Prediction and optimizing of methylene blue sequestration to activated charcoal/magnetic nanocomposites using artificial neutral network and response surface methodology

Green synthesized magnetic nanoparticles (MNPs) linked with activated charcoal (AC) (AC/Fe3O4 NCs) were exploited for methylene blue (MB) confiscation in this study. The AC/Fe3O4 NCs produced were characterized using TEM, FTIR, UV/Vis and XRD spectrometry. The Response-Surface-Methodology (RSM) was...

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Veröffentlicht in:Chemosphere (Oxford) 2024-05, Vol.355, p.141751-141751, Article 141751
Hauptverfasser: Aigbe, Uyiosa Osagie, Lebepe, Thabang Calvin, Oluwafemi, Oluwatobi Samuel, Osibote, Otolorin Adelaja
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Sprache:eng
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Zusammenfassung:Green synthesized magnetic nanoparticles (MNPs) linked with activated charcoal (AC) (AC/Fe3O4 NCs) were exploited for methylene blue (MB) confiscation in this study. The AC/Fe3O4 NCs produced were characterized using TEM, FTIR, UV/Vis and XRD spectrometry. The Response-Surface-Methodology (RSM) was utilized to improve the experimental data for the MB sorption to AC/Fe3O4 NCs, with 20 experimental runs implemented through a central composite design (CCD) to assess the effect of sorption factors-initial MB concentration, pH and sorbent dosage effects on the response (removal-effectiveness). The quadratic model was discovered to ideally describe the sorption process, with an R2 value of 0.9857. The theoretical prediction of the experimental data using the Artificial-Neural-Network (ANN) model showed that the Levenberg-Marquardt (LM) had a better performance criterion. Comparison between the modelled experimental and predicted data showed also that the LM algorithm had a high R2 of 0.9922, which showed NN model applicability for defining the sorption of MB to AC/Fe3O4 NCs with practical precision. The results of the non-linear fitting (NLF) of both isotherm and kinetic models, showed that the sorption of MB to AC/Fe3O4 NCs was perfectly described using the pseudo-second-order (PSOM) and Freundlich (FRHM) models. The estimated optimum sorption capacity was 455 mg g−1. Thermodynamically, the sorption of MB to AC/Fe3O4 NCs was shown to be non-spontaneous and endothermic. [Display omitted] •An optimal sorption capacity of 455 mg g−1 was established from this study.•The PSOM and FRHM adequately define MB confiscation to AC/Fe3O4 NCs.•The quadratic model with an R2 value of 0.9857 perfectly explained the sorption process of MB dye.•The LM best predict the sorption of MB to AC/Fe3O4 NCs with an R2 value of 0.9922.
ISSN:0045-6535
1879-1298
DOI:10.1016/j.chemosphere.2024.141751