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A novel dual gas diffusion electrodes system for efficient hydrogen peroxide generation used in electro-Fenton

机译:一种新型的双气体扩散电极系统,用于在电子芬顿中高效生成过氧化氢

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摘要

Highly efficient H2O2 generation is greatly demanded in electro-Fenton process for organic pollutants degradation. In the present work, a novel H2O2 generation reactor using dual gas diffusion electrodes (GDEs) as cathodes was put forward, which was confirmed to be more cost-effective in H2O2 generation rate, O-2 utilization efficiency and energy consumption in comparison with other carbonaceous materials and reactors. The catalyst layer in GDE was characterized and optimized, and the accumulation of H2O2 reached to 566 mg/L in 0.05 M Na2SO4 at a current density of 7.1 mA/cm(2) and air flow rate of 0.5 L/min after 180 min. The operational parameters such as current density, pH and air flow rate were optimized, and after 10 times used the production of H2O2 was confirmed to be stable. This novel reactor was tested to degrade tartrazine, and even for a high initial concentration of 1000 mg/L, it could be completely decolorized within 60 min while the TOC removal efficiency could reach 66.1% within 120 min with a mineralization current efficiency of 65.1%, indicating its potential for the treatment of high-concentrated wastewaters. (C) 2014 Elsevier B.V. All rights reserved.
机译:电子芬顿工艺强烈要求高效生成H2O2,以降解有机污染物。在目前的工作中,提出了一种新型的以双气体扩散电极(GDEs)为阴极的H2O2生成反应器,与其他方法相比,H2O2生成率,O-2利用率和能耗方面的成本效益更高。碳质材料和反应堆。对GDE中的催化剂层进行了表征和优化,并且在180分钟后的电流密度为7.1 mA / cm(2)和空气流速为0.5 L / min的情况下,在0.05 M Na2SO4中H2O2的累积达到566 mg / L。优化了电流密度,pH和空气流速等运行参数,使用10次后,H2O2的生成被证实是稳定的。经过测试,该新型反应器可降解酒石黄,即使初始浓度为1000 mg / L,也可在60分钟内完全脱色,而120分钟内TOC去除率可达到66.1%,矿化电流效率为65.1%。 ,表明其在处理高浓度废水方面的潜力。 (C)2014 Elsevier B.V.保留所有权利。

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