Simultaneous removal of mixed contaminants by organoclays - Amoxicillin and Cu(II) from aqueous solution

Date

2014

Authors

Jin, X.
Zha, S.
Li, S.
Chen, Z.

Editors

Advisors

Journal Title

Journal ISSN

Volume Title

Type:

Journal article

Citation

Applied Clay Science, 2014; 102:196-201

Statement of Responsibility

Conference Name

Abstract

The treatment of mixed contaminants inwastewater faces a significant challenge because of the distinct fate and transport mechanism of metals and organic contaminants. The present study explored the possibility of organoclays used to simultaneously remove amoxicillin (AMX) and Cu(II) from wastewater. The adsorption of AMX onto organobentonite (DK1) was 6 times higher than that using bentonite (control), while adsorption of Cu(II) on DK1 showed comparable results as that using bentonite. Adsorption isotherms indicated that AMX was well described by Langmuir isotherms, while Cu(II) adsorption data fitted well with Freundlich isotherms, and adsorption kinetics of both could be explained by the first-order and pseudo-second-order kinetic models. The exothermic nature of simultaneous adsorption of AMX and Cu(II) onto DK1 was disclosed by the thermodynamic study. Furthermore, DK1 was characterized using EDS and XRD, which confirmed the simultaneous adsorption of AMX and Cu(II) onto DK1 by evaluation of their morphologies and chemical compositions. Finally, the simultaneous adsorption of AMX and Cu(II) onto DK1 occurred through partition for AMX and ion-exchange for Cu(II). DK1 was further used to remove AMX and Cu(II) from industrial wastewater. More than 34.8% AMX and 43.6% Cu(II) were removed, indicating its great potential removal of mixed organic and metal contaminants.

School/Discipline

Dissertation Note

Provenance

Description

Access Status

Rights

Copyright 2014 Elsevier

License

Grant ID

Call number

Persistent link to this record