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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Accelerated photocatalytic degradation of organic pollutant over metal-organic framework MIL-53(Fe) under visible LED light mediated by persulfate
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Accelerated photocatalytic degradation of organic pollutant over metal-organic framework MIL-53(Fe) under visible LED light mediated by persulfate

机译:在过硫酸盐介导的可见LED光下的金属有机框架上的有机污染物的有机污染物的光催化降解

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Photocatalysis based on metal-organic frameworks (MOFs) is being actively investigated as a potential technology in visible light harvesting and utilizing processes. Herein we report that MIL-53(Fe), an earth abundant Fe-containing MOF material, shows photocatalytic activity for the degradation of Acid Orange 7 (AO7) from aqueous solution under visible LED light irradiation, yet the photocatalytic performance of bare MIL-53(Fe) was not satisfactory due to the fast recombination of photoinduced electron-hole pairs. This can be effectively overcome by adding the external electron acceptor (e.g., persulfate, PS) to the catalytic process. The accelerated photocatalytic degradation of AO7 is demonstrated by the result that the degradation efficiency of AO7 in the MIL-53(Fe)/PS/Vis process reached almost 100% within 90 min as compared to only 24% under the identical experimental conditions for the MIL-53(Fe)/Vis process. To investigate the mechanism of the MIL-53(Fe)/PS/Vis process, photoluminescence (PL) spectra, electrochemical measurements and electron paramagnetic resonance (EPR) analysis were performed. It was concluded that the efficient separation of photogenerated electrons and holes by the introduced PS and the subsequent formation of reactive radicals resulting from the activation of PS by photogenerated electrons accounted for the accelerated photocatalytic degradation of AO7 in the MIL-53(Fe)/PS/Vis process. Furthermore, the applicability of MIL-53(Fe) used in the persulfate-mediated photocatalytic process was systematically investigated in terms of the identification of reactive radicals, the reusability and stability of the photocatalyst, as well as the effect of operating parameters. The findings of this work highlighted the great potential of MOFs as photocatalysts and elucidated a new opportunity for persulfate remediation of contaminated water. (C) 2016 Elsevier B.V. All rights reserved.
机译:基于金属 - 有机框架(MOF)的光催化在可见光收集和利用过程中作为潜在技术被主动研究。在此,我们报告了MIL-53(Fe),一种地球含有丰富的Fe的MOF材料,显示出光催化活性,用于从可见LED光照射下的水溶液中从水溶液中降解酸橙7(AO7),但裸米尔的光催化性能由于光诱导的电子孔对的快速重组,53(Fe)并不令人满意。通过将外部电子受体(例如,过硫酸盐,PS)添加到催化过程,可以有效地克服这一点。通过AO7的加速光催化降解证明了MIL-53(Fe)/ ps / Vis / Vis法在90分钟内达到的达到近100%,而在相同的实验条件下仅达到近100%以上达到近100%。 MIL-53(FE)/ VIS过程。为了研究MIL-53(Fe)/ PS / VI / VIN方法,进行光致发光(PL)光谱,电化学测量和电子顺笔谐振(EPR)分析。得出结论:通过光生电子通过光发化的电子在MIL-53(Fe)/ PS中的AO7的加速光催化降解PS中,通过引入的PS和随后形成由引入的PS和随后形成由PS的活化的活性自由基形成的反应性自由基的有效分离。 /可见过程。此外,在过硫酸盐介导的光催化过程中使用的MIL-53(Fe)的适用性在系统地研究了活性自由基,光催化剂的可重用性和稳定性,以及操作参数的影响。这项工作的调查结果强调了MOFS作为光催化剂的巨大潜力,并阐明了过硫酸盐治疗污染水的新机会。 (c)2016年Elsevier B.v.保留所有权利。

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