Chemical Engineering Department, School of Industrial Engineering, University of Castilla-La Mancha, 02071, Albacete, Spain.
University of Genoa, Department of Civil, Chemical and Environmental Engineering, P.le J.F. Kennedy 1, Genova, 16129, Italy.
Chemosphere. 2018 May;199:445-452. doi: 10.1016/j.chemosphere.2018.02.001. Epub 2018 Feb 3.
This work focuses on the treatment of synthetic wastewater polluted with dye Procion Red MX-5B by different Electrochemical Advanced Oxidation Processes (EAOP) based on diamond anodes. The influence of the current density and the supporting electrolyte has been studied on dye removal and total mineralization of the organic matter. Results show that electrolysis with diamond electrodes is a suitable technology for an efficient degradation of dye. Nonetheless, the process efficiency increases when using chloride as supporting electrolyte because of the electrochemical generation of hypochlorite in wastewater which significantly contribute to dye removal. On the contrary, the total mineralization of the organic matter is more efficient in sulfate media. In this case, large amounts of peroxodisulfate are electrogenerated, favoring the complete removal of total organic carbon (TOC). On the other hand, lower current densities (10 mA cm) lead to a more efficient removal of both dye and TOC due to the mass transfer limitations of the technology. Finally, the coupling of UV light irradiation or ultrasound to electrolysis significantly improves the process performance, being photoelectrolysis the most efficient technology for the treatment of wastewater polluted with Procion Red MX-5B. This fact is due to the potential production of free chlorine or sulfate radicals that takes place by the activation of the electrogenerated oxidants. These species are more reactive than oxidants and, therefore, they quickly attack the organic matter present in wastewater.
本工作重点研究了基于金刚石阳极的不同电化学高级氧化工艺(EAOP)处理含染料 Procion Red MX-5B 的合成废水。研究了电流密度和支持电解质对染料去除和有机物总矿化的影响。结果表明,用电解法处理金刚石电极是一种有效降解染料的合适技术。然而,当使用氯化物作为支持电解质时,该过程的效率会提高,因为电化学产生的次氯酸盐会显著促进染料的去除。相反,在硫酸盐介质中,有机物的总矿化效率更高。在这种情况下,大量的过二硫酸盐被电生成,有利于完全去除总有机碳(TOC)。另一方面,较低的电流密度(10 mA cm)由于技术的传质限制,导致染料和 TOC 的去除效率更高。最后,将紫外光辐射或超声波与电解耦合可显著提高处理性能,光电解是处理含 Procion Red MX-5B 废水的最有效技术。这一事实归因于通过电生成氧化剂的激活而产生的自由氯或硫酸根自由基的潜在产生。这些物质比氧化剂更具反应性,因此它们会迅速攻击废水中存在的有机物。