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首页> 外文期刊>Analytica chimica acta >Reagent-injection spectrophotometric determination of citric acid in beverages and pharmaceutical formulations based on its inhibitory effect on the iron(III) catalytic oxidation of 2,4-diaminophenol by hydrogen peroxide
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Reagent-injection spectrophotometric determination of citric acid in beverages and pharmaceutical formulations based on its inhibitory effect on the iron(III) catalytic oxidation of 2,4-diaminophenol by hydrogen peroxide

机译:试剂注射分光光度法对过氧化氢对2,4-二氨基苯酚铁(III)催化氧化的抑制作用,用于饮料和药物制剂中柠檬酸的测定

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摘要

A new simple and rapid reagent-injection method is reported for the spectrophotometric determination of citric acid in beverages and pharmaceutical formulations. The method is based on the inhibitory effect of citric acid upon the Fe(m) catalytic oxidation of 2,4-diaminophenol (DAP) by H202. Citric acid forms stable complexes with Fe(m), thus, reducing its catalytic effect. The decrease in absorbance of the oxidation product is monitored at SQO nm. The various chemical and physical variables of thy PI system were optimized and a study of interfering ions was also carried out. A linear calibration graph was obtained from ° to 1000mgl-l citric acid. The precision was very good (Sr = 1.9%) and the detection limit was satisfactory (CL = 0.96mgl-l). The sampling rate was 90 injections per hour. The average accuracy was evaluated by comparison of the results with those obtained by the Boehringer-Mannheim UV -method test combination kit for citric acid and it was also very good (er = 0.96%). The method was found to be adequately selective considering the ions the samples contain, and has been successfully applied to the determination of citric acid in commercial beverages and pharmaceutical formulations.
机译:报道了一种用于分光光度法测定饮料和药物制剂中柠檬酸的新的简便,快速的试剂注射方法。该方法基于柠檬酸对H2O2催化Fe(m)2,4-二氨基苯酚(DAP)催化氧化的抑制作用。柠檬酸与Fe(m)形成稳定的络合物,因此降低了其催化作用。在SQO nm处监测氧化产物的吸光度下降。优化了PI系统的各种化学和物理变量,并对干扰离子进行了研究。从°到1000mg-1柠檬酸获得线性校准图。精密度非常好(Sr = 1.9%),检出限令人满意(CL = 0.96mg / l)。采样率为每小时90次进样。通过将结果与Boehringer-Mannheim柠檬酸UV方法测试组合试剂盒获得的结果进行比较,评估了平均准确度,该结果也非常好(er = 0.96%)。考虑到样品中所含的离子,发现该方法具有足够的选择性,并且已成功地用于测定商业饮料和药物制剂中的柠檬酸。

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