Literature DB >> 33418222

Crystal violet dye sorption over acrylamide/graphene oxide bonded sodium alginate nanocomposite hydrogel.

Sevda Pashaei-Fakhri1, Seyed Jamaleddin Peighambardoust2, Rauf Foroutan1, Nasser Arsalani3, Bahman Ramavandi4.   

Abstract

The synthesis of acrylamide bonded sodium alginate (AM-SA) hydrogel and acrylamide/graphene oxide bonded sodium alginate (AM-GO-SA) nanocomposite hydrogel was successfully performed using the free radical method. The AM-SA and AM-GO-SA hydrogels were applied as composited adsorbents in crystal violet (CV) dye removal. The adsorption process experiments were performed discontinuously and the acquired data showed that the efficiency is more dependent on pH than other factors. The C-O, CO, and CC groups were detected in the produced hydrogels. The amount of surface area was computed to be 44.689 m2/g, 0.0392 m2/g, and 6.983 m2/g for GO, AM-SA, and AM-GO-SA nanocomposite hydrogel, respectively. The results showed that the experimental data follow the Redlich-Peterson isotherm model. Also, the maximum adsorption capacity of monolayer for CV dye adsorption was determined using AM-SA hydrogel and AM-GO-SA nanocomposite hydrogel 62.07 mg/g and 100.30 mg/g, respectively. In addition, the parameters RL, n, and E showed that the processes of adsorption of CV dye using both types of adsorbents are physical and desirable. Thermodynamically, the CV elimination was exothermic and spontaneous. Besides, thermodynamic results showed that the adsorption process is better proceeding at low temperatures. The experimental data followed a pseudo- second- order (PSO) kinetic model. Also, the Elovich model showed that AM-GO-SA nanocomposite hydrogel has more ability to absorb CV dye. Therefore, according to the obtained results, it can be stated that the produced hydrogels are efficient and viable composited adsorbent in removing CV dye from aqueous solution.
Copyright © 2020 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Cationic dye; Desorption; Graphene oxide; Hydrogel; Sodium alginate

Year:  2020        PMID: 33418222     DOI: 10.1016/j.chemosphere.2020.129419

Source DB:  PubMed          Journal:  Chemosphere        ISSN: 0045-6535            Impact factor:   7.086


  9 in total

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2.  The removal of anionic and cationic dyes from an aqueous solution using biomass-based activated carbon.

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6.  Highly Efficient Adsorption of Heavy Metals and Cationic Dyes by Smart Functionalized Sodium Alginate Hydrogels.

Authors:  Tianzhu Shi; Zhengfeng Xie; Xinliang Mo; Yulong Feng; Tao Peng; Dandan Song
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7.  Sargassum fusiforme Polysaccharide-Based Hydrogel Microspheres Enhance Crystal Violet Dye Adsorption Properties.

Authors:  Bingxue Lv; Jiahao Ren; Yang Chen; Siyu Guo; Minqian Wu; Lijun You
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8.  Synthesis, characterization and application of high adsorption performance of novel 1,4-polyketone.

Authors:  Marwa M Sayed; Islam S Abd El-Hamid; Haitham M El-Bery; Mostafa Farrag; Alaa K Abdelhakiem; Kamal I Aly
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9.  Synthesis of Functionalized Carboxylated Graphene Oxide for the Remediation of Pb and Cr Contaminated Water.

Authors:  Sana Farooq; Humera Aziz; Shafaqat Ali; Ghulam Murtaza; Muhammad Rizwan; Muhammad Hamzah Saleem; Shahid Mahboob; Khalid A Al-Ghanim; Mian N Riaz; Behzad Murtaza
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  9 in total

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