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Feasibility Study of the Decolorization of Simulated Rhodamine B Dye Wastewater with a Three-dimensional Electrode Reactor

机译:三维电极反应器对模拟若丹明B染料废水进行脱色的可行性研究

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In this paper, the decolorization of simulated rhodamine B dye wastewater was investigated using a three dimensional electrode reactor with granular activated carbon(GAC) loaded with manganese oxide (MnOx/GAC) as the particle electrode. The decolorization ratio by two-dimensional electrode, traditional three-dimensional electrode and MnOx/GAC three-dimensional electrode method was compared respectively, and simultaneously, the effect of treatment time, voltage and pH on the color removal efficiency was studied. The experimental results showed that the decolorization ratio of MnOx/GAC three-dimensional electrode is much higher than that of two-dimensional electrode or traditional three-dimensional electrode. While the concentration of the simulated rhodamine B dye wastewater was 50 mg/L, the decolorization ratio by MnOx/GAC three dimensional electrode can reach 98.9% under the condition of the voltage 11V, the initial pH 5 and the treatment time 120min.
机译:本文以含锰氧化物(MnOx / GAC)的颗粒活性炭(GAC)为三维电极的三维电极反应器,对模拟的若丹明B染料废水的脱色进行了研究。分别比较了二维电极,传统三维电极和MnOx / GAC三维电极方法的脱色率,同时研究了处理时间,电压和pH值对脱色效率的影响。实验结果表明,MnOx / GAC三维电极的脱色率远高于二维电极或传统的三维电极。模拟的若丹明B染料废水浓度为50 mg / L时,在电压11V,初始pH 5,处理时间120min的条件下,MnOx / GAC三维电极对染料的脱色率可达到98.9%。

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