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基于脉冲电沉积策略的 PbO 阳极实现对扑热息痛的节能电化学处理:动力学、能耗和机理。

Energy-efficient electrochemical treatment of paracetamol using a PbO anode based on pulse electrodeposition strategy: Kinetics, energy consumption and mechanism.

机构信息

School of Environmental Science and Engineering, Zhejiang Gongshang University, Hangzhou, 310018, China.

School of Environmental Science and Engineering, Zhejiang Gongshang University, Hangzhou, 310018, China.

出版信息

Environ Res. 2023 Jan 1;216(Pt 3):114673. doi: 10.1016/j.envres.2022.114673. Epub 2022 Nov 2.

Abstract

The purpose of this research is to study the pulse electrochemical oxidation of paracetamol (PCT) using a novel PbO anode based on pulse electrodeposition strategy (PbO-PE). The pulse electrodeposition strategy used to prepare a PbO anode resulted in rougher surface, higher directional specificity of β(101) and more redox couples of Pb/Pb. Additionally, the oxygen evolution potential (OEP) and charge transfer resistance were also improved. When compared to direct current electrochemical oxidation process, pulse electrolysis in had a slightly higher PCT removal efficiency and active species (·OH and active chlorine) production, while 72.04% of energy consumption was saved. The effects of operating parameters on PCT degradation efficiency and specific energy consumption were studied. The findings suggested that the pulse electrochemical oxidation of PCT followed a pseudo-first-order kinetic model, with PCT removal reaching 98.63% after 60 min of electrolysis under optimal conditions. Possible mechanisms describing reaction pathways for PCT were also proposed. Finally, combinating with the economic feasibility and safety evaluation, we could conclude that pulse electrolysis with a PbO-PE electrode was a promising option for improving the practicability of electrochemical treatment for refractory organic wastewater.

摘要

本研究旨在利用基于脉冲电沉积策略(PbO-PE)的新型 PbO 阳极研究扑热息痛(PCT)的脉冲电化学氧化。用于制备 PbO 阳极的脉冲电沉积策略导致表面更粗糙、更高的β(101)方向性和更多的 Pb/Pb 氧化还原对。此外,析氧电位(OEP)和电荷转移电阻也得到了改善。与直流电化学氧化过程相比,脉冲电解具有略高的 PCT 去除效率和活性物质(·OH 和活性氯)生成,同时节省了 72.04%的能耗。研究了操作参数对 PCT 降解效率和比能耗的影响。结果表明,PCT 的脉冲电化学氧化遵循准一级动力学模型,在最佳条件下电解 60 分钟后,PCT 的去除率达到 98.63%。还提出了描述 PCT 反应途径的可能机制。最后,结合经济可行性和安全评估,我们可以得出结论,使用 PbO-PE 电极进行脉冲电解是提高电化学处理难处理有机废水实用性的一种有前途的选择。

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