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Advanced electrochemical degradation of basic yellow 28 textile dye using IrO 2 /Ti meshed electrode in different supporting electrolytes

机译:基本黄色28纺织染料的先进电化学降解在不同支撑电解质中使用IRO 2 / Ti啮合电极

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摘要

One of the most concerning recent environmental threats is textile wastewater effluents. Although versatile methods exist for the treatment of textile effluents, electrochemical degradation is considered an efficient and promising approach. In the present study, the effect of an IrO2/Ti meshed electrode in the presence of Na2SO4 or NaCl as a supporting electrolyte on the decolorization and mineralization of Basic Yellow 28 (BY28) textile dye is demonstrated. The results showed that the optimum conditions were a current density of 0.03A cm-2, initial dye concentration of 2 x 10-5 M, pH of 2.5 or 6.5 for Na2SO4 or NaCl, and a supporting electrolyte concentration of 0.08 or 0.03 M for Na2SO4 or NaCl, respectively. The degradation efficiency was followed using Ultraviolet-visible (UV-Vis) spectrophotometry, cyclic voltammetry, and chemical oxygen demand (COD). Cyclic voltammetry was carried out in the potential window from +1.0 V to -1.0 V. After 15 min, the color removal of the BY28 dye was 92.9% and 93.3% and the COD removal was 26.8% and 46.2% in the presence of Na2SO4 and NaCl, respectively. Besides, the corresponding current efficiency and energy consumption were estimated to validate the proposed electrochemical method. The results revealed that NaCl was more powerful than Na2SO4 as a supporting electrolyte.
机译:最近最令人担忧的环境威胁之一是纺织废水。虽然有多种方法可用于处理纺织废水,但电化学降解被认为是一种有效且有前途的方法。在本研究中,证明了在Na2SO4或NaCl作为支撑电解质的情况下,IrO2/Ti网状电极对碱性黄28(BY28)纺织染料的脱色和矿化的影响。结果表明,最佳条件为电流密度为0.03A cm-2,染料初始浓度为2 x 10-5 M,Na2SO4或NaCl的pH值为2.5或6.5,Na2SO4或NaCl的支持电解质浓度分别为0.08或0.03 M。采用紫外-可见(UV-Vis)分光光度法、循环伏安法和化学需氧量(COD)跟踪降解效率。循环伏安法在+1.0V至-1.0V的电位窗口内进行。15min后,在Na2SO4和NaCl存在下,BY28染料的颜色去除率分别为92.9%和93.3%,COD去除率分别为26.8%和46.2%。此外,还估算了相应的电流效率和能耗,以验证所提出的电化学方法。结果表明,NaCl比Na2SO4更能作为支撑电解质。

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