Modification of bentonite by AL/Mg-polymeric hydroxy for cu 2+ , cd 2+ , and Pb 2+ removal from aqueous solutions

3Citations
Citations of this article
9Readers
Mendeley users who have this article in their library.

This article is free to access.

Abstract

A commercial bentonite was modified by Al/Mg-polymeric hydroxy, and its potential application of removing Cu 2+ , Cd 2+ , and Pb 2+ from aqueous solution was also discussed. The modification did not change the bentonite microstructure, while the surface morphology becomes rough and the methyl and methylene groups appeared on the surface of modified bentonite (B-Al/Mg). Under acidic condition, the removal of Cu 2+ , Cd 2+ , and Pb 2+ raised with the increase of initial pH of solutions, media dosage, and reaction temperature, and the efficacious contact times for Cu 2+ , Cd 2+ , and Pb 2+ removal were 6 (Cu 2+ ) and 8 h (Cd 2+ and Pb 2+ ). The Cu 2+ , Cd 2+ , and Pb 2+ adsorption processes could be better described by Freundlich isotherm model and pseudo-second-order model. The intraparticle diffusion might be the rate-controlling step of Cu 2+ and Pb 2+ adsorption. The Cu 2+ , Cd 2+ , and Pb 2+ adsorptions were heterogeneous, spontaneous, endothermic, and irreversible processes. The adsorptions of Cu 2+ and Cd 2+ were dominated by physisorption, while the chemisorption was dominant in Pb 2+ adsorption. The results of column experiments suggested that B-Al/Mg had the potential application in purification of drinking water in practice because its removal of Cu 2+ , Cd 2+ , and Pb 2+ was greater than activated carbons selected in this study, and the breakthrough times were up to 20–30 d. Simultaneously, the heavy metal concentrations of outlet were all less than the World Health Organization standard in breakthrough time. The dynamic adsorption of Cu2 + , Cd 2+ , and Pb 2+ was well described by bed-depth service time model. B-Al/Mg had the potential for commercial applications. For single heavy metal removal, the advised adsorption columns were column 4 (Cu 2+ and Pb 2+ ) and column 1 (Cd 2+ ), and the column 5 was suggested for Cu 2+ , Cd 2+ , and Pb 2+ competitive adsorption.

Cite

CITATION STYLE

APA

Liu, L., Tang, C., Peng, Y., Pan, F., Lin, H., Zhang, X., & Chhuon, K. (2019). Modification of bentonite by AL/Mg-polymeric hydroxy for cu 2+ , cd 2+ , and Pb 2+ removal from aqueous solutions. Desalination and Water Treatment, 147, 243–254. https://doi.org/10.5004/dwt.2019.23701

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free