Model-fitting approach for methylene blue dye adsorption on and seeds-derived adsorbents

Adsorption of methylene blue dye over the adsorbent derived from Sapindus seed hull (S) and Camelina (C) is studied. Batch adsorption study on both adsorbents is compared as a function of various parameters such as time, initial concentration and temperature. Langmuir and Freundlich models were fitt...

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Main Authors: Sunanda Sharma, DP Tiwari, KK Pant
Format: Article
Language:English
Published: SAGE Publications 2016-12-01
Series:Adsorption Science & Technology
Online Access:https://doi.org/10.1177/0263617416674949
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author Sunanda Sharma
DP Tiwari
KK Pant
author_facet Sunanda Sharma
DP Tiwari
KK Pant
author_sort Sunanda Sharma
collection DOAJ
description Adsorption of methylene blue dye over the adsorbent derived from Sapindus seed hull (S) and Camelina (C) is studied. Batch adsorption study on both adsorbents is compared as a function of various parameters such as time, initial concentration and temperature. Langmuir and Freundlich models were fitted to the equilibrium data of methylene blue dye adsorption. Kinetics was evaluated using pseudo-first- and second-order models. Weber Morris model helped to understand the intraparticle diffusion during adsorption of methylene blue molecules. Thermodynamic analysis on both adsorbents revealed the spontaneity of the process. The relative study illustrated a comparison in adsorption capacities among both the adsorbents. Morphology explicated the surface characteristics of both the sorbents. Fourier transform infrared spectroscopy spectrum revealed a variety of functional groups on adsorbents’ surface.
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spelling doaj.art-c65838e3590a490baaadc984f8ad5cbf2024-03-02T00:29:05ZengSAGE PublicationsAdsorption Science & Technology0263-61742048-40382016-12-013410.1177/0263617416674949Model-fitting approach for methylene blue dye adsorption on and seeds-derived adsorbentsSunanda SharmaDP TiwariKK PantAdsorption of methylene blue dye over the adsorbent derived from Sapindus seed hull (S) and Camelina (C) is studied. Batch adsorption study on both adsorbents is compared as a function of various parameters such as time, initial concentration and temperature. Langmuir and Freundlich models were fitted to the equilibrium data of methylene blue dye adsorption. Kinetics was evaluated using pseudo-first- and second-order models. Weber Morris model helped to understand the intraparticle diffusion during adsorption of methylene blue molecules. Thermodynamic analysis on both adsorbents revealed the spontaneity of the process. The relative study illustrated a comparison in adsorption capacities among both the adsorbents. Morphology explicated the surface characteristics of both the sorbents. Fourier transform infrared spectroscopy spectrum revealed a variety of functional groups on adsorbents’ surface.https://doi.org/10.1177/0263617416674949
spellingShingle Sunanda Sharma
DP Tiwari
KK Pant
Model-fitting approach for methylene blue dye adsorption on and seeds-derived adsorbents
Adsorption Science & Technology
title Model-fitting approach for methylene blue dye adsorption on and seeds-derived adsorbents
title_full Model-fitting approach for methylene blue dye adsorption on and seeds-derived adsorbents
title_fullStr Model-fitting approach for methylene blue dye adsorption on and seeds-derived adsorbents
title_full_unstemmed Model-fitting approach for methylene blue dye adsorption on and seeds-derived adsorbents
title_short Model-fitting approach for methylene blue dye adsorption on and seeds-derived adsorbents
title_sort model fitting approach for methylene blue dye adsorption on and seeds derived adsorbents
url https://doi.org/10.1177/0263617416674949
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AT dptiwari modelfittingapproachformethylenebluedyeadsorptiononandseedsderivedadsorbents
AT kkpant modelfittingapproachformethylenebluedyeadsorptiononandseedsderivedadsorbents