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Development of a high sensitivity photometric procedure for the determination of vanadium in mineral and fresh waters employing a downsized multicommuted flow analysis approach

机译:使用缩小的多通量流动分析方法开发高灵敏度光度法测定矿物质和淡水中的钒

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This article focuses on the development of an analytical procedure for the photometric determination of vanadium in fresh and mineral waters, implemented employing a downsized multicommuted flow analysis approach. A flow system module using solenoid mini-pumps for fluid propelling and a light emitting diode (LED) based photometer were handled employing a microcontroller (PIC18F). Aiming to improve sensitivity, the flow analysis module and the photometer were designed to allow the coupling of a flow cell with an optical pathlength of 150 mm. The photometric procedure was based on the reaction of V(IV) with eriochrome cyanine R, which formed a compound that presented maximum absorption at 560 nm. Samples of river water and mineral water were processed with the intention to assess the effectiveness of both equipment setup and analytical procedure. The proposed setup presented good overall performance including a linear response (r = 0.997) comprising the concentration range of 0.02 to 1.50 mu g mL(-1) vanadium; reagent consumption of 11.6 mu g eriochrome cyanine R and 8.6 mg ascorbic acid per determination; and a detection limit of 13 mu g L-1 vanadium. Other useful features including a relative standard deviation of 0.87% (n = 10), a sampling throughput of 47 determination per hour and a waste generation of 2.4 mL per determination were also achieved.
机译:本文着重开发用于光度法测定淡水和矿泉水中钒的分析程序,该程序采用缩小的多通流分析方法实施。使用微控制器(PIC18F)处理了使用螺线管微型泵进行流体推进的流量系统模块和基于发光二极管(LED)的光度计。为了提高灵敏度,流量分析模块和光度计设计为允许耦合光程为150 mm的流通池。光度测定法基于V(IV)与二价铬菁R的反应,后者形成了在560 nm处具有最大吸收的化合物。处理河水和矿泉水的样品旨在评估设备设置和分析程序的有效性。所提出的设置具有良好的整体性能,包括线性响应(r = 0.997),其中线性浓度范围为0.02至1.50μg mL(-1)钒;每次测定试剂消耗量为11.6μg铬红花色素R和8.6 mg抗坏血酸; L-1钒的检出限为13μg。还获得了其他有用的功能,包括相对标准偏差为0.87%(n = 10),每小时的样品通量为47次测定,每测定一次产生废物2.4 mL。

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