成的微模块用于细分,并集成到模块化微流体装置中。显微成像控制流体过程。惰性脂族液体十四烷和矿物油用作包埋液。在阳离子三苯基甲烷染料孔雀石绿的水溶液中发生分段。发现流速对段体积的影响很大程度上取决于包埋液体的粘度。讨论了串行过程中段序列的操作以及可能的应用。 (c)2004 Elsevier B.V.保留所有权利。

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