Degradation of tetracycline by FeNi-LDH/Ti 3 C 2 photo-Fenton system in water: From performance to mechanism

Recently, photo-Fenton technology has been widely used to degrade tetracycline (TC) because of its great efficiency and wide application range. Herein, Fe-Ni layered double hydroxides (FeNi-LDH)/Ti C photo-Fenton system was constructed in this study. The results showed the introduction of Ti C solve...

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Veröffentlicht in:Chemosphere (Oxford) 2022-05, Vol.294, p.133736
Hauptverfasser: Yang, Lu, Li, Ling, Liu, Zhongtao, Lai, Cui, Yang, Xiaofeng, Shi, Xiaoxun, Liu, Shiyu, Zhang, Mingming, Fu, Yukui, Zhou, Xuerong, Yan, Huchuan, Xu, Fuhang, Ma, Dengsheng, Tang, Chensi
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Sprache:eng
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Zusammenfassung:Recently, photo-Fenton technology has been widely used to degrade tetracycline (TC) because of its great efficiency and wide application range. Herein, Fe-Ni layered double hydroxides (FeNi-LDH)/Ti C photo-Fenton system was constructed in this study. The results showed the introduction of Ti C solved some problems of FeNi-LDH such as poor conductivity, easy aggregation, and high recombination rate of photoelectron. Benefiting from these advantages, FeNi-LDH/Ti C exhibited excellent TC removal rate of 94.7% while pure FeNi-LDH was only 54%. Besides, FeNi-LDH/Ti C possessed strong pH tolerance (2-11) and the removal efficiency was still up to 82% after the four-cycle experiment. Furthermore, the quenching experiments revealed the reaction mechanism, where ∙OH and ·O were the primary active radicals for degrading TC. Last, the results of the simulated wastewater treatment and the inorganic ion interference tests showed that FeNi-LDH/Ti C possessed practical application potential. In brief, this study shows that FeNi-LDH/Ti C can offer a certain theoretical basis for the actual development of hydrotalcite in heterogeneous photo-Fenton systems.
ISSN:1879-1298
DOI:10.1016/j.chemosphere.2022.133736