Comparing adsorption activity of raw Sepiolite and CTAB modified Sepiolite: kinetic and adsorption study for removal of Hg+

<p>In our study adsorption of Hg<sup>+2</sup> ions from water solutions on Sepiolite (Sep) and Modified Sepiolite (MSep) with cationic surfactants namely cetyl trimethyl ammonium bromide CTAB was investigated. Different parameters were used to investigate such as contact time, pH a...

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Main Authors: Ali Ġmran Vaġzoğullar, Mehmet Uğurlu, Ġbrahim Kula
Format: Article
Language:English
Published: Progressive Sustainable Developers Nepal 2015-12-01
Series:International Journal of Environment
Subjects:
Online Access:http://nepjol.info/index.php/IJE/article/view/14081
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spelling doaj-21d8a8b679d640308d209c7cf74f78362020-11-24T23:49:12ZengProgressive Sustainable Developers NepalInternational Journal of Environment2091-28542015-12-0144193110.3126/ije.v4i4.1408111051Comparing adsorption activity of raw Sepiolite and CTAB modified Sepiolite: kinetic and adsorption study for removal of Hg+Ali Ġmran Vaġzoğullar0Mehmet Uğurlu1Ġbrahim Kula2Vocat Sch Helth Care, Med Lab Programme, Mugla Sitki Koçman University, MuglaDepartment of Chemistry, Faculty of Science, Mugla Sitki Koçman UniversityDepartment of Chemistry, Faculty of Science, Mugla Sitki Koçman University<p>In our study adsorption of Hg<sup>+2</sup> ions from water solutions on Sepiolite (Sep) and Modified Sepiolite (MSep) with cationic surfactants namely cetyl trimethyl ammonium bromide CTAB was investigated. Different parameters were used to investigate such as contact time, pH and adsorbent dosage. The adsorption capacity of MSep and Sep was examined. Both particles were characterized with FTIR spectrum. According to the our results the equilibrium adsorption data corresponded to the Langmuir isotherm and q<sub>max</sub> was 54,7 mg/g and 104,1 mg/g for Sep and MSep respectively. Kinetic parameters showed that pseudo-second-order adsorption kinetic model was the best model than the pseudo-first-order. MSep is more active adsorbent than Sep and it can be the best alternative adsorbent for removing of heavy metal from industrial waste water. In addition MSep can be used as adsorbent for removal of nonpolar toxic organic molecules, because sepiolite surface can be converted from hydrophilic form to hydrophobic form by CTAB resulting in increased the adsorption capacity.</p><p class="Default">International Journal of Environment Vol.4(4) 2015: 19-31</p>http://nepjol.info/index.php/IJE/article/view/14081Mercury RemovalClaySepiolite
collection DOAJ
language English
format Article
sources DOAJ
author Ali Ġmran Vaġzoğullar
Mehmet Uğurlu
Ġbrahim Kula
spellingShingle Ali Ġmran Vaġzoğullar
Mehmet Uğurlu
Ġbrahim Kula
Comparing adsorption activity of raw Sepiolite and CTAB modified Sepiolite: kinetic and adsorption study for removal of Hg+
International Journal of Environment
Mercury Removal
Clay
Sepiolite
author_facet Ali Ġmran Vaġzoğullar
Mehmet Uğurlu
Ġbrahim Kula
author_sort Ali Ġmran Vaġzoğullar
title Comparing adsorption activity of raw Sepiolite and CTAB modified Sepiolite: kinetic and adsorption study for removal of Hg+
title_short Comparing adsorption activity of raw Sepiolite and CTAB modified Sepiolite: kinetic and adsorption study for removal of Hg+
title_full Comparing adsorption activity of raw Sepiolite and CTAB modified Sepiolite: kinetic and adsorption study for removal of Hg+
title_fullStr Comparing adsorption activity of raw Sepiolite and CTAB modified Sepiolite: kinetic and adsorption study for removal of Hg+
title_full_unstemmed Comparing adsorption activity of raw Sepiolite and CTAB modified Sepiolite: kinetic and adsorption study for removal of Hg+
title_sort comparing adsorption activity of raw sepiolite and ctab modified sepiolite: kinetic and adsorption study for removal of hg+
publisher Progressive Sustainable Developers Nepal
series International Journal of Environment
issn 2091-2854
publishDate 2015-12-01
description <p>In our study adsorption of Hg<sup>+2</sup> ions from water solutions on Sepiolite (Sep) and Modified Sepiolite (MSep) with cationic surfactants namely cetyl trimethyl ammonium bromide CTAB was investigated. Different parameters were used to investigate such as contact time, pH and adsorbent dosage. The adsorption capacity of MSep and Sep was examined. Both particles were characterized with FTIR spectrum. According to the our results the equilibrium adsorption data corresponded to the Langmuir isotherm and q<sub>max</sub> was 54,7 mg/g and 104,1 mg/g for Sep and MSep respectively. Kinetic parameters showed that pseudo-second-order adsorption kinetic model was the best model than the pseudo-first-order. MSep is more active adsorbent than Sep and it can be the best alternative adsorbent for removing of heavy metal from industrial waste water. In addition MSep can be used as adsorbent for removal of nonpolar toxic organic molecules, because sepiolite surface can be converted from hydrophilic form to hydrophobic form by CTAB resulting in increased the adsorption capacity.</p><p class="Default">International Journal of Environment Vol.4(4) 2015: 19-31</p>
topic Mercury Removal
Clay
Sepiolite
url http://nepjol.info/index.php/IJE/article/view/14081
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