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Response surface methodology for optimisation of 4,6-Dinitro-o-cresol quantification using hanging mercury drop electrode

机译:使用悬挂式汞滴电极优化4,6-二硝基-邻甲酚定量的响应面方法

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摘要

A method for the pesticide DNOC (4,6-Dinitro-o-cresol) quantification using hanging mercury drop electrode (HMDE) and stripping square wave voltammetry (SSWV) optimisation is proposed. As a continuous cathodic current decrease was observed during the experiments, a waiting time, together with solution pH and SWV instrumental variables were optimised by factorial designs. From the two reduction current peaks values, only one was considered as dependent variable in the optimisation process. While the cathodic current peak and standard deviation were used in the waiting time and solution pH optimisation process, the instrumental parameters for SWV were optimised by using only current peak values. With the optimal parameters, a calibration curve from (0.01-0.55) x 10(-6) mol L-1 with LOD of 2 x 10(-8) mol L-1 was obtained. The proposed method was checked for DNOC quantification in different water samples obtained from Cordoba area and very good results, with recovery values around 102% were observed.
机译:提出了一种使用悬挂式汞滴电极(HMDE)和溶出方波伏安法(SSWV)优化的农药DNOC(4,6-二硝基-邻甲酚)定量方法。由于在实验过程中观察到阴极电流连续下降,因此通过因子设计优化了等待时间以及溶液pH和SWV仪器变量。从两个还原电流峰值中,在优化过程中只有一个被视为因变量。在等待时间和溶液pH最优化过程中使用阴极电流峰值和标准偏差,而SWV的仪器参数仅通过使用电流峰值来优化。利用最佳参数,获得了(0.01-0.55)x 10(-6)mol L-1和2 x 10(-8)mol L-1的LOD的校准曲线。在从科尔多瓦地区获得的不同水样中,对提议的方法进行了DNOC定量检查,结果非常好,回收率约为102%。

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