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A New Paper-Based Microfluidic Device for Improved Detection of Nitrate in Water

机译:一种新型纸质微流体装置可改善水中硝酸盐的检测

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摘要

In this paper, we report a simple and inexpensive paper-based microfluidic device for detecting nitrate in water. This device incorporates two recent developments in paper-based technology suitable for nitrate detection and has an optimized microfluidic design. The first technical advancement employed is an innovative fibrous composite material made up of cotton fibers and zinc microparticles that can be incorporated in paper-based devices and results in better nitrate reduction. The second is a detection zone with an immobilized reagent that allows the passage of a larger sample volume. Different acids were tested—citric and phosphoric acids gave better results than hydrochloric acid since this acid evaporates completely without leaving any residue behind on paper. Different microfluidic designs that utilize various fluid control technologies were investigated and a design with a folding detection zone was chosen and optimized to improve the uniformity of the signal produced. The optimized design allowed the device to achieve a limit of detection and quantification of 0.53 ppm and 1.18 ppm, respectively, for nitrate in water. This accounted for more than a 40% improvement on what has been previously realized for the detection of nitrate in water using paper-based technology.
机译:在本文中,我们报告了一种用于检测水中硝酸盐的简单且廉价的纸质微流体装置。该器件包括适用于硝酸盐检测的基于纸质技术的最近的两个发展,并具有优化的微流体设计。所采用的第一个技术进步是由棉纤维和锌微粒组成的创新纤维复合材料,其可以掺入纸型器件中并导致更好的硝酸盐还原。第二是具有固定化试剂的检测区,其允许通过更大的样品体积。测试 - 柠檬酸的柠檬酸和磷酸的结果不同的酸,因为该酸完全蒸发,而不会在纸上留下任何残留物。研究了利用各种流体控制技术的不同微流体设计,并选择具有折叠检测区的设计并优化,以提高所产生的信号的均匀性。优化的设计允许该装置在水中分别达到0.53ppm和1.18ppm的检测和定量极限。通过纸张技术在水中检测硝酸盐的目的,这占了40%的改进。

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