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Development of a photometric procedure for tin determination in canned foods employing a multicommuted flow analysis approach

机译:采用多换向流分析方法开发罐装食品中锡测定的光度法

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This work describes an automated analytical procedure for the photometric determination of tin in canned foods, employing a multicommuted flow analysis process. The flow system manifold comprised a set of three-way solenoid valves to handle solutions and a multisyringe module for fluid propelling. A PIC microcontroller, run using a software written in Visual Basic 6.0 language, was used to control the flow analysis setup and to perform data acquisition. Photometric detection was accomplished employing a homemade photometer, which consisted of an ultra-bright LED, a photodiode and a homemade flow cell with an optical path length of 200 mm. The procedure was based on the reaction of Sn(IV) with pyrocatechol violet (PCV) in the presence of surfactants. After selecting the best operational conditions, profitable features such as, a linear response ranging from 0.10 to 1.25 mg La?’1, a limit of detection of 0.04 mg La?’1, a variation coefficient of 1.30% (n = 10) and a sampling rate of 49 determinations per hour were achieved. By spiking samples with tin, recoveries between 95 and 110% were achieved.
机译:这项工作描述了一种采用多通流分析方法对罐头食品中的锡进行光度测定的自动化分析程序。流动系统歧管包括一组用于处理溶液的三通电磁阀和一个用于流体推进的多注射器模块。使用使用Visual Basic 6.0语言编写的软件运行的PIC微控制器,用于控制流分析设置并执行数据采集。使用自制的光度计完成光度检测,该光度计由超亮LED,光电二极管和光程长度为200 mm的自制流通池组成。该程序基于表面活性剂存在下Sn(IV)与邻苯二酚紫(PCV)的反应。选择最佳操作条件后,可获利的功能包括线性响应范围从0.10到1.25 mg La?'1,检测极限为0.04 mg La?'1,变异系数为1.30%(n = 10),以及每小时获得49个测定的采样率。通过用锡加标样品,可实现95%至110%的回收率。

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