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Determination of Dipyrone in pharmaceutical preparations based on the chemiluminescent reaction of the quinolinic hydrazide-H2O2-vanadium (IV) system and flow injection analysis

机译:基于喹啉酰肼-H2O2-钒(IV)体系的化学发光反应和流动注射分析法测定药物制剂中的敌百隆

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摘要

A rapid, economic and sensitive chemiluminescent method involving flow-injection analysis was developed for the determination of dipyrone in pharmaceutical preparations. The method is based on the chemiluminescent reaction between quinolinic hydrazide and hydrogen peroxide in a strongly alkaline medium, in which vanadium(IV) acts as a catalyst. Principal chemical and physical variables involved in the flow-injection system were optimized using a modified simplex method. The variations in the quantum yield observed when dipyrone was present in the reaction medium were used to determine the concentration of this compound. The proposed method requires no preconcentration steps and reliably quantifies dipyrone over the linear range 1–50 µg/mL. In addition, a sample throughput of 85 samples/h is possible. Copyright © 2011 John Wiley & Sons, Ltd.
机译:建立了一种涉及流动注射分析的快速,经济,灵敏的化学发光方法,用于测定药物制剂中的双嘧达隆。该方法基于喹啉酰肼与过氧化氢在强碱性介质中的化学发光反应,其中钒(IV)充当催化剂。使用改进的单纯形法对流动注射系统中涉及的主要化学和物理变量进行了优化。当在反应介质中存在双嘧啶时观察到的量子产率的变化用于确定该化合物的浓度。所提出的方法不需要预浓缩步骤,并且可以在线性范围1–50μg / mL中可靠地定量双嘧达隆。另外,样品通量为每小时85个样品。版权所有©2011 John Wiley&Sons,Ltd.

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