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配备双LED吸光度检测器和3D打印柱后加热微反应器的便携式IC系统,用于同时测定铵、亚硝酸盐和硝酸盐。

Portable IC system enabled with dual LED-based absorbance detectors and 3D-printed post-column heated micro-reactor for the simultaneous determination of ammonium, nitrite and nitrate.

作者信息

Debruille Kurt, Mai Yonglin, Hortin Philip, Bluett Simon, Murray Eoin, Gupta Vipul, Paull Brett

机构信息

Australian Centre for Research on Separation Science (ACROSS), School of Natural Sciences (Chemistry), University of Tasmania, Sandy Bay, Hobart, 7001, Tasmania, Australia.

Central Science Laboratory, University of Tasmania, Private Bag 74, Hobart, Tasmania, 7001, Australia.

出版信息

Anal Chim Acta. 2024 May 22;1304:342556. doi: 10.1016/j.aca.2024.342556. Epub 2024 Mar 28.

Abstract

BACKGROUND

The on-site and simultaneous determination of anionic nitrite (NO) and nitrate (NO), and cationic ammonium (NH), in industrial and natural waters, presents a significant analytical challenge. Toward this end, herein a 3D-printed micro-reactor with an integrated heater chip was designed and optimised for the post-column colorimetric detection of NH using a modified Berthelot reaction. The system was integrated within a portable and field deployable ion chromatograph (Aquamonitrix) designed to separate and detect NO and NO, but here enabled with dual LED-based absorbance detectors, with the aim to provide the first system capable of simultaneous determination of both anions and NH in industrial and natural waters.

RESULTS

Incorporating a 0.750 mm I.D. 3D-printed serpentine-based microchannel for sample-reagent mixing and heating, the resultant micro-reactor had a total reactor channel length of 1.26 m, which provided for a reaction time of 1.42 min based upon a total flow rate of 0.27 mL min, within a 40 mm printed area. The colorimetric reaction was performed within the micro-reactor, which was then coupled to a dedicated 660 nm LED-based absorbance detector. By rapidly delivering a reactor temperature of 70 °C in just 40 s, the optimal conditions to improve reaction kinetics were achieved to provide for limits of detection of 0.1 mg L for NH, based upon an injection volume of just 10 μL. Linearity for NH was observed over the range 0-50 mg L, n = 3, R = 0.9987. The reactor was found to deliver excellent reproducibility when included as a post-column reactor within the Aquamonitrix analyser, with an overall relative standard deviation below 1.2 % for peak height and 0.3 % for peak residence time, based upon 6 repeat injections.

SIGNIFICANCE

The printed post-column reactor assembly was integrated into a commercial portable ion chromatograph developed for the separation and detection of NO and NO, thus providing a fully automated system for the remote and simultaneous analysis of NO, NO, and NH in natural and industrial waters. The fully automated system was deployed externally within a greenhouse facility to demonstrate this capability.

摘要

背景

在工业和天然水体中现场同时测定阴离子亚硝酸盐(NO₂⁻)和硝酸盐(NO₃⁻)以及阳离子铵(NH₄⁺),是一项重大的分析挑战。为此,本文设计并优化了一种带有集成加热芯片的3D打印微反应器,用于使用改良的伯泽洛特反应对NH₄⁺进行柱后比色检测。该系统集成在一台便携式且可现场部署的离子色谱仪(Aquamonitrix)内,该离子色谱仪旨在分离和检测NO₂⁻和NO₃⁻,但此处配备了基于双LED的吸光度检测器,目的是提供首个能够同时测定工业和天然水体中阴离子和NH₄⁺的系统。

结果

采用内径为0.750毫米的3D打印蛇形微通道进行样品 - 试剂混合和加热,所得微反应器的总反应器通道长度为1.26米,基于0.27毫升/分钟的总流速,在40毫米的打印区域内反应时间为1.42分钟。比色反应在微反应器内进行,然后连接到专用的基于660纳米LED的吸光度检测器。通过在仅40秒内迅速将反应器温度升至70°C,实现了改善反应动力学的最佳条件,基于仅10微升的进样体积,NH₄⁺的检测限为0.1毫克/升。在0 - 50毫克/升范围内观察到NH₄⁺的线性关系,n = 3,R = 0.9987。当该反应器作为柱后反应器包含在Aquamonitrix分析仪中时,发现其具有出色的重现性,基于6次重复进样,峰高的总体相对标准偏差低于1.2%,峰保留时间的总体相对标准偏差低于0.3%。

意义

打印的柱后反应器组件集成到了一台为分离和检测NO₂⁻和NO₃⁻而开发的商用便携式离子色谱仪中,从而提供了一个用于远程同时分析天然和工业水体中NO₂⁻、NO₃⁻和NH₄⁺的全自动系统。该全自动系统在温室设施外部进行了部署以展示此能力。

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