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首页> 外文期刊>Analytica chimica acta >Kinetic method for the determination of trace amounts of copper(II)in water matrices by its catalytic effect on the oxidation of 1,5-diphenylcarbazide
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Kinetic method for the determination of trace amounts of copper(II)in water matrices by its catalytic effect on the oxidation of 1,5-diphenylcarbazide

机译:催化作用下1,5-二苯卡巴肼氧化的动力学法测定水中的痕量铜(II)

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摘要

The chemical reaction between Cu(II)and 1,5-diphenylcarbazide(DPC)is revised from an analytical perspective.It is shown that instead of a Cu-DPC complex,an oxygen mediated DPC oxidation to diphenylcarbazone(DPCO)is the main reaction involved where Cu(II)acts as catalyst.Therefore,the signal observed corresponds to the oxidation product DPCO.Under certain specific conditions a chelate complex between Cu(II)and DPCO can also be observed.Kinetic parameters of these reactions are calculated.These results set the basis for the development of analytical methodologies for the determination of Cu(II)at ultra-trace levels.Since the study of interferences revealed Mg(II)as the most serious,an optimised flow injection system which allows the in-liraeelimination of Mg(II)is presented.The limit of detection(k=3)calculated for 10 blank replicates is 0.05 mugL~(-1)(injection volume 20 muL),the analytical sensitivity equals 48 mug~(-1)L and the sample throughput is 120 h~(-1).Obtained results for Cu(II)determination in natural waters as well as the validation of the analytical methodology will be given and discussed.
机译:从分析的角度修订了Cu(II)与1,5-二苯卡巴肼(DPC)之间的化学反应。研究表明,氧介导的DPC代替Cu-DPC络合物是氧化二苯卡巴zone(DPCO)的主要反应。因此,观察到的信号对应于氧化产物DPCO。在某些特定条件下,还可以观察到Cu(II)与DPCO之间的螯合物,计算这些反应的动力学参数。该结果为开发超痕量铜(II)的分析方法奠定了基础。由于对干扰的研究表明,Mg(II)是最严重的,因此一种优化的流动注射系统可实现消除内毒素的作用。每10次空白重复计算的检出限(k = 3)为0.05 mugL〜(-1)(进样量20μL),分析灵敏度等于48 mug〜(-1)L,样品通量为120 h〜(-1).Cu(I I)将给出和讨论天然水中的测定以及分析方法的验证。

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