Adsorption of Quaternized-chitosan-modified Reduced Graphene Oxide

被引:0
作者
Chuanhang Guo
Mingyang Liu
Yuanling Xia
Xiaoqiang Fan
Yanjun Chen
Chaocan Zhang
机构
[1] Wuhan University of Technology,School of Material Science and Engineering
来源
Journal of Wuhan University of Technology-Mater. Sci. Ed. | 2018年 / 33卷
关键词
reduced graphene oxide; chitosan; adsorption; adsorption kinetic;
D O I
暂无
中图分类号
学科分类号
摘要
A novel quaternized-chitosan-modified reduced graphene oxide (HACC-RGO) combined the adsorption advantages of RGO and 2-Hydroxypropyltrimethyl ammonium chloride chitosan (HACC). The adsorption property of HACC-RGO sheets for methyl orange (MO) was demonstrated and compared with RGO and HACC. The removal ratios of HACC-RGO sheets reached 92.6% for MO after a 24 h adsorption. The adsorption kinetics, isotherms and thermodynamics were investigated to indicate that the kinetics and equilibrium adsorptions were well-described by pseudo-second-order kinetic and Freundlich isotherm model, respectively. The thermodynamic parameters suggested that the adsorption process was spontaneous and endothermic in nature. Moreover, monodisperse HACC-RGO/CS beads were fabricated by the microfluidic method. The adsorption and desorption of HACC-RGO/CS beads for MO were studied. After three adsorption-desorption cycles, the adsorption capacity remained above 55% and the desorption capacity was not below 70%. The HACC-RGO/CS beads can be reused and have great potential applications in removing organic dyes from polluted water.
引用
收藏
页码:967 / 973
页数:6
相关论文
共 78 条
[1]  
Luk CJ(2014)A Comprehensive Study on Adsorption Behaviour of Direct, Reactive and Acid Dyes on Crosslinked and Non-crosslinked Chitosan Beads[J] Journal of Fiber Bioengineering and Informatics 7 35-52
[2]  
Yip J(2003)Adsorption Behavior of Reactive Dye in Aqueous Solution on Chemical Cross-linked Chitosan Beads[J] Chemosphere 50 1095-1105
[3]  
Yuen CM(2002)Equilibrium and Kinetic Modeling of Adsorption of Reactive Dye on Cross-linked Chitosan Beads[J] Journal of Hazardous Materials 93 233-248
[4]  
Chiou MS(2011)Adsorption Characteristics of Acrylonitrile, p-toluenesulfonic Acid, 1-naphthalenesulfonic Acid and Methyl Blue on Graphene in Aqueous Solutions[J] Chemical Engineering Journal 173 144-149
[5]  
Li HY(2011)Kinetic and Thermodynamic Study of 1-naphthol Adsorption from Aqueous Solution to Sulfonated Graphene Nanosheets[J] Chemical Engineering Journal 173 185-190
[6]  
Chiou MS(2014)Effective Adsorption of Cationic Dyes by Lignin Sulfonate Polymer Based on Simple Emulsion Polymerization: Isotherm and Kinetic Studies[J] Rsc. Advances 5 3757-3766
[7]  
Li HY(2012)Functionalization of Graphene: Covalent and Non-covalent Approaches, Derivatives and Applications[J] Chemical Reviews 112 6156-6214
[8]  
Wu T(2006)Stable Aqueous Dispersions of Graphitic Nanoplatelets Via the Reduction of Exfoliated Graphite Oxide in the Presence of Poly (sodium 4-styrenesulfonate)[J] Journal of Materials Chemistry 16 155-158
[9]  
Cai X(2010)High-performance Supercapacitors Based on Poly (ionic liquid)-modified Graphene Electrodes[J] ACS Nano 5 436-442
[10]  
Tan S(2015)An Experimental and Modeling Study of the Adsorption Equilibrium and Dynamics of Water Vapor on Activated Carbon[J] Industrial & Engineering Chemistry Research 54 12165-12176