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一种使用金电极测定水溶液中过硫酸盐的创新高效电分析方法。

Innovative and efficient electroanalytical approach for determining persulfate in aqueous solutions using a gold electrode.

作者信息

L Santos José Eudes, D Gondim Amanda, Vieira Dos Santos Elisama, Martínez-Huitle Carlos A

机构信息

Renewable Energies and Environmental Sustainability Research Group, Institute of Chemistry, Federal University of Rio Grande Do Norte, Campus Universitário, Av. Salgado Filho 3000, Lagoa Nova, CEP 59078-970, Natal, Rio Grande do Norte, Brazil; National Institute for Alternative Technologies of Detection, Toxicological Evaluation and Removal of Mi-cropollutants and Radioactives (INCT-DATREM), Institute of Chemistry, UNESP, P.O. Box 355, 14800 900, Araraquara, SP, Brazil.

Renewable Energies and Environmental Sustainability Research Group, Institute of Chemistry, Federal University of Rio Grande Do Norte, Campus Universitário, Av. Salgado Filho 3000, Lagoa Nova, CEP 59078-970, Natal, Rio Grande do Norte, Brazil.

出版信息

Chemosphere. 2023 Dec;344:140263. doi: 10.1016/j.chemosphere.2023.140263. Epub 2023 Sep 23.

Abstract

Persulfate (PDS), peroxodisulfate, peroxydisulfate, peroxodisulfuric acid, is an oxidant that can be generated by direct oxidation of sulfate ions or indirectly via reaction with hydroxyl radicals in anodes with high oxygen overpotential. Quantitative methods for determining/quantifying PDS in the presence of other strong oxidants or other anions in eco-friendly applications do not give reliable results because of these interferents. Therefore, an additional method is needed to improve the efficacy to determine/quantify the PDS concentration in oxidative environments. In this frame, an alternative sensing approach was developed based on the electroreduction of PDS in the polycrystalline gold electrode using the square wave voltammetry (SWV) technique for its detection and quantification. Then, the procedure was evaluated in terms of its effectiveness for determining PDS in complex matrices, such as in the electrolysis of sulfate ion precursor solutions using anodes with high oxygen overpotential (e.g.: diamond electrode) capable of generating other strong oxidants. Based on the results obtained, it was confirmed that only the direct electron transfer step is attained when PDS is electrochemically synthetized at the surface of the polycrystalline gold electrode, contributing to its detection and quantification by SWV. It was also observed that at acidic conditions, the PDS electroreduction process is controlled by mass transfer while that the sensitivity for PDS detection is improved, achieving detection limits of about 14 and 19 μM for perchloric and sulfuric acids medium, respectively. When the electrolysis of sulfate-based solution at acidic conditions was performed to determine the electrochemical production of PDS by SWV approach with Au sensor, the concentration of PDS was effectively determined and no interferences were assessed by other strong oxidants generated during the electrolysis. Conversely, the spectrophotometric method showed that, the results of the PDS concentration were overestimated and other strong oxidants significantly interfere with its determination during the electrolysis of sulfuric acid solutions. Therefore, the electroanalytical method presented here is a suitable alternative for determining PDS during the applicability of the environmental-electrochemical technologies.

摘要

过硫酸盐(PDS),即过二硫酸盐、过氧二硫酸盐、过氧二硫酸,是一种氧化剂,可通过硫酸根离子的直接氧化或在具有高氧过电位的阳极中与羟基自由基反应间接生成。在生态友好型应用中,在存在其他强氧化剂或其他阴离子的情况下测定/定量PDS的定量方法由于这些干扰物而无法给出可靠结果。因此,需要一种额外的方法来提高在氧化环境中测定/定量PDS浓度的效率。在此框架下,开发了一种基于多晶金电极中PDS电还原的替代传感方法,使用方波伏安法(SWV)技术对其进行检测和定量。然后,评估了该程序在复杂基质中测定PDS的有效性,例如在使用能够产生其他强氧化剂的高氧过电位阳极(如金刚石电极)对硫酸根离子前驱体溶液进行电解时。基于获得的结果,证实了在多晶金电极表面电化学合成PDS时仅实现了直接电子转移步骤,这有助于通过SWV对其进行检测和定量。还观察到,在酸性条件下,PDS电还原过程受传质控制,同时提高了PDS检测的灵敏度,在高氯酸和硫酸介质中的检测限分别约为14和19 μM。当在酸性条件下对基于硫酸盐的溶液进行电解以通过带有金传感器的SWV方法测定PDS的电化学生产时,有效地测定了PDS的浓度,并且在电解过程中未评估其他强氧化剂的干扰。相反,分光光度法表明,PDS浓度的结果被高估,并且在硫酸溶液电解过程中其他强氧化剂显著干扰其测定。因此,本文提出的电分析方法是在环境电化学技术适用性期间测定PDS的合适替代方法。

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