Efficient Removal of Cr(VI) from Aqueous Solution by Fe-Mn Oxide-Modified Biochar

被引:0
作者
Yiyang Zhu
Wencan Dai
Kai Deng
Ting Pan
Zhijie Guan
机构
[1] Guangdong University of Technology,School of Environmental Science and Engineering
来源
Water, Air, & Soil Pollution | 2020年 / 231卷
关键词
Modified biochar; Cr(VI); Adsorption; Kinetic; Isothermal; Thermodynamic;
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学科分类号
摘要
Removal of Cr(VI) is of great concern due to its high mobility and toxicity in the natural environment. In this study, Fe-Mn oxide-modified biochar composite (FMBC) was prepared by impregnation to remove Cr(VI) from aqueous systems. The effect of Fe/Mn ratio, adsorbent dosage, solution pH, initial Cr(VI) concentration, and temperature were investigated on the Cr(VI) removal efficiency. Results showed that F1M3BC (with an Fe/Mn ratio of 1:3) had the maximum Cr(VI) adsorption capacity of 118.03 mg g−1 at pH 2.0. The removal efficiency of Cr(VI) by F1M3BC (91.79%) was higher than that by the pristine BC (32.17%). Experimental data fitted well with the Langmuir model and the pseudo-second-order kinetics equation. Thermodynamic studies showed that the adsorption process was endothermic and spontaneous. Multiple techniques including BET, SEM, FTIR, and XPS were used to analyze the possible adsorption mechanisms. It was found that the increased adsorption of Cr(VI) on F1M3BC, mainly occurred due to electrostatic attraction and Cr(VI) reduction, together with Cr(III) complexation. Furthermore, regeneration studies indicated that F1M3BC could be recycled for up to six cycles without loss of activity. Therefore, F1M3BC may be promising for environmental applications removing Cr(VI) from aqueous systems.
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[21]  
Bai RS(2010)Biosorption of chromium(VI) from aqueous solution and electroplating wastewater using fungal biomass Desalination 264 70-77
[22]  
Abraham TE(2013)Adsorption/desorption properties of copper ions on the surface of iron-coated sand using BET and EDAX analyses Bioresource Technology 141 83-88
[23]  
Baig SA(2015)Leaf char: An alternative adsorbent for Cr(III) Journal of Agro-Environment Science 34 1377-1143
[24]  
Jin Z(2016)Cu(II) removal from aqueous solution by Spartina alterniflora derived biochar Journal of Hazardous Materials 303 183-184
[25]  
Muhammad N(2017)Adsorption of aqueous nitrate-N by immobilized modified biochar Ecotoxicology and Environmental Safety 144 514-521
[26]  
Sheng T(2018)Corrigendum to “Removal of aqueous Hg(II) and Cr(VI) using phytic acid doped polyaniline/cellulose acetate composite mem brane” Environmental Pollution 244 600-607
[27]  
Xu X(2005)Arsenic removal in aqueous solution by a novel Fe-Mn modified biochar composite: Characterization and mechanism Journal of Colloid and Interface Science 285 33-40
[28]  
Chang F(2012)Effects of Fe-Mn modified biochar composite treatment on the properties of As-polluted paddy soil Water Research 46 854-862
[29]  
Qu J(2004)Adsorption of cationic polyelectrolyte at the solid/liquid interface and dispersion of nanosized silica in water Chemical Engineering Journal 99 45-52
[30]  
Liu R(2014)Relative distribution of Pb Journal of Hazardous Materials 274 145-155