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用于无盐误差亚硝酸根测定的标准加入/吸收检测微流控系统。

Standard addition/absorption detection microfluidic system for salt error-free nitrite determination.

机构信息

Department of Chemistry, BioNanotechnology Center, Pohang University of Science and Technology, 77 Cheongam-Ro, Nam-Gu, Pohang, 790-784, South Korea.

Department of Chemistry, BioNanotechnology Center, Pohang University of Science and Technology, 77 Cheongam-Ro, Nam-Gu, Pohang, 790-784, South Korea.

出版信息

Anal Chim Acta. 2015 Jul 30;886:114-22. doi: 10.1016/j.aca.2015.06.009. Epub 2015 Jul 7.

DOI:10.1016/j.aca.2015.06.009
PMID:26320643
Abstract

A continuous-flow microfluidic chip-based standard addition/absorption detection system has been developed for accurate determination of nitrite in water of varying salinity. The absorption detection of nitrite is made via color development using the Griess reaction. We have found the yield of the reaction is significantly affected by salinity (e.g., -12% error for 30‰ NaCl, 50.0 μg L(-1)N-NO2(-) solution). The microchip has been designed to perform standard addition, color development, and absorbance detection in sequence. To effectively block stray light, the microchip made from black poly(dimethylsiloxane) is placed on the top of a compact housing that accommodates a light-emitting diode, a photomultiplier tube, and an interference filter, where the light source and the detector are optically isolated. An 80-mm liquid-core waveguide mounted on the chip externally has been employed as the absorption detection flow cell. These designs for optics secure a wide linear response range (up to 500 μg L(-1)N-NO2(-)) and a low detection limit (0.12 μg L(-1)N-NO2(-) = 8.6 nM N-NO2(-), S/N = 3). From determination of nitrite in standard samples and real samples collected from an estuary, it has been demonstrated that our microfluidic system is highly accurate (<1% RSD, n = 3) and precise (<1% RSD, n = 3).

摘要

一种基于连续流动微流控芯片的标准加入/吸收检测系统已经被开发出来,用于准确测定不同盐度水中的亚硝酸盐。亚硝酸盐的吸收检测是通过使用格里斯反应进行显色来实现的。我们发现反应的产率受到盐度的显著影响(例如,对于 30‰的 NaCl,50.0μg L(-1)N-NO2(-)溶液,会产生-12%的误差)。微芯片被设计为依次进行标准加入、显色和吸光度检测。为了有效地阻挡杂散光,由黑色聚二甲基硅氧烷制成的微芯片被放置在紧凑外壳的顶部,该外壳容纳了一个发光二极管、一个光电倍增管和一个干涉滤光片,其中光源和探测器是光学隔离的。一个安装在芯片外部的 80mm 液体芯波导被用作吸收检测流动池。这些光学设计确保了宽的线性响应范围(高达 500μg L(-1)N-NO2(-))和低的检测限(0.12μg L(-1)N-NO2(-) = 8.6 nM N-NO2(-),S/N = 3)。通过对标准样品和从河口采集的实际样品中亚硝酸盐的测定,证明了我们的微流控系统具有很高的准确性(<1%RSD,n=3)和精密度(<1%RSD,n=3)。

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