Synthesis of co-polymer-grafted gum karaya and silica hybrid organic-inorganic hydrogel nanocomposite for the highly effective removal of methylene blue
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作者:
Mittal, Hemant
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CSIR, DST CSIR Natl Ctr Nanostruct Mat, ZA-0001 Pretoria, South AfricaCSIR, DST CSIR Natl Ctr Nanostruct Mat, ZA-0001 Pretoria, South Africa
Mittal, Hemant
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Maity, Arjun
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机构:CSIR, DST CSIR Natl Ctr Nanostruct Mat, ZA-0001 Pretoria, South Africa
Maity, Arjun
Ray, Suprakas Sinha
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机构:CSIR, DST CSIR Natl Ctr Nanostruct Mat, ZA-0001 Pretoria, South Africa
Ray, Suprakas Sinha
机构:
[1] CSIR, DST CSIR Natl Ctr Nanostruct Mat, ZA-0001 Pretoria, South Africa
The aim of this work was to study the adsorption behavior of the nanosilica-containing hydrogel nanocomposite of gum karaya grafted with poly(acrylic acid-acrylamide) (GK-cl-P(AA-co-AAM)) in the adsorption of methylene blue (MB) from aqueous solutions. The hydrogel nanocomposite was synthesized by the base-catalyzed hydrolysis and water condensation reactions of tetraethylorthosilicate in an aqueous medium containing a dispersion of GM-cl-P(AA-co-AAM). Structural and morphological characterizations using Fourier transform infrared spectroscopy, X-ray diffraction, and transmission and scanning electron microscopies supported the formation of the grafted hydrogel polymer of GM and the SiO2-containing nanocomposite. The Brunauer-Emmett-Teller adsorption studies showed that the surface area and porosity of the hydrogel polymer significantly increased after nanocomposite formation with SiO2. The hydrogel nanocomposite was employed for the removal of MB from an aqueous solution: 96% of the MB was removed with a hydrogel nanocomposite dose of 0.2 g L-1. The adsorption process was found to follow pseudo-second-order kinetics, and the adsorption isotherm was best fitted with the Langmuir monolayer isotherm model with a maximum adsorption capacity of 1408.67 mg g(-1), which was much higher than that of the hydrogel polymer. Different adsorption thermodynamic parameters supported the endothermic nature as well as the spontaneity of the adsorption process. The hydrogel nanocomposite showed excellent regeneration capacity in the acidic medium and was successfully used over three adsorption-desorption cycles. Therefore, the GK-cl-P(AA-co-AAM)/SiO2 hydrogel nanocomposite has shown potential as an efficient adsorbent for the highly effective removal of cationic dyes from aqueous solution. (C) 2015 Elsevier B.V. All rights reserved.
机构:
Carthage Univ, Fac Sci Bizerte, Zarzouna 7021, Bizerte, Tunisia
Fac Sci Tunis, Lab Atom Mol Spect & Applicat, Tunis 2092, TunisiaUniv Gabes, Fac Sci Gabes, Electrochem Mat & Environm Res Unit UREME UR17ES45, Erriadh City 6072, Gabes, Tunisia
Jendoubi, Ibtissem
Mbarek, Fatma
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Univ Gabes, Fac Sci Gabes, Electrochem Mat & Environm Res Unit UREME UR17ES45, Erriadh City 6072, Gabes, TunisiaUniv Gabes, Fac Sci Gabes, Electrochem Mat & Environm Res Unit UREME UR17ES45, Erriadh City 6072, Gabes, Tunisia
Mbarek, Fatma
Dastan, Davoud
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Cornell Univ, Dept Mat Sci & Engn, Ithaca, NY 15850 USAUniv Gabes, Fac Sci Gabes, Electrochem Mat & Environm Res Unit UREME UR17ES45, Erriadh City 6072, Gabes, Tunisia
Dastan, Davoud
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Arfaoui, Youssef
Ferhi, Mounir
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机构:
Natl Ctr Res Mat Sci CNRSM, Phys Chem Lab Mineral Mat & Their Applicat, Borj Cedria Technopole, Soliman 8027, TunisiaUniv Gabes, Fac Sci Gabes, Electrochem Mat & Environm Res Unit UREME UR17ES45, Erriadh City 6072, Gabes, Tunisia
Ferhi, Mounir
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Zid, Mohamed Faouzi
Ammar, Salah
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Univ Gabes, Fac Sci Gabes, Electrochem Mat & Environm Res Unit UREME UR17ES45, Erriadh City 6072, Gabes, TunisiaUniv Gabes, Fac Sci Gabes, Electrochem Mat & Environm Res Unit UREME UR17ES45, Erriadh City 6072, Gabes, Tunisia