首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Flow analysis-vapor phase generation-Fourier transform infrared (FA-VPG-FTIR) spectrometric determination of nitrite
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Flow analysis-vapor phase generation-Fourier transform infrared (FA-VPG-FTIR) spectrometric determination of nitrite

机译:流动分析-气相发生-傅立叶红外光谱(FA-VPG-FTIR)测定亚硝酸盐

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In this work, the coupling between flow analysis (FA)-vapor phase generation (VPG) and Fourier transform infrared spectrometry (FTIR) has been proposed as a novel and alternative strategy for the determination of nitrite. The analyte was transformed into the gaseous nitric oxide (NO) by on-line reaction with potassium iodide (KI) or ascorbic acid in acidic medium. The gaseous NO generated was transported by means of a N-2 gas carrier stream inside the IR gas cell and the corresponding FTIR spectrum was acquired in a continuous mode. The absorbance at 1876 cm(-1), corrected by a baseline established between 1879 and 1872 cm(-1) at a nominal resolution of 2 cm(-1), was selected as a measurement criterion. The effect of different spectroscopic and flow analysis experimental parameters, such as nominal resolution, number of scans, reducing agent and its concentration, acidic medium, reagents and sample flow rates, and the carrier gas flow rate on the analytical signal, and then in the figures of merit were initially evaluated by using a standard short path length (10 cm) IR gas cell. The optimization of the system was carried out by the univariate method. The main aims of this study were: (i) to investigate the on-line generation of gaseous nitric oxide in a continuous flow system, and (ii) the use of Fourier transform infrared spectrometry as an alternative and selective detector for the determination of nitrite. The proposed method was initially tested and applied for the determination of nitrite in samples with very high concentration of nitrite, such as frankfurters. (C) 2004 Elsevier B.V. All rights reserved.
机译:在这项工作中,流动分析(FA)-气相生成(VPG)与傅立叶变换红外光谱(FTIR)之间的耦合已被提出,作为测定亚硝酸盐的一种新颖的替代策略。通过与碘化钾(KI)或抗坏血酸在酸性介质中在线反应,将分析物转化为气态一氧化氮(NO)。所产生的气态NO通过N-2气体流在IR气室中传输,并以连续模式获取相应的FTIR光谱。选择在1876 cm(-1)处的吸光度,通过在1879年和1872 cm(-1)之间建立的基线以2 cm(-1)的标称分辨率进行校正,作为测量标准。光谱和流量分析实验参数的不同影响,例如标称分辨率,扫描次数,还原剂及其浓度,酸性介质,试剂和样品流速以及载气流速对分析信号的影响,然后在品质因数最初通过使用标准短程长度(10 cm)红外气室进行评估。系统的优化是通过单变量方法进行的。这项研究的主要目的是:(i)研究连续流系统中气态一氧化氮的在线产生,以及(ii)使用傅立叶变换红外光谱法作为替代和选择性检测器测定亚硝酸盐。最初测试了该方法,并将其用于测定亚硝酸盐浓度很高的样品(例如法兰克福香肠)中的亚硝酸盐。 (C)2004 Elsevier B.V.保留所有权利。

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