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开发一种微蒸馏微流控纸基分析装置作为监测淡水中总氨的筛选工具。

Development of a micro-distillation microfluidic paper-based analytical device as a screening tool for total ammonia monitoring in freshwaters.

作者信息

Peters Jonathan J, Almeida M Inês G S, O'Connor Šraj Lenka, McKelvie Ian D, Kolev Spas D

机构信息

School of Chemistry, The University of Melbourne, Victoria, 3010, Australia.

School of Chemistry, The University of Melbourne, Victoria, 3010, Australia; School of Geography, Earth and Environmental Science, Plymouth University, Plymouth, PL4 8AA, United Kingdom.

出版信息

Anal Chim Acta. 2019 Nov 4;1079:120-128. doi: 10.1016/j.aca.2019.05.050. Epub 2019 May 24.

Abstract

An easy-to-use, portable 3D microfluidic paper-based analytical device (μPAD) for the determination of total ammonia (i.e., ammonia + ammonium) in freshwaters is described. It consists of two layers of paper patterned with hydrophilic circular zones, one impregnated with sodium hydroxide (sample zone) and another (detection zone) with an acid-base indicator (nitrazine yellow (NY) or bromothymol blue (BTB)), separated by a μ-distillation chamber. Ammonium ions present in the water sample are converted into ammonia gas by reaction with sodium hydroxide in the sample zone. Ammonia then diffuses through a headspace and reacts with an acid-base indicator in the detection zone, the reflectance of which can be related to the total ammonia concentration. The analytical signal at 7.8 mg L offered by the μ-distillation chamber-based μPAD is more than double of that obtained using a gas-permeable membrane. The proposed μPAD is characterised by a limit of detection of 0.32 or 0.47 mg N L and working concentration ranges of 0.5-3.0 mg N L or 2.0-10 mg N L when using NY or BTB indicators, respectively. This is the first μPAD whose working range covers almost the entire trigger value range (0.32-2.3 mg N L) for ammonia nitrogen in freshwater systems which makes it suitable as a field screening tool for ammonia in freshwaters. An inter- and intra-device repeatability of 7.6% and 9.0%, respectively, has been achieved for the NY-based μPAD (3 mg N L) and 13 and 2.5% (8 mg N L) for the BTB-based μPAD. The NY-based μPAD is stable under vacuum for at least 12 days at room temperature, and 56 days if stored in a freezer (≤-20 °C).

摘要

本文介绍了一种易于使用的便携式三维微流控纸基分析装置(μPAD),用于测定淡水中的总氨(即氨+铵)。它由两层印有亲水性圆形区域的纸组成,一层浸渍有氢氧化钠(样品区),另一层(检测区)含有酸碱指示剂(硝嗪黄(NY)或溴百里酚蓝(BTB)),中间由一个微蒸馏室隔开。水样中的铵离子通过与样品区的氢氧化钠反应转化为氨气。然后氨气通过顶空扩散并与检测区的酸碱指示剂反应,其反射率与总氨浓度相关。基于微蒸馏室的μPAD在7.8 mg L时提供的分析信号比使用透气膜获得的信号高出一倍多。所提出的μPAD的检测限为0.32或0.47 mg N L,当分别使用NY或BTB指示剂时,工作浓度范围为0.5-3.0 mg N L或2.0-10 mg N L。这是第一个工作范围几乎覆盖淡水系统中氨氮整个触发值范围(0.32-2.3 mg N L)的μPAD,这使其适合作为淡水中氨的现场筛选工具。基于NY的μPAD(3 mg N L)的装置间和装置内重复性分别为7.6%和9.0%,基于BTB的μPAD(8 mg N L)的重复性分别为13%和2.5%。基于NY的μPAD在室温下真空稳定至少12天,如果储存在冰箱(≤-20°C)中则稳定56天。

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