生物炭
催化作用
化学
苯酚
浸出(土壤学)
污染物
腐植酸
氧化还原
环境化学
活性炭
猝灭(荧光)
核化学
无机化学
有机化学
吸附
土壤水分
土壤科学
物理
荧光
量子力学
环境科学
肥料
热解
作者
Fanyue Meng,Yanming Wang,Qi Cao
出处
期刊:Chemosphere
[Elsevier]
日期:2023-07-06
卷期号:337: 139441-139441
被引量:23
标识
DOI:10.1016/j.chemosphere.2023.139441
摘要
In present work, a novel catalyst of cobalt supported on silica-composited biochar (Co@ACFA-BC) derived from fly ash and agricultural waste was synthesized. A series of characterizations confirmed that Co3O4 and Al/Si-O compounds were successfully embedded on the surface of biochar, which triggered superior catalytic activity for PMS activation towards phenol degradation. Particularly, the Co@ACFA-BC/PMS system could completely degrade phenol in the wide pH range, and was almost unaffected by environmental factors including humic acid (HA), H2PO4-, HCO3-, Cl-, and NO3-. Further quenching experiment and EPR analysis proved that both radical (SO4·-, ·OH, O2·-) and non-radical (1O2) pathways were involved in the catalytic reaction system, and the excellent PMS activation was attributed to the electron pair cycling of Co2+/Co3+ and the active sites provided by Si-O-O and Si/Al-O bonds on the catalyst surface. Meanwhile, the carbon shell effectively inhibited the leaching of metal ions, enabling the Co@ACFA-BC catalyst to maintain excellent catalytic activity after four cycles. Finally, biological acute toxicity assay demonstrated that the toxicity of phenol could be significantly reduced after being treated by Co@ACFA-BC/PMS. Overall, this work provides a promising strategy for solid waste valorization and a feasible methodology for green and efficient treatment of refractory organic pollutants in water environment.
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