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首页> 外文期刊>Analytica chimica acta >Optical fiber reflectance sensor coupled to a multisyringe flow injection system for preconcentration and determination of 1-naphthylamine in water samples
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Optical fiber reflectance sensor coupled to a multisyringe flow injection system for preconcentration and determination of 1-naphthylamine in water samples

机译:光纤反射率传感器与多注射器流动注射系统耦合,用于对水样品中的1-萘胺进行预浓缩和测定

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A novel optical fiber reflectance sensor is coupled to a multisyringe flow injection system (MSFIA) for the preconcentration and determination of I -naphthylamine (NPA) in water samples using C 18 disks (octadecyl groups). NPA, being a first-class carcinogen, is important from a toxicological point of view and, therefore, its quantification is of considerable interest. In this study, the Griess reaction is used for sensitive and selective spectrophotometric determination of NPA. The reaction involves conversion of nitrite into nitrous acid in acidic medium followed by diazotization of sulphanilic acid and formation of a diazonium salt. The diazonium salt is then combined with NPA to form 4-(sulphophenylazo)-1-naphthylarnine, an azo dye. This compound is subsequently retained onto a C18 disk followed by spectrophotometric detection at 540nm, and it is then eluted with methanol in water (80%, v/v), so that the C18 disk is regenerated for subsequent experiments. Under the established optimum conditions, a calibration graph for NPA was constructed. Good linearity was observed within a concentration range from 10 to 160 mu g l(-1). The lineal regression equation is A = (0.0027 +/- 0.000 1) [NPA] + (0.0296 +/- 0.0047), r = 0.9991; relative standard deviation values obtained from the analysis of 10 samples of 10, 80 and 160 mu g l(-1) are 4.7, 1.2 and 0.6%, respectively. The mean value relative errors for concentrations of 10, 80, 160 mu g l-1 are 3.4, 0.9 and 0.4%, respectively. The detection and quantification limits were 1.1 and 3.7 mu g l(-1). A sampling throughput of 14 injections per hour is achieved. The repeatability calculated for five different C 18 disks was E-rel = 2.8%. The proposed technique has been validated by replicate analysis (n = 6) of several water samples with spiked NPA, giving satisfactory results. (c) 2006 Elsevier B.V. All rights reserved.
机译:一种新颖的光纤反射率传感器与多注射器流动注射系统(MSFIA)耦合,用于使用C 18圆盘(十八烷基)对水样品中的I-萘胺(NPA)进行预浓缩和测定。从毒理学的角度来看,NPA是一种一流的致癌物质,因此非常重要,因此,对其进行量化具有相当大的意义。在这项研究中,Griess反应用于灵敏和选择性的分光光度法测定NPA。该反应包括在酸性介质中将亚硝酸盐转化为亚硝酸,然后将磺胺酸重氮化并形成重氮盐。然后将重氮盐与NPA合并形成一种偶氮染料4-(磺基苯基偶氮)-1-萘胺。该化合物随后保留在C18圆盘上,随后在540nm处进行分光光度检测,然后用甲醇在水中(80%,v / v)洗脱,以使C18圆盘再生用于后续实验。在确定的最佳条件下,构建了NPA的校准图。在10至160μg l(-1)的浓度范围内观察到良好的线性。线性回归方程为A =(0.0027 +/- 0.000 1)[NPA] +(0.0296 +/- 0.0047),r = 0.9991;通过分析10、80和160μg l(-1)的10个样品获得的相对标准偏差分别为4.7%,1.2%和0.6%。浓度为10、80、160μgl-1的平均值相对误差分别为3.4%,0.9%和0.4%。检出限和定量限分别为1.1和3.7μg l(-1)。每小时可获得14次进样的采样通量。计算出的五个不同的C 18盘的重复性为E-rel = 2.8%。通过重复分析(n = 6)的几个加标NPA的水样品,验证了所提出的技术,结果令人满意。 (c)2006 Elsevier B.V.保留所有权利。

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