首页> 外文OA文献 >Redox Conversion of Chromium(VI) and Arsenic(III) with the Intermediates of Chromium(V) and Arsenic(IV) via AuPd/CNTs Electrocatalysis in Acid Aqueous Solution
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Redox Conversion of Chromium(VI) and Arsenic(III) with the Intermediates of Chromium(V) and Arsenic(IV) via AuPd/CNTs Electrocatalysis in Acid Aqueous Solution

机译:通过AuPd / CNTs在酸性水溶液中电催化铬(VI)和砷(IV)中间物氧化铬(VI)和砷(III)的氧化还原转化

摘要

Simultaneous reduction of Cr(VI) to Cr(III) and oxidation of As(III) to As(V) is a promising pretreatment process for the removal of chromium and arsenic from acid aqueous solution. In this work, the synergistic redox conversion of Cr(VI) and As(III) was efficiently achieved in a three-dimensional electrocatalytic reactor with synthesized AuPd/CNTs particles as electrocatalysts. The AuPd/CNTs facilitated the exposure of active Pd{111} facets and possessed an approximate two-electron-transfer pathway of oxygen reduction with the highly efficient formation of 11202 as end product, resulting in the electrocatalytic reduction of 97.2 +/- 2.4% of Cr(VI) and oxidation of 95.7 +/- 4% of As(III). The electrocatalytic reduction of Cr(VI) was significantly accelerated prior to the electrocatalytic oxidation of As(III), and the effectiveness of Cr(VI)/As(III) conversion was favored at increased currents from 20 to 150 mA, decreased initial pH from 7 to 1 and concentrations of Cr(VI) and As(III) ranging from SO to 1 mg/L. The crucial intermediates of Cr(V) and As(IV) and active free radicals HO center dot and O-2(center dot-) were found for the first time, whose roles in the control of Cr(VI)/As(III) redox conversion were proposed. Finally, the potential applicability of AuPd/CNTs was revealed by their stability in electrocatalytic conversion over 10 cycles.
机译:Cr(VI)还原为Cr(III)以及As(III)氧化为As(V)是从酸性水溶液中去除铬和砷的有前途的预处理方法。在这项工作中,在以合成的AuPd / CNTs颗粒为电催化剂的三维电催化反应器中有效地实现了Cr(VI)和As(III)的协同氧化还原转化。 AuPd / CNTs促进了活性Pd {111}面的暴露,并具有大约两个氧还原的电子转移途径,并以11202作为最终产物的高效形成,导致电催化还原率为97.2 +/- 2.4% Cr(VI)的氧化和As(III)的95.7 +/- 4%的氧化。 Cr(VI)的电催化还原在As(III)的电催化氧化之前得到显着加速,并且当电流从20增大到150 mA,初始pH值降低时,Cr(VI)/ As(III)转换的有效性受到重视。从7到1,Cr(VI)和As(III)的浓度从SO到1 mg / L。首次发现了Cr(V)和As(IV)的关键中间体以及活性自由基HO中心点和O-2(中心点),它们在控制Cr(VI)/ As(III)中的作用)提出了氧化还原转化。最后,AuPd / CNT在10个循环中的电催化转化稳定性表明了其潜在的适用性。

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