Effectiveness of the dispersion of iron nanoparticles within micropores and mesopores of activated carbon for Rhodamine B removal in wastewater by the heterogeneous Fenton process

被引:27
作者
Briton, Bi Gouesse Henri [1 ]
Duclaux, Laurent [2 ]
Richardson, Yohan [3 ]
Yao, Kouassi Benjamin [1 ]
Reinert, Laurence [2 ]
Soneda, Yasushi [4 ]
机构
[1] Inst Natl Polytech Felix Houphouet Boigny, Lab Proc Ind Synth Environm & Energies Nouvelles, BP 1093, Yamoussoukro, Cote Ivoire
[2] Univ Savoie Mt Blanc, LCME, F-73000 Chambery, France
[3] Inst Int Ingn Eau & Environm, LBEB, 01 BP 594, Ouagadougou 01, Burkina Faso
[4] Natl Inst Adv Ind Sci & Technol, Energy Technol Res Inst, 16-1 Onogawa, Tsukuba, Ibaraki 3058569, Japan
关键词
Heterogeneous catalyst; Fenton process; Rhodamine B; Discoloration; Degradation; Kinetics; ORANGE-II DEGRADATION; HYDROGEN-PEROXIDE; METHYLENE-BLUE; CATALYTIC DEGRADATION; POROUS CARBON; SURFACE-AREA; OXIDATION; ADSORPTION; OPTIMIZATION; ACID;
D O I
10.1007/s13201-019-1047-0
中图分类号
TV21 [水资源调查与水利规划];
学科分类号
081501 ;
摘要
Iron-based nanoparticles were formed in the pores of a micro- and mesoporous activated carbon made from banana spike by the impregnation of iron sulfate at various ratios and further pyrolysis, in order to prepare three catalysts AC@Fe/1, AC@Fe/2, AC@Fe/3 having iron mass contents of 1.6%, 2.2% and 3.3%, respectively. The pore size distributions, transmission electron microscope observations and X-ray photoelectron spectroscopy analyses have revealed that iron-based nanoparticles of 1-50 nm diameter, containing O and P, are located mainly in the supermicropores and mesopores of the activated carbon. Catalysts have been used to remove Rhodamine B in an aqueous solution by the heterogeneous Fenton process. AC@Fe/3 catalyst has allowed achieving 93% of solution discoloration compared to 87.4% for AC@Fe/2 and 78.5% for AC@Fe/1 after 180 min in batch reaction. The catalytic efficiency of AC@Fe/3 is attributed to the highest dispersion of the iron-based nanoparticles in the activated carbon porosity. The effects of hydrogen peroxide and initial dye concentration, pH, catalyst amount and temperature on the Rhodamine B removal kinetics catalyzed by AC@Fe/3 were studied. This catalyst showed remarkable performances of the Rhodamine B mineralization and possibility of recycling.
引用
收藏
页数:14
相关论文
共 73 条
[21]   Preparation and characterization of surface functionalized activated carbons from date palm leaflets and application for methylene blue removal [J].
El-Shafey, E. I. ;
Ali, Syeda N. F. ;
Al-Busafi, Saleh ;
Al-Lawati, Haider A. J. .
JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2016, 4 (03) :2713-2724
[22]   Activated carbon from agricultural by-products for the removal of Rhodamine-B from aqueous solution [J].
Gad, Hamdi M. H. ;
El-Sayed, Ashraf A. .
JOURNAL OF HAZARDOUS MATERIALS, 2009, 168 (2-3) :1070-1081
[23]   Efficient removal of Rhodamine B using a rice hull-based silica supported iron catalyst by Fenton-like process [J].
Gan, Pei Pei ;
Li, Sam Fong Yau .
CHEMICAL ENGINEERING JOURNAL, 2013, 229 :351-363
[24]   Removal of Rhodamine B with Fe-supported bentonite as heterogeneous photo-Fenton catalyst under visible irradiation [J].
Gao, Yaowen ;
Wang, Yan ;
Zhang, Hui .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2015, 178 :29-36
[25]   Salicylic acid degradation by advanced oxidation processes. Coupling of solar photoelectro-Fenton and solar heterogeneous photocatalysis [J].
Garza-Campos, Benjamin ;
Brillas, Enrit ;
Hernandez-Ramirez, Aracely ;
El-Ghenymy, Abdellatif ;
Luis Guzman-Mar, Jorge ;
Ruiz-Ruiz, Edgar J. .
JOURNAL OF HAZARDOUS MATERIALS, 2016, 319 :34-42
[26]   Interaction of adsorption and catalytic reactions in water decontamination processes Part I. Oxidation of organic contaminants with hydrogen peroxide catalyzed by activated carbon [J].
Georgi, A ;
Kopinke, FD .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2005, 58 (1-2) :9-18
[27]   Atomic-oxygen-assisted MBE growth of α-Fe2O3 on α-Al2O3(0001):: Metastable FeO(111)-like phase at subnanometer thicknesses [J].
Gota, S ;
Guiot, E ;
Henriot, M ;
Gautier-Soyer, M .
PHYSICAL REVIEW B, 1999, 60 (20) :14387-14395
[28]   Catalytic wet oxidation of phenol by hydrogen peroxide over pillared clay catalyst [J].
Guo, J ;
Al-Dahhan, M .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2003, 42 (12) :2450-2460
[29]   Graphene modified iron sludge derived from homogeneous Fenton process as an efficient heterogeneous Fenton catalyst for degradation of organic pollutants [J].
Guo, Sheng ;
Yuan, Na ;
Zhang, Gaoke ;
Yu, Jimmy C. .
MICROPOROUS AND MESOPOROUS MATERIALS, 2017, 238 :62-68
[30]   Photo-Fenton degradation of rhodamine B using Fe2O3-Kaolin as heterogeneous catalyst: Characterization, process optimization and mechanism [J].
Guo, Sheng ;
Zhang, Gaoke ;
Wang, Jiquan .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2014, 433 :1-8