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A Magnetically Tunable Check Valve Applied to a Lab-on-Chip Nitrite Sensor

机译:用于片上亚硝酸盐传感器的电磁可调止回阀

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摘要

Presented here is the fabrication and characterization of a tunable microfluidic check valve for use in marine nutrient sensing. The ball-style valve makes use of a rare-earth permanent magnet, which exerts a pulling force to ensure it remains passively sealed until the prescribed cracking pressure is met. By adjusting the position of the magnet, the cracking pressure is shown to be customizable to meet design requirements. Further applicability is shown by integrating the valve into a poly(methyl methacrylate) (PMMA) lab-on-chip device with an integrated optical absorbance cell for nitrite detection in seawater. Micro-milling is used to manufacture both the valve and the micro-channel structures. The valve is characterized up to a flow rate of 14 mL min and exhibits low leakage rates at high back pressures (<2 µL min at ~350 kPa). It is low cost, requires no power, and is easily implemented on microfluidic platforms.
机译:这里介绍的是用于海洋营养物感测的可调式微流体止回阀的制造和特性。球形阀利用稀土永磁体,该永磁体施加拉力以确保其保持被动密封,直到满足规定的开启压力为止。通过调整磁体的位置,显示出可以定制开裂压力以满足设计要求。通过将该阀集成到带有集成光吸收池的聚甲基丙烯酸甲酯(PMMA)芯片实验室设备中显示出进一步的适用性,该设备可用于海水中的亚硝酸盐检测。微铣削用于制造阀门和微通道结构。该阀的特征是最高14 mL / min的流量,在高背压下(〜350 kPa,<2 µL / min)显示出低泄漏率。它价格低廉,不需要电源,并且可以在微流体平台上轻松实现。

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