Heavy metal adsorption using PAMAM/CNT nanocomposite from aqueous solution in batch and continuous fixed bed systems

被引:212
作者
Hayati, Bagher [1 ,2 ]
Maleki, Afshin [1 ]
Najafi, Farhood [3 ]
Gharibi, Fardin [1 ]
McKay, Gordon [4 ]
Gupta, Vinod Kumar [5 ]
Puttaiah, Shivaraju Harikaranahalli [6 ]
Marzban, Nader [7 ]
机构
[1] Kurdistan Univ Med Sci, Res Inst Hlth Dev, Environm Hlth Res Ctr, Sanandaj, Iran
[2] Khalkhal Univ Med Sci, Dept Environm Hlth, Khalkhal, Iran
[3] Inst Color Sci & Technol Tehran, Dept Environm Res, Tehran, Iran
[4] Hamad Bin Khalifa Univ, Educ City, Qatar Fdn, Div Sustainable Dev,Coll Sci & Engn, Doha, Qatar
[5] Univ Johannesburg, Dept Appl Chem, Johannesburg, South Africa
[6] Jagadguru Sri Shivarathreeshwara Univ, Fac Life Sci, Dept Water & Hlth, Mysuru 570015, Karnataka, India
[7] Isfahan Branch, ACECR Inst Higher Educ, Esfahan, Iran
关键词
PAMAM/CNT; Super high adsorption capacities; Extremely short contact times; Heavy metal ion removal; Fixed bed column studies; Isotherm and kinetics; WALLED CARBON NANOTUBE; ETHYLENE DIAMINE CORE; WASTE-WATER; ACTIVATED CARBONS; ION-EXCHANGE; SIMULTANEOUS REMOVAL; DENDRIMER HYBRID; METHYLENE-BLUE; DYE REMOVAL; ACID DYES;
D O I
10.1016/j.cej.2018.03.172
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Novel fixed-bed adsorption investigations applying carbon nanotube (CNT) coated poly-amidoamine dendrimer (PAMAM) as an adsorbent have been studied for the adsorption of As(III) as arsenous acid, Co2+, and Zn2+ from aqueous solution. FTIR, SEM, H-1 NMR, TGA, TEM, Raman Spectra and zeta potential measurements have been employed for characterizing the synthetic nanocomposite and these techniques indicated that the dendrimer functionalized CNTs have been favorably synthesized. The effects of process parameters including flow rate, initial concentration and bed height on the duration of the breakthrough time, mass transfer zone, adsorption capacity and exhaustion time at breakthrough were investigated. Decreasing initial concentration and flow rate, and increasing bed height, increased the exhaustion and breakthrough times. In addition, the removal capacity at breakthrough was enhanced with decreasing flow rate, initial ion concentration and increasing bed height. The notably high maximum adsorption capacities at fixed bed breakthrough of the studied ions were 432 mg/g for As(III) as arsenous acid, 494 mg/g for Co2+, and 470 mg/g for Zn2+ at bed height of 12.0 cm, influent concentration of 100 mg/L and flow rate of 0.5 mL/min. Almost no previous fixed bed data for PAMAMS exist. Adsorption results were correlated using the Thomas, Yoon-Nelson, and Bohart-Adams models. Empirical breakthrough curves were found to be best fitted with the predicted curves produced by the Thomas and Yoon-Nelson equations. This study illustrates the efficiency of PAMAM/CNT nanocomposite for the adsorption of As (III), Co2+, and Zn2+ from aqueous solution.
引用
收藏
页码:258 / 270
页数:13
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