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    Removal of Mercury (II) and Lead (II) from Aqueous Media by Using a Green Adsorbent: Kinetics, Thermodynamic, and Mechanism Studies

    Source: Journal of Hazardous, Toxic, and Radioactive Waste:;2018:;Volume ( 022 ):;issue: 002
    Author:
    Mohammad Javad Amiri
    ,
    Mohammad Arshadi
    ,
    Evangelos Giannakopoulos
    ,
    Ioannis K. Kalavrouziotis
    DOI: 10.1061/(ASCE)HZ.2153-5515.0000383
    Publisher: American Society of Civil Engineers
    Abstract: In this study, a simple and highly efficient method for stabilizing the different combinations of citric acid and sodium hydroxide on the surface of a green adsorbent was presented as the bio-originated composite for the elimination of Hg(II) and Pb(II) ions from aqueous media. The removal behavior of the green adsorbent was assessed as a function of initial pH, changing the contact time, initial pollutants concentration, temperature, cleaning process, and amount of adsorbent. The synthesized bio-originated composite was characterized using different physicochemical techniques. The metals uptake of synthesized bioadsorbent increased as a result of chemical modification, and the highest adsorption capacity [61.54  mg g−1 for Pb(II) and 45.34  mg g−1 for Hg(II) ions] was achieved by citric acid (CA) and after further reaction with sodium hydroxide (NaOH) again (B─ CA─ NaOH). The sorption capacity increased in the order of B─CA─NaOH>B─NaOH─CA>B─NaOH>B─CA>pristine bone, with increasing metal concentration. The equilibrium sorption data obeyed a Langmuir–Freundlich isotherm type model. The kinetic data of the adsorption followed the mechanism of the pseudo second order model. The thermodynamic experiments indicated that the removal of metal ions was feasible, endothermic, and spontaneous. The findings of this investigation suggest that the combined modification of green adsorbent with CA and NaOH could persuade more active sites on the surface of the green adsorbent (the carboxylic acid groups of immobilized CA convert to their sodium salt form, −COO−Na+), which indicate very effective tendency in order to react with Pb(II) and Hg(II) ions. This study suggests that B─ CA─ NaOH has the potential to become an effective and economical adsorbent for the removal of heavy metal (HM) ions.
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      Removal of Mercury (II) and Lead (II) from Aqueous Media by Using a Green Adsorbent: Kinetics, Thermodynamic, and Mechanism Studies

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    https://yetl.yabesh.ir/yetl1/handle/yetl/4243418
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    • Journal of Hazardous, Toxic, and Radioactive Waste

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    contributor authorMohammad Javad Amiri
    contributor authorMohammad Arshadi
    contributor authorEvangelos Giannakopoulos
    contributor authorIoannis K. Kalavrouziotis
    date accessioned2017-12-30T12:55:17Z
    date available2017-12-30T12:55:17Z
    date issued2018
    identifier other%28ASCE%29HZ.2153-5515.0000383.pdf
    identifier urihttp://138.201.223.254:8080/yetl1/handle/yetl/4243418
    description abstractIn this study, a simple and highly efficient method for stabilizing the different combinations of citric acid and sodium hydroxide on the surface of a green adsorbent was presented as the bio-originated composite for the elimination of Hg(II) and Pb(II) ions from aqueous media. The removal behavior of the green adsorbent was assessed as a function of initial pH, changing the contact time, initial pollutants concentration, temperature, cleaning process, and amount of adsorbent. The synthesized bio-originated composite was characterized using different physicochemical techniques. The metals uptake of synthesized bioadsorbent increased as a result of chemical modification, and the highest adsorption capacity [61.54  mg g−1 for Pb(II) and 45.34  mg g−1 for Hg(II) ions] was achieved by citric acid (CA) and after further reaction with sodium hydroxide (NaOH) again (B─ CA─ NaOH). The sorption capacity increased in the order of B─CA─NaOH>B─NaOH─CA>B─NaOH>B─CA>pristine bone, with increasing metal concentration. The equilibrium sorption data obeyed a Langmuir–Freundlich isotherm type model. The kinetic data of the adsorption followed the mechanism of the pseudo second order model. The thermodynamic experiments indicated that the removal of metal ions was feasible, endothermic, and spontaneous. The findings of this investigation suggest that the combined modification of green adsorbent with CA and NaOH could persuade more active sites on the surface of the green adsorbent (the carboxylic acid groups of immobilized CA convert to their sodium salt form, −COO−Na+), which indicate very effective tendency in order to react with Pb(II) and Hg(II) ions. This study suggests that B─ CA─ NaOH has the potential to become an effective and economical adsorbent for the removal of heavy metal (HM) ions.
    publisherAmerican Society of Civil Engineers
    titleRemoval of Mercury (II) and Lead (II) from Aqueous Media by Using a Green Adsorbent: Kinetics, Thermodynamic, and Mechanism Studies
    typeJournal Paper
    journal volume22
    journal issue2
    journal titleJournal of Hazardous, Toxic, and Radioactive Waste
    identifier doi10.1061/(ASCE)HZ.2153-5515.0000383
    page04017026
    treeJournal of Hazardous, Toxic, and Radioactive Waste:;2018:;Volume ( 022 ):;issue: 002
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
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