高碘酸盐
化学
电子转移
催化作用
电子顺磁共振
降级(电信)
碳纤维
光化学
电子受体
活性炭
无机化学
有机化学
材料科学
吸附
复合材料
物理
复合数
电信
核磁共振
计算机科学
作者
Kaiyuan Luo,Yang Shi,Rongfu Huang,Xipeng Wei,Zelin Wu,Peng Zhou,Heng Zhang,Yin Wang,Zhaokun Xiong,Bo Lai
标识
DOI:10.1016/j.jhazmat.2023.131790
摘要
Periodate (PI) has recently been studied as an excellent oxidant in advanced oxidation processes, and its reported mechanism is mainly the formation of reactive oxygen species (ROS). This work presents an efficient approach using N-doped iron-based porous carbon (Fe@N-C) to activate periodate for the degradation of sulfisoxazole (SIZ). Characterization results indicated the catalyst has high catalytic activity, stable structure, and high electron transfer activity. In terms of degradation mechanism, it is pointed out that the non-radical pathway is the dominant mechanism. In order to prove this mechanism, we have carried out scavenging experiments, electron paramagnetic resonance (EPR) analysis, salt bridge experiments and electrochemical experiments, which demonstrate the occurrence of mediated electron transfer mechanism. Fe@N-C could mediate the electron transfer from organic contaminant molecules to PI, thus improving the efficiency of PI utilization, rather than simply inducing the activation of PI through Fe@N-C. The overall results of this study provided a new understanding into the application of Fe@N-C activated PI in wastewater treatment.
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