Size Control of Carbon Xerogel Spheres as Key Factor Governing the H2O2 Selectivity in Metal-Free Bifunctional Electro-Fenton Catalysts for Tetracycline Degradation

被引:0
|
作者
Fajardo-Puerto, Edgar [1 ]
Lopez-Garcia, Nerea [1 ]
Elmouwahidi, Abdelhakim [1 ]
Bailon-Garcia, Esther [1 ]
Carrasco-Marin, Francisco [1 ]
Ramirez-Valencia, Lilian D. [1 ]
Perez-Cadenas, Agustin F. [1 ]
机构
[1] Univ Granada UEQ UGR, Dept Quim Inorgan, Unidad Excelencia Quim Aplicada Biomed & Medioambi, Mat Polifunc Basados Carbono, Granada 18071, Spain
关键词
wastewater; ORR; electro-Fenton; carbon gels; xerogels; HYDROGEN; ELECTROGENERATION; REDUCTION; GRAPHENE;
D O I
10.3390/gels10050306
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Carbon xerogel spheres co-doped with nitrogen and eco-graphene were synthesized using a typical solvothermal method. The results indicate that the incorporation of eco-graphene enhances the electrochemical properties, such as the current density (J(K)) and the selectivity for the four transferred electrons (n). Additionally, nitrogen doping has a significant effect on the degradation efficiency, varying with the size of the carbon xerogel spheres, which could be attributed to the type of nitrogenous group doped in the carbon material. The degradation efficiency improved in the nanometric spheres (48.3% to 61.6%) but decreased in the micrometric-scale spheres (58.6% to 53.4%). This effect was attributed to the N-functional groups present in each sample, with N-CNS-5 exhibiting a higher percentage of graphitic nitrogen (35.7%) compared to N-CMS-5 (15.3%). These findings highlight the critical role of sphere size in determining the type of N-functional groups present in the sample. leading to enhanced degradation of pollutants as a result of the electro-Fenton process.
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页数:21
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