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Study of Electrochemical Degradation of Bromophenol Blue at Boron-doped Diamond Electrode by Using Factorial Design Analysis

机译:使用阶乘设计分析研究硼掺杂金刚石电极溴苯酚蓝的电化学降解

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As an ideal anode material, Boron-doped diamond (BDD) has been widely applied in electrochemical oxidation of various organic pollutants, for its unique physical and chemical properties. In this paper, the authors studied the degradation of bromophenol blue through the electrochemical anodic oxidation by using the boron-doped BDD as the anode. The effect of statistically important operating parameters on treatment performance, such as treatment time, flow rate, applied current and concentration of supporting electrolyte, was evaluated by employing a factorial design analysis in terms of color removal and COD removal amount. As a result, the BDD technology was approved to be highly effective in treating bromophenol blue. Moreover, the results revealed the applicability and potential of factorial design analysis in operating parameters optimization and practical engineering application of BDD technology.
机译:作为理想的阳极材料,硼掺杂的金刚石(BDD)已广泛应用于各种有机污染物的电化学氧化,用于其独特的物理和化学性质。在本文中,作者通过使用硼掺杂的BDD作为阳极,通过电化学阳极氧化研究了溴苯酚蓝的降解。通过在颜色去除和COD去除量方面采用因子设计分析,通过采用因子设计分析来评估统计学上重要的操作参数对治疗性能的影响,例如治疗时间,流量,施加的电解质的浓度,如治疗时间,流速,施加电解质的浓度。结果,BDD技术被批准在治疗溴苯酚蓝中非常有效。此外,结果显示了BDD技术操作参数优化和实用工程应用中的阶乘设计分析的适用性和潜力。

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