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首页> 外文期刊>International journal of numerical modelling >Electroosmotic micropump for lab-on-a-chip biomedical applications
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Electroosmotic micropump for lab-on-a-chip biomedical applications

机译:用于实验室芯片生物医学应用的电软渗透微泵

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Lab-on-a-chip (LOC) integrated microfluidics has been a powerful tool for new developments in analytical chemistry. These microfluidic systems enable the miniaturization, integration and automation of complex biochemical assays through the reduction of reagent use and enabling portability. Electroosmotic micropumps could be employed as powerful tools to generate required flow in point of care (POC) devices. In the present study, parallel electroosmotic micropumps are investigated to improve the efficiency of simple micropumps. According to the results, parallel micropumps generate higher flow rate in comparison with conventional electroosmotic pump. In the last decade, a large variety of non-Newtonian fluids have been utilized in biomedical application but requirements for a POC device such as high efficient driving flow, miniaturization and simple handling of POC devices remain unmet. As a consequence, in this study, power law model as non-Newtonian fluids that flow through the parallel micropumps are investigated in order to enhance fluid pumping and decreasing voltage requirement.. It is found that as the power law index increases the mass flow rate decreases. Also, the flow rate is almost constant for the higher power law index. Obtained results, demonstrated that parallel micropump could enhance pumping of non-Newtonian fluid (blood) up to 30%. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:实验室内芯片(LOC)集成的Microfluidics一直是分析化学的新发展的强大工具。这些微流体系统通过减少试剂使用和实现可移植性,使得复杂生物化学测定的小型化,集成和自动化。可以使用电渗微泵作为强大的工具,以在护理点(POC)设备中产生所需的流量。在本研究中,研究了平行的电渗微泵,以提高简单微泵的效率。根据结果​​,与传统的电渗泵相比,平行微泵产生更高的流速。在过去的十年中,生物医学应用中已经利用了各种非牛顿流体,但对POC驱动流,小型化和POC设备简单处理的POC设备的要求保持未核对。因此,在本研究中,研究了电力法模型作为流过平行微泵的非牛顿流体,以增强流体泵送和降低电压要求..因此,随着电力法指数增加质量流量减少。而且,对于更高的电力法指数,流速几乎是恒定的。得到的结果,证明了平行的微泵可以增强非牛顿液(血液)的泵送至30%。版权所有(c)2016 John Wiley&Sons,Ltd。

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