首页> 外文期刊>Bulletin of the Korean Chemical Society >Electro-oxidation Kinetics of Cerium(III) in Nitric Acid Using Divided Electrochemical Cell for Application in the Mediated Electrochemical Oxidation of Phenol
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Electro-oxidation Kinetics of Cerium(III) in Nitric Acid Using Divided Electrochemical Cell for Application in the Mediated Electrochemical Oxidation of Phenol

机译:分离式电化学池在硝酸中铈(III)的电氧化动力学中用于苯酚的介电氧化

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The electrochemical oxidation of cerium(III) was carried out using divided and undivided electrochemical cells in nitric acid medium. It was found that divided cell with Nafion 324 as the separator gave good conversion yield with high current efficiency compared to the undivided cell. The efficiency of the divided electrochemical cell was further optimized in terms of cell voltage, temperature, flow rate of solution recirculation, concentrations of Ce(III) and nitric acid. The better conditions for 1 M Ce(III) in 3 M nitric acid were found to be 2.5 V, 363 K and 100 mL/min recirculation flow rate based on the current efficiency under the experimental conditions investigated. The Ce(IV) oxidant produced was used as a mediator for the mineralization of phenol. The mineralization efficiency of the cerium mediated electrochemical oxidation was found rapid and higher compared to the direct electrochemical oxidation based on CO2 evolution under the same conditions.
机译:铈(III)的电化学氧化是在硝酸介质中使用分开的和未分开的电化学电池进行的。发现与未分开的电池相比,以Nafion 324作为隔板的分开的电池具有良好的转化率和高的电流效率。在电池电压,温度,溶液再循环流速,Ce(III)和硝酸浓度方面进一步优化了分开的电化学电池的效率。根据所研究的实验条件下的电流效率,发现在3 M硝酸中1 M Ce(III)的更好条件是2.5 V,363 K和100 mL / min的再循环流速。所产生的Ce(IV)氧化剂用作苯酚矿化的介质。发现在相同条件下,铈介导的电化学氧化的矿化效率比基于CO2放出的直接电化学氧化更快且更高。

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