Zeolite imidazole framework-8-derived nitrogen-doped nanocarbon boosted Fenton-like oxidation: Another sustainable path for Fe(III)/Fe(II) circulation

Dongqi Tian , Shuai Yang , Yang Liu , Hongyu Zhou , Peng Zhou , Zhaokun Xiong , Gang Yao , Bo Lai
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Abstract

Zeolite imidazole framework-8 (ZIF-8) is a promising template to obtain porous nanocarbons. In this study, microporous nitrogen-doped nanocarbons from the carbonization of ZIF-8 (ZCN) was prepared as an efficient metal-free catalyst to improve several micropollutants degradation in Fe(III)/H2O2 process. The sulfamethoxazole (SMX) ratio was increased from 20% to 100% with the addition of ZCN (50 ​mg/L) in Fe(III)/H2O2 within 20 ​min, and the working pH was endowed. The direct reduction for Fe(III) resulting from carbonyl on ZCN's surface was revealed. Hydroxyl radical (•OH) was determined to be the main reactive species, and the evolution of different Fe species during the reaction was discussed by monitoring the mass balance of Fe species. We found that part of the iron was bound to the surface of ZCN during the reaction. Additionally, the dissociative Fe was captured by ZCN to form Fe-Nx bonds. Surface-bound Fe with a lower energy barrier was more likely to react with H2O2 to generate Fe(II). Our work revealed that in addition to the direct reduction by ZCN, another catalytic reduction pathway for the sustainable conversion of Fe(III) to Fe(II) in the ZCN/Fe(III)/H2O2 process was operative.

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沸石咪唑框架-8衍生的氮掺杂纳米碳促进类芬顿氧化:Fe(III)/Fe(II)循环的另一条可持续途径
沸石咪唑骨架-8(ZIF-8)是一种很有前途的制备多孔纳米碳的模板剂。在本研究中,从ZIF-8(ZCN)的碳化中制备了微孔氮掺杂纳米碳,作为一种有效的无金属催化剂,以改善Fe(III)/H2O2过程中几种微污染物的降解。随着ZCN(50)的加入,磺胺甲恶唑(SMX)的比例从20%提高到100%​mg/L)在Fe(III)/H2O2中20​min,并赋予工作pH。揭示了羰基在ZCN表面对Fe(III)的直接还原。羟基自由基(•OH)被确定为主要的反应物种,并通过监测Fe物种的质量平衡来讨论不同Fe物种在反应过程中的演变。我们发现,在反应过程中,部分铁与ZCN表面结合。此外,离解的Fe被ZCN捕获以形成Fe-Nx键。具有较低能垒的表面结合的Fe更有可能与H2O2反应生成Fe(II)。我们的工作表明,除了ZCN的直接还原外,在ZCN/Fe(III)/H2O2工艺中,另一种将Fe(Ⅲ)可持续转化为Fe(Ⅱ)的催化还原途径是可行的。
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