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Application of MWCNTs/Fe3O4 modified electrode under inducing adsorption for rapid and sensitive detection of cadmium in a lab-on-valve system

机译:MWCNTs / Fe3O4修饰电极在诱导吸附下在阀门实验室系统中快速,灵敏地检测镉中的应用

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A rapid and sensitive approach for the determination of trace levels of cadmium using stripping voltammetry coupled with a sequential injection lab-on-valve system was developed. The proposed method was based on the accumulation of cadmium on the multi-walled carbon nanotubes/Fe3O4 nanoparticles modified electrode where iodide was used as the induced adsorption media. Different parameters such as supporting electrolyte and its pH, concentration of KI, amounts of modifier, accumulation potential, accumulation time, and flow rate were investigated to enhance the analytical performance. Under the optimum conditions, the signal intensity shows a linear relationship with the concentration of cadmium over the range of 5 ?— 10a?’9 to 2 ?— 10a?’7 mol La?’1. A sampling frequency of 24 per hour and a detection limit of 2.7 ?— 10a?’9 mol La?’1 were obtained with an accumulation time of 120 s. The relative standard deviation for 11 repeated measurements of 1 ?— 10a?’8 mol La?’1 cadmium was 3.2%. The analytical use of the established method was validated by applying it to the determination of cadmium in natural waters samples and certified reference materials.
机译:开发了一种快速灵敏的方法,该方法使用溶出伏安法结合顺序进样实验室阀系统来测定痕量镉。所提出的方法基于镉在多壁碳纳米管/ Fe3O4纳米颗粒修饰电极上的镉积累,其中碘化物用作诱导吸附介质。研究了各种参数,例如支持电解质及其pH值,KI浓度,改性剂的量,累积电位,累积时间和流速,以提高分析性能。在最佳条件下,信号强度与镉的浓度在5?-10a?'9至2?-10a?'7 mol La?'1范围内呈线性关系。累积时间为120 s,每小时的采样频率为24,每小时的检出限为2.7?-10a?'9 mol La?'1。 1次重复测量1?— 10a?8 mol La?1镉的相对标准偏差为3.2%。通过将所建立的方法用于自然水样和经认证的参考物质中镉的测定,验证了该方法的分析用途。

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