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首页> 外文期刊>Journal of the Brazilian Chemical Society >Degradation of dipyrone by the electro-Fenton process in an electrochemical flow reactor with a modified gas diffusion electrode
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Degradation of dipyrone by the electro-Fenton process in an electrochemical flow reactor with a modified gas diffusion electrode

机译:在具有改进的气体扩散电极的电化学流反应器中,通过电子芬顿法降解双嘧达隆

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The increasing occurrence of antibiotics and their metabolites in surface and ground waters is causing a significant impact on the environment and needing of developing novel treatments for the complete removal of such contaminants. This paper presents the study of the electrogeneration of hydrogen peroxide (H2O2) in acidic medium and the degradation of the analgesic dipyrone in an electrochemical flow reactor using a gas diffusion electrode (GDE) modified with 5.0% cobalt (II) phthalocyanine (CoPc) and pressurized with O2. The highest yield of H2O2 (133 mg L-1) was achieved after 90 min of electrolysis at an applied potential of -2.1 V (vs. Pt//Ag/AgCl/KCl s) and the best results for degradation of dipyrone were obtained under electro-Fenton conditions, where the total organic carbon (TOC) was reduced 62.8% after 90 min of reaction and 49.1 kW h of energy was consumed per kg of dipyrone degraded.
机译:地表水和地下水中抗生素及其代谢物的日益增加正在对环境造成重大影响,因此需要开发新颖的方法来完全去除此类污染物。本文介绍了在使用5.0%钴(II)酞菁钴(CoPc)和5%钴修饰的气体扩散电极(GDE)的电化学流动反应器中在酸性介质中过氧化氢(H2O2)的发电以及止痛双嘧啶的降解的研究。用氧气加压。电解90分钟后,在-2.1 V(vs. Pt // Ag / AgCl / KCl s)的施加电势下,H2O2的最高产量(133 mg L-1)达到了,最佳的双嘧达隆降解结果在电子芬顿条件下,反应90分钟后,总有机碳(TOC)减少了62.8%,每千克降解的双嘧啶消耗了49.1 kWh的能量。

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