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首页> 外文期刊>Chemosphere >Peroxymonosulfate improved photocatalytic degradation of atrazine by activated carbon/graphitic carbon nitride composite under visible light irradiation
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Peroxymonosulfate improved photocatalytic degradation of atrazine by activated carbon/graphitic carbon nitride composite under visible light irradiation

机译:过氧一硫酸盐改善了活性炭/石墨氮化碳复合材料在可见光照射下对阿特拉津的光催化降解

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摘要

The photocatalytic degradation of atrazine by activated carbon/graphitic carbon nitride composites with peroxymonosulfate (PMS) was investigated under visible light irradiation. The photocatalysts were prepared at different activated carbon (AC) loaded percentages and characterized by XRD, FT-IR, BET surface area, SEM, UV-Vis absorbance, photocurrent response and EIS. Several parameters which might influence the degradation efficiency were studied including PMS concentration, solution pH, catalyst dosage, initial atrazine concentration as well as water matrix effect. The results indicated that incorporation of AC contributes effectively in suppressing the recombination of electron-holes pairs and enhancing the photocatalytic performance of graphitic carbon nitride. More significantly, the degradation efficiency of atrazine showed remarkable improvement with PMS addition under visible light irradiation. The reaction rate constant of the 10% AC/g-C3N4/Vis/PMS system (0.0376 min(-1)) was approximately 2.9 times higher than that of g-C3N4/Vis/PMS system (0.0128 min(-1)). Results from quenching tests revealed that both sulfate and hydroxyl radicals were involved in the degradation of atrazine, while the latter is the main contributor. This paper constitutes an insight for the metal-free catalyst activation of PMS by photocatalysis for environmental remediation. (C) 2018 Published by Elsevier Ltd.
机译:在可见光照射下,研究了活性炭/石墨碳氮化物与过氧单硫酸盐(PMS)的光催化降解at去津。以不同的活性炭(AC)负载百分比制备光催化剂,并通过XRD,FT-IR,BET表面积,SEM,UV-Vis吸光度,光电流响应和EIS进行表征。研究了可能影响降解效率的几个参数,包括PMS浓度,溶液pH值,催化剂用量,初始azine去津浓度以及水基质效应。结果表明,AC的掺入有效地抑制了电子-空穴对的再结合并增强了石墨氮化碳的光催化性能。更重要的是,在可见光照射下,加入PMS后,at去津的降解效率显着提高。 10%AC / g-C3N4 / Vis / PMS系统的反应速率常数(0.0376 min(-1))比g-C3N4 / Vis / PMS系统(0.0128 min(-1))高约2.9倍。淬灭试验的结果表明硫酸盐和羟基都参与了of去津的降解,而后者是主要的贡献者。本文构成了对光催化环境修复的无金属催化剂活化PMS的见解。 (C)2018由Elsevier Ltd.发布

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