Catalytic degradation mechanism of sulfamethazine via photosynergy of monoclinic BiVO4and microalgae under visible-light irradiation

2020 ◽  
Vol 185 ◽  
pp. 116220
Author(s):  
Shan Chen ◽  
Mingzhe Yuan ◽  
Wenbo Feng ◽  
Wan Liu ◽  
Wei Zhang ◽  
...  
RSC Advances ◽  
2014 ◽  
Vol 4 (55) ◽  
pp. 28978-28986 ◽  
Author(s):  
Huigang Wang ◽  
Dongmei Zhou ◽  
Shaosong Shen ◽  
Junmin Wan ◽  
Xuming Zheng ◽  
...  

Copper(ii)tetra(4-carboxyphenyl) porphyrin were chemically sensitized on TiO2, its electronic relaxation dynamics and the visible-light induced catalytic mechanism are discussed.


RSC Advances ◽  
2017 ◽  
Vol 7 (39) ◽  
pp. 24097-24104 ◽  
Author(s):  
Jie Meng ◽  
Jingyuan Pei ◽  
Zefang He ◽  
Shiyan Wu ◽  
Qingyun Lin ◽  
...  

Possible synthesis and degradation mechanism for photocatalysts under visible light irradiation.


2019 ◽  
Vol 9 (17) ◽  
pp. 4614-4628 ◽  
Author(s):  
Gongduan Fan ◽  
Jiajun Zhan ◽  
Jing Luo ◽  
Jin Zhang ◽  
Zhong Chen ◽  
...  

A H2O2-modified titanate nanomaterial was synthesized to improve catalytic activity. The influencing factors, intermediate product transformation pathways and degradation mechanism of the photodegradation process of NPX by the HTNM were studied.


RSC Advances ◽  
2015 ◽  
Vol 5 (43) ◽  
pp. 34456-34465 ◽  
Author(s):  
Xu Liu ◽  
Weibo Li ◽  
Nan Chen ◽  
Xinxin Xing ◽  
Chengjun Dong ◽  
...  

Ag–ZnO heterostructured nanoparticles by a one-step solvothermal route exhibit outstanding photocatalytic efficiency for Congo red in aqueous solution under visible light irradiation.


Materials ◽  
2019 ◽  
Vol 12 (23) ◽  
pp. 3952 ◽  
Author(s):  
Xin Zhong ◽  
Zheng-Shuo Zou ◽  
Hu-Lin Wang ◽  
Wei Huang ◽  
Bin-Xue Zhou

In this study, magnetic visible light driven photocatalysts (bismuth ferrite, Bi2Fe4O9, BFO and Co-doped bismuth ferrite, Co-BFO) were successfully prepared by the facile hydrothermal method. The catalyst was used in the application of heterogeneous persulfate (PS) system under visible LED light irradiation for the degradation of levofloxacin (LFX), proving to be an excellent photocatalyst when evaluated by various characterization methods. The effect of Co-doping in the BFO structure was investigated that the decrease of band gap width and the generated photoelectrons and holes would effectively reduce the recombination of photogenerated electron-hole pairs, leading to the enhancement photocatalytic activity. The results demonstrated that Co-BFO catalyst had a high photodegradation efficiency over a wide pH range of 3.0–9.0 and the Co-BFO-2 composite displayed the optimal catalytic performance. It was found that the degradation rate of LFX by Co-BFO-2 catalyst was 3.52 times higher than that of pure BFO catalyst under visible light condition. The free radical trapping experiments and EPR tests demonstrated that superoxide, photogenerated holes and sulfate radicals were the main active species in the photocatalytic degradation of LFX. And a possible photocatalytic degradation mechanism of LFX was proposed in the Vis/Co-BFO/PS process. These findings provided new insight of the mechanism of heterogeneous activation of persulfate by Co-BFO under visible light irradiation.


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