Photocatalytic performance and quick recovery of BiOI/Fe3O4@graphene oxide ternary photocatalyst for photodegradation of 2,4-dintirophenol under visible light

被引:94
作者
Singh, P. [1 ,2 ]
Sudhaik, A. [1 ]
Raizada, P. [1 ,2 ]
Shandilya, P. [1 ]
Sharma, R. [2 ,3 ]
Hosseini-Bandegharaei, A. [4 ,5 ]
机构
[1] Shoolini Univ, Fac Basic Sci, Sch Chem, Solan 173229, HP, India
[2] Shoolini Univ, Himalayan Ctr Excellence Nanotechnol, Solan 173229, HP, India
[3] Shoolini Univ, Fac Basic Sci, Sch Phys & Mat Sci, Solan 173229, HP, India
[4] Sabzevar Univ Med Sci, Fac Hlth, Dept Environm Hlth Engn, Sabzevar, Iran
[5] Islamic Azad Univ, Dept Engn, Kashmar Branch, POB 161, Kashmar, Iran
关键词
Bismuth iodide; Supported photocatalysis; Magnetic separation; 2,4 dinitrophenol degradation; Recyclability; GRAPHITIC CARBON NITRIDE; GRAPHENE SAND COMPOSITE; FLUORINE-DOPED GRAPHENE; PHENOLIC-COMPOUNDS; 4-CHLOROPHENOL DEGRADATION; DISPERSED PHOTOCATALYST; ACTIVATED CARBON; MINERALIZATION; WATER; NANOCOMPOSITES;
D O I
10.1016/j.mtchem.2018.12.006
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Herein, we immobilized BiOI/Fe3O4 photocatalyst on graphene oxide (GO) using simple co-precipitation method. The formation of BiOI/Fe3O4@GO was ascertained by various analytical techniques viz. FESEM, TEM, XRD, FTIR, UV-Vis, and photoluminescence techniques. SEM and TEM analysis clearly demonstrated the dispersion of BiOI and Fe3O4 on the GO surface. BiOI/Fe3O4@GO photocatalyst exhibited superparamagnetic character and was magnetically separated from the reaction solution. The thickness of BiOI/Fe3O4@GO was less than 17.0 nm. The band gap of BiOI/Fe3O4@GO was 1.78 eV. BiOI/Fe3O4@GO exhibited significant photocatalytic activity for 2,4 dinitrophenol (DNP) degradation under visible light. The reaction conditions were optimized to attain maximum degradation of DNP. The results showed that concurrent occurring of adsorption and photocatalytic processes cause a higher degree of DNP degradation. The DNP was completely converted into CO2 and H2O in 2 h. Enhanced DNP degradation was due to suppression in recombination of photogenerated electron-hole pairs in BiOI. The as-prepared photocatalyst displayed substantial stability and recycling efficiency after 10 catalytic cycles. (C) 2018 Elsevier Ltd. All rights reserved.
引用
收藏
页码:85 / 95
页数:11
相关论文
共 60 条
[21]   Chemical etching preparation of BiOI/Bi2O3 heterostructures with enhanced photocatalytic activities [J].
Li, Yongyu ;
Wang, Jianshe ;
Yao, Hongchang ;
Dang, Liyun ;
Li, Zhongjun .
CATALYSIS COMMUNICATIONS, 2011, 12 (07) :660-664
[22]   Microemulsion synthesis, characterization of bismuth oxyiodine/titanium dioxide hybrid nanoparticles with outstanding photocatalytic performance under visible light irradiation [J].
Liu, Zhang ;
Xu, Xiaoxin ;
Fang, Jianzhang ;
Zhu, Ximiao ;
Chu, Jinhui ;
Li, Baojian .
APPLIED SURFACE SCIENCE, 2012, 258 (08) :3771-3778
[23]  
Maiti S. K., 2001, HDB METHODS ENV STUD, V1, P49
[24]   Magnetically separable ternary g-C3N4/Fe3O4/BiOI nanocomposites: Novel visible-light-driven photocatalysts based on graphitic carbon nitride [J].
Mousavi, Mitra ;
Habibi-Yangjeh, Aziz .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2016, 465 :83-92
[25]   Advanced technologies for water treatment and reuse [J].
Ortiz Uribe, Inmaculada ;
Mosquera-Corral, Anuska ;
Lema Rodicio, Juan ;
Esplugas, Santiago .
AICHE JOURNAL, 2015, 61 (10) :3146-3158
[26]   ZnO assisted photocatalytic degradation of acridine orange in aqueous solution using visible irradiation [J].
Pare, Brijesh ;
Jonnalagadda, S. B. ;
Tomar, Hitendra ;
Singh, Pardeep ;
Bhagwat, V. W. .
DESALINATION, 2008, 232 (1-3) :80-90
[27]   Synthesis of Multifunctional Nanostructured Zinc-Iron Mixed Oxide Photocatalyst by a Simple Solution-Combustion Technique [J].
Pradhan, Gajendra Kumar ;
Martha, Satyabadi ;
Parida, K. M. .
ACS APPLIED MATERIALS & INTERFACES, 2012, 4 (02) :707-713
[28]   Photocatalytic mineralization and degradation kinetics of ampicillin and oxytetracycline antibiotics using graphene sand composite and chitosan supported BiOCl [J].
Priya, Bhanu ;
Shandilya, Pooja ;
Raizada, Pankaj ;
Thakur, Pankaj ;
Singh, Nahar ;
Singh, Pardeep .
JOURNAL OF MOLECULAR CATALYSIS A-CHEMICAL, 2016, 423 :400-413
[29]   Fabrication of GO/CDots/BiOI nanocomposites with enhanced photocatalytic 4-chlorophenol degradation and mechanism insight [J].
Qu, Songying ;
Xiong, Yuhan ;
Zhang, Jun .
SEPARATION AND PURIFICATION TECHNOLOGY, 2019, 210 :382-389
[30]   Graphene oxide and carbon nanodots co-modified BiOBr nanocomposites with enhanced photocatalytic 4-chlorophenol degradation and mechanism insight [J].
Qu, Songying ;
Xiong, Yuhan ;
Zhang, Jun .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2018, 527 :78-86