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Application of an ammonium ion-selective electrode for the real-time measurement of ammonia nitrogen based on pH and temperature compensation

机译:铵离子选择性电极在基于pH和温度补偿的氨氮实时测量

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Traditional methods for determining the ammonia nitrogen (NH3-N) concentration are the colorimetric method using Nessler's reagent or salicylate. To prevent secondary pollution, minimise the time required for measurement, and reduce cation interference, new NH3-N measurement methods have been developed including fluorescence, gas phase molecular absorption spectrometry, and ammonia gas sensing electrode methods. However, in these techniques, the addition of a chemical reagent is unavoidable, so the real-time and accurate measurements of NH3-N are achieved hardly. In this study, we used an ammonium ion-selective electrode (ISE) for the real-time measurement of NH3-N with compensation for the ammonium ion (NH4+) component of the total NH3-N concentration. The basic mechanism is that an ammonium ISE can measure NH4+ concentration, and NH4+ ratio in NH3-N can be calculated based on pH and temperature. Experimental results indicate that the ammonium ISE exhibited near-Nernstian behaviour, having a fitted line with a slope of 56.4 mV/pNH(4). The compensation effects and reproducibility are good. Furthermore, the difference in the temperature responses at different NH4+ concentrations agrees with the Nernst equation basically. Therefore, the proposed method can provide a real-time and environmentally friendly solution to determine NH3-N concentration. (C) 2019 Elsevier Ltd. All rights reserved.
机译:用于测定氨氮(NH 3-N)浓度的传统方法是使用尼斯勒试剂或水杨酸盐的比色法。为了防止二次污染,最小化测量所需的时间,并降低阳离子干扰,已经开发出包括荧光,气相分子吸收光谱法和氨气传感电极方法的新的NH 3-N测定方法。然而,在这些技术中,添加化学试剂是不可避免的,因此NH3-N的实时和精确测量几乎可以实现。在该研究中,我们使用了铵离子选择性电极(ISE),用于NH3-N的实时测量,对于总NH 3-N浓度的铵离子(NH 4 +)组分进行补偿。基本机制是铵ISE可以测量NH 4 +浓度,NH 3-N中的NH 4 +比可以基于pH和温度计算。实验结果表明,铵ISE呈现出近端的行为,具有斜率为56.4mV / pnH(4)的配合线。补偿效应和再现性是好的。此外,不同NH4 +浓度的温度响应的差异基本上与NERNST方程一致。因此,所提出的方法可以提供实时和环保的解决方案来确定NH3-N浓度。 (c)2019年elestvier有限公司保留所有权利。

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