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Vermiculite as heterogeneous catalyst in electrochemical Fenton- based processes: Application to the oxidation of Ponceau SS dye

机译:electrochemical石作为基于Fenton电化学方法的非均相催化剂:在Ponceau SS染料的氧化中的应用

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Modified sodium vermiculite, an iron-rich clay mineral, has been used in novel heterogeneous electro-chemical Fenton-based treatments, so-called electro-Fenton (EF)-vermiculite, UVA photoelectro-Fenton (PEF)-vermiculite and solar photoelectro-Fenton (SPEF)-vermiculite. Tests were made with 130 mL of 0.150 mM Ponceau SS diazo dye in 0.050 M Na2SO4 at pH 3.0, in the presence of 1.0 g L-1 catalyst microparticles. The electrolyses were performed in an undivided cell with a boron-doped diamond anode (BDD) and air-diffusion cathode for H2O2 production, at 33.3 mA cm(-2). Decolorization and mineralization were upgraded in the sequence: EF-vermiculite < PEF-vermiculite < SPEF-vermiculite. The removal of organics occurred by the combined action of center dot OH oxidant formed at the BDD surface and homogeneous and heterogeneous Fenton's reactions, along with the photolysis caused by UVA light or sunlight. The homogeneous Fenton's reaction resulted from iron ions leaching, but the heterogeneous mechanism was prevalent. Comparative treatments by anodic oxidation in the presence of H2O2 and homogeneous EF were less effective than EF-vermiculite. The diazo dye absorbance decays agreed with a pseudo-firstorder kinetics. SPEF-vermiculite was the most powerful process, yielding total decolorization and 84.1% mineralization after 300 and 360 min, respectively. The influence of catalyst concentration, current density and diazo dye content on PEF-vermiculite performance was examined. Oxalic, oxamic, malic, tartronic and acetic acids were detected as final short-linear carboxylic acids. (C) 2019 Elsevier Ltd. All rights reserved.
机译:改性mic石,一种富含铁的粘土矿物,已用于新型基于Fenton的异质电化学处理,即所谓的Fenton(EF)-石,UVA光电Fenton(PEF)-石和太阳能光电Fenton(SPEF)mic石。在1.0 g L-1催化剂微粒存在下,在pH值为3.0的0.050 M Na2SO4中,用130 mL的0.150 mM Ponceau SS重氮染料进行测试。电解在不分隔的电解池中进行,该电解池带有硼掺杂的金刚石阳极(BDD)和空气扩散阴极,用于产生H2O2,电流为33.3 mA cm(-2)。脱色和矿化的顺序依次为:EF-ver石

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