Synthesis of CS-Fe3O4/GO nanocomposite for adsorption of heavy metal in aqueous environment

被引:12
作者
Nguyen, Thu Huong [1 ]
Nguyen, Van Doan [1 ]
Vu, Anh-Tuan [1 ]
机构
[1] Hanoi Univ Sci & Technol, Sch Chem & Life Sci, Hanoi, Vietnam
关键词
heavy metal; adsorption; graphene oxide; Chitin; GRAPHENE OXIDE; SELECTIVE ADSORPTION; WASTE-WATER; II IONS; REMOVAL; NICKEL; BIOSORPTION; WASTEWATERS; POLLUTION; ISOTHERM;
D O I
10.1088/1361-6528/ad50e3
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
In this study, magnetic material based on graphene oxide (GO) was developed for enhanced adsorption capacity for heavy metals. The Fe3O4 nanoparticles were combined with the GO material using a chitosan (CS) binder to obtain the CS-Fe3O4/GO nanocomposite. The adsorption capacity of this nanocomposite was evaluated by removing heavy metals including Ni2+ ions. When GO was composed with Fe3O4 and CS, the GO films were densely covered with ferromagnetic particles, which were bound and densely distributed on the GO film surface due to the interaction between GO and CS. The optimal conditions for the complexation of Ni2+ and 4-(2-pyridyl azo)-rezoxine (PAR) are 1 ml Ni2+, 2 ml PAR 100 mg l(-1), pH = 6 (adjusted with 0.7 ml of the 0.1 M K2HPO4 solution) and a complexation time of 20 min. After 50 min of adsorption, the Ni2+ removal efficiency of the CS-Fe3O4/GO nanocomposite reached 81.21% and the corresponding adsorption capacity was 2.03 mg g(-1) . The Ni2+ removal process followed the first-order model and Freundlich isotherm. This process was spontaneous (Delta G(o) < 0) and an exothermic process (Delta H-o = -1128.875 J center dot mol(-1)). In addition, the factors affecting this process were investigated, including the pH solution, the dosage of the CS-Fe3O4/GO nanocomposite and the initial Ni2+ concentration. The CS-Fe3O4/GO nanocomposite showed a potential adsorption capacity in removing Ni2+ at low concentrations from wastewater.
引用
收藏
页数:15
相关论文
共 45 条
[1]   Influence of operating conditions on the removal of Cu, Zn, Cd and Pb ions from wastewater by adsorption [J].
Abdel-Ghani, N. T. ;
Elchaghaby, G. A. .
INTERNATIONAL JOURNAL OF ENVIRONMENTAL SCIENCE AND TECHNOLOGY, 2007, 4 (04) :451-456
[2]   Removal of nickel (II) ions from aqueous solutions by biosorption on sugarcane bagasse [J].
Aloma, I. ;
Martin-Lara, M. A. ;
Rodriguez, I. L. ;
Blazquez, G. ;
Calero, M. .
JOURNAL OF THE TAIWAN INSTITUTE OF CHEMICAL ENGINEERS, 2012, 43 (02) :275-281
[3]   Adsorption of heavy metals from water using banana and orange peels [J].
Annadurai, G ;
Juang, RS ;
Lee, DJ .
WATER SCIENCE AND TECHNOLOGY, 2003, 47 (01) :185-190
[4]   Removal of Heavy Metals from Industrial Wastewaters: A Review [J].
Azimi, Arezoo ;
Azari, Ahmad ;
Rezakazemi, Mashallah ;
Ansarpour, Meisam .
CHEMBIOENG REVIEWS, 2017, 4 (01) :37-59
[5]   New trends in removing heavy metals from industrial wastewater [J].
Barakat, M. A. .
ARABIAN JOURNAL OF CHEMISTRY, 2011, 4 (04) :361-377
[6]   An improved Hummers method for eco-friendly synthesis of graphene oxide [J].
Chen, Ji ;
Yao, Bowen ;
Li, Chun ;
Shi, Gaoquan .
CARBON, 2013, 64 :225-229
[7]   A ZnO decorated chitosan-graphene oxide nanocomposite shows significantly enhanced antimicrobial activity with ROS generation [J].
Chowdhuri, Angshuman Ray ;
Tripathy, Satyajit ;
Chandra, Soumen ;
Roy, Somenath ;
Sahu, Sumanta Kumar .
RSC ADVANCES, 2015, 5 (61) :49420-49428
[8]   Review graphite [J].
Chung, DDL .
JOURNAL OF MATERIALS SCIENCE, 2002, 37 (08) :1475-1489
[9]   Kinetic and Isotherm Studies of Ni2+ Adsorption on Poly(methacrylic acid) Synthesized through a Hierarchical Double-Imprinting Method Using a Ni2+ Ion and Cationic Surfactant as Templates [J].
de Oliveira, Fernanda Midori ;
Somera, Bruna Fabrin ;
Ribeiro, Emerson Schwingel ;
Segatelli, Mariana Gava ;
Santos Yabe, Maria Josefa ;
Galunin, Evgeny ;
Teixeira Tarley, Cesar Ricardo .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2013, 52 (25) :8550-8557
[10]   Removal of Ni(II) from aqueous solution by adsorption onto hazelnut shell activated carbon:: equilibrium studies [J].
Demirbas, E ;
Kobya, M ;
Öncel, S ;
Sencan, S .
BIORESOURCE TECHNOLOGY, 2002, 84 (03) :291-293