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A Highly Sensitive Multicommuted Flow Analysis Procedure for Photometric Determination of Molybdenum in Plant Materials without a Solvent Extraction Step

机译:无需溶剂萃取步骤即可光度法测定植物材料中钼的高灵敏多通量流动分析程序

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A highly sensitive analytical procedure for photometric determination of molybdenum in plant materials was developed and validated. This procedure is based on the reaction of Mo(V) with thiocyanate ions (SCN?) in acidic medium to form a compound that can be monitored at 474?nm and was implemented employing a multicommuted flow analysis setup. Photometric detection was performed using an LED-based photometer coupled to a flow cell with a long optical path length (200?mm) to achieve high sensitivity, allowing Mo(V) determination at a level of μg?L?1 without the use of an organic solvent extraction step. After optimization of operational conditions, samples of digested plant materials were analyzed employing the proposed procedure. The accuracy was assessed by comparing the obtained results with those of a reference method, with an agreement observed at 95% confidence level. In addition, a detection limit of 9.1?μg?L?1, a linear response () over the concentration range of 50–500?μg?L?1, generation of only 3.75?mL of waste per determination, and a sampling rate of 51 determinations per hour were achieved.
机译:开发并验证了一种用于光度法测定植物材料中钼的高度灵敏的分析程序。该方法是基于Mo(V)与硫氰酸根离子(SCN2)在酸性介质中的反应,以形成可以在474?nm处监测的化合物,并且该方法采用了多通流分析装置。使用基于LED的光度计连接到具有较长光程长度(200?mm)的流通池的光度检测,以实现高灵敏度,从而无需使用Mg即可测定μg?L?1的Mo(V)。有机溶剂萃取步骤。在优化操作条件后,采用建议的程序分析了消化后的植物材料样品。通过将获得的结果与参考方法的结果进行比较来评估准确性,并在95%置信水平下观察到一致性。此外,检出限为9.1µg?L?1,浓度范围为50–500µg?L?1时线性响应(),每次测定仅产生3.75µmL废物,并且采样率每小时完成51次测定。

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