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Synergies between electrochemical oxidation and activated carbon adsorption in three-dimensional boron-doped diamond anode system

机译:三维硼掺杂金刚石阳极体系中电化学氧化与活性炭吸附的协同作用

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摘要

In order to enhance the performance of boron-doped diamond (BDD) anode system, activated carbon is added into BDD anode system to construct a three-dimensional electrode system. The degradation rates of p-nitrophenol and COD were significantly improved by 2-7 times compared to two-dimensional BDD anode system. More importantly, the synergy between electrochemical oxidation and activated carbon adsorption was observed. Investigations revealed that the synergy was not only resulted from direct electrochemical oxidation at activated carbon, but also from electro-catalysis of activated carbon to indirect electrochemical oxidation mediated by hydroxyl radicals. Although oxygen was reduced to hydrogen peroxide at the activated carbon surface, but the oxidation of hydrogen peroxide was not the main reason for the improvement of three-dimensional electrode system due to its relative weak oxidation capacity. Instead, the decomposition of hydrogen peroxide to hydroxyl radicals at catalysis of activated carbon played an important role on the enhancement of three-dimensional electrode system.
机译:为了增强掺硼金刚石(BDD)阳极系统的性能,将活性炭添加到BDD阳极系统中以构建三维电极系统。与二维BDD阳极系统相比,对硝基苯酚和COD的降解率显着提高了2-7倍。更重要的是,观察到电化学氧化与活性炭吸附之间的协同作用。研究表明,协同作用不仅是由于活性炭直接进行电化学氧化,而且还因为活性炭的电催化转化为羟基自由基介导的间接电化学氧化。尽管氧气在活性炭表面被还原为过氧化氢,但是过氧化氢的氧化并不是其改善的三维氧化电极系统的主要原因,因为其相对较弱的氧化能力。相反,在活性炭的催化下,过氧化氢分解为羟基自由基对增强三维电极系统起着重要作用。

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