首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >A multisyringe flow injection method for the automated determination of sulfide in waters using a miniaturised optical fiber spectrophotometer
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A multisyringe flow injection method for the automated determination of sulfide in waters using a miniaturised optical fiber spectrophotometer

机译:一种使用微型光纤分光光度计自动测定水中硫化物的多针流注射方法

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In this paper, a fully software-controlled multisyringe flow injection (MSFIA) spectrophotometric system is proposed for the determination of sulfide in environmental and waste waters. The implementation of ancillary solenoid valves into the flow network allows a multitude of injection modalities to be explored, the selected modality being directly dependent on the aim of the assays. The multicommuted sandwich-type approach is introduced in this work as an efficient means to warrant high sensitivity for the particular assay with excellent repeatabilities and a considerable reagent saving. Moreover, a high injection frequency may be easily attained by carrying out a multiple injection modality during a single forward displacement of the piston driver bar. The interfacing of the robust and versatile multisyringe piston pump with an optical fiber plug-in spectrophotometer furnished with a light emitting diode enables the miniaturization of the flow analyzer, which is thus readily adaptable to in-situ and real-time monitoring schemes. The flow method is based on the coupling Fischer's reaction of sulfide with N,N-dimethyl-p-phenylenediamine in the presence of Fe(III) as oxidizing reagent in a 0.7 M HCl medium. Careful selection of the physical and chemical variables enabled coefficients of variations better than 1.5% (n = 10) at the 1 mg l(-1) level for both injection modalities. Dynamic working ranges of 0.2-2.0 and 0.5-5 mg l(-1) sulfide for sandwich and multiple injection techniques, and detection limits of 0.09 and 0.15 mg l(-1), respectively, were obtained. Furthermore, the sandwich modality featured an average slope of 0.43 +/- 0.021 mg(-1) calculated from 10 day-to-day calibration plots. This result reveals better sensitivity than other flowing stream methods described in the literature. The multiple injection technique allowed an improvement of the injection throughput up to 80 h(-1), although a decrease of sensitivity was concomitantly observed (average slope of 0.17 +/- 0.011 mg(-1)).The multisyringe flow method was successfully applied to the determination of sulfide in different spiked water matrices (namely, mineral, tap, freshwater, seawater and wastewater) with recoveries ranging from 96 to 104%. Good agreement was also found in water samples between the MSFIA results and those of the batch APHA-standard method. (C) 2004 Elsevier B.V. All fights reserved.
机译:本文提出了一种完全由软件控制的多注射器流动注射(MSFIA)分光光度法测定环境和废水中的硫化物的方法。辅助螺线管阀在流动网络中的实现允许探索多种注入方式,所选方式直接取决于测定的目的。这项工作中引入了多通勤三明治式方法,作为一种有效的方法,可确保对特定测定具有高灵敏度,并具有出色的重复性和可观的试剂节省。此外,通过在活塞驱动杆的单向向前移动期间执行多次喷射方式可以容易地获得高喷射频率。坚固耐用且用途广泛的多注射器活塞泵与配备有发光二极管的光纤插入式分光光度计的接口实现了流量分析仪的小型化,因此很容易适应现场和实时监控方案。流动方法是基于在0.7 M HCl介质中,在作为氧化剂的Fe(III)存在下,硫化物与N,N-二甲基-对苯二胺的Fischer偶联反应。仔细选择物理和化学变量,可以使两种注射方式在1 mg l(-1)水平下的变异系数都优于1.5%(n = 10)。三明治和多次进样技术的动态工作范围为0.2-2.0和0.5-5 mg l(-1),检出限分别为0.09和0.15 mg l(-1)。此外,三明治模态的特征是从10个日常标定图计算得出的平均斜率为0.43 +/- 0.021 mg(-1)。该结果显示出比文献中描述的其他流动方法更好的灵敏度。尽管同时观察到灵敏度降低(平均斜率0.17 +/- 0.011 mg(-1)),但多次进样技术仍可将进样量提高至80 h(-1)。用于测定加标水基质(矿物质,自来水,淡水,海水和废水)中的硫化物,回收率在96%至104%之间。在MSFIA结果与APHA批次标准方法的结果之间也发现了很好的一致性。 (C)2004 Elsevier B.V.版权所有。

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