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Fabrication of polyaniline/poly(vinyl alcohol)/montmorillonite hybrid aerogels toward efficient adsorption of organic dye pollutants

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    0557013 - ÚMCH 2023 RIV NL eng J - Journal Article
    Lyu, Wei - Li, J. - Trchová, Miroslava - Wang, G. - Liao, Y. - Bober, Patrycja - Stejskal, Jaroslav
    Fabrication of polyaniline/poly(vinyl alcohol)/montmorillonite hybrid aerogels toward efficient adsorption of organic dye pollutants.
    Journal of Hazardous Materials. Roč. 435, 5 August (2022), č. článku 129004. ISSN 0304-3894. E-ISSN 1873-3336
    R&D Projects: GA ČR(CZ) GA19-04859S
    Grant - others:AV ČR(CZ) UNESCO/IUPAC Postgraduate Course in Polymer Science
    Institutional support: RVO:61389013
    Keywords : polyaniline * poly(vinyl alcohol) * montmorillonite
    OECD category: Polymer science
    Impact factor: 13.6, year: 2022
    Method of publishing: Limited access
    https://www.sciencedirect.com/science/article/pii/S0304389422007932?via%3Dihub

    Fabrication of adsorbents with excellent adsorption capacity, outstanding stability, easy separation ability, excellent recyclability and widely generality for organic dyes removal from wastewater remains challenging. Herein, three-dimensional polyaniline/poly(vinyl alcohol)/montmorillonite (PANI/PVAL/MMT) hybrid aerogels with easy separation performance and highly effective reusable adsorption on both anionic and cationic dyes were fabricated by a simple in-situ polymerization method. As-prepared hybrid aerogels were characterized via infrared and Raman spectra, scanning electron microscopy, energy dispersive spectra mapping, small and wide-angle X-ray scattering, thermogravimetric analysis, mercury intrusion porosimetry and elemental analysis. The results showed that MMT particles were successfully incorporated into aerogel matrix. Well-defined hierarchical structure, where PANI nanofibers are coated on the skeleton wall, can be observed for PANI/PVAL/MMT when the incorporation amount of MMT was around 11.1 wt%. The adsorption performance of as-prepared hybrid aerogels on both anionic and cationic dyes was systemically carried out at different solution pH, adsorbent dosage and initial dye concentration. The data analysis showed that the adsorption process for PVAL/PANI/MMT aerogel for Reactive Black 5, methyl orange and safranin followed Freundlich isotherm and the maximum experimental adsorption capacities were found to be 199, 251 and 57.0 mg g−1 at 25 °C, respectively. Mechanism studies indicated that the electrostatic interaction is the main driving force for the adsorption of dyes. The results demonstrated that the fabricated hybrid aerogel is an efficient adsorbent for the removal of both anionic and cationic organic dyes.
    Permanent Link: http://hdl.handle.net/11104/0331508

     
     
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