Journal of Environmental Protection

Volume 6, Issue 3 (March 2015)

ISSN Print: 2152-2197   ISSN Online: 2152-2219

Google-based Impact Factor: 1.15  Citations  h5-index & Ranking

Simultaneous Removal of Chromium and Lead from Water by Sorption on Iraqi Montmorillonite

HTML  XML Download Download as PDF (Size: 1817KB)  PP. 237-249  
DOI: 10.4236/jep.2015.63024    3,831 Downloads   4,942 Views  Citations
Author(s)

ABSTRACT

A certified clay mineral from Iraq, montmorillonite, is used for the adsorption of chromium and lead ions from water. Experimental design is utilized here to plan for the practical work and analysis of the results. Batch wise experiments are carried out to equilibrate Cr and Pb solutions (250 mg/L) individually and simultaneously with montmorillonite (5 - 20 g/L) at various pH ranges (2 - 7.5) for 10 - 60 minutes. The results indicate perfect fit with the model used. Chromium adsorption is sensitive to pH changes being high at neutral medium. Lead is almost independent of the pH of the solution. In nearly neutral medium, the sorption capacity of Cr is 21.4 and that of lead is 24.3 mg/g. The optimum conditions for >96% Cr removal are 12 - 15 g clay/L, 40 - 50 minutes and a pH of 5 - 7. For lead, almost 100% removal can be attained using 12 - 15 g clay/L, 40 - 50 min. at a pH of 4 - 6. The effects of various operating parameters are discussed. Simultaneously, the lead shows a greater tendency to sorption than chromium and a ratio of 5:4 can best represent the occupation of the active surface of the clay. The most favorable conditions for simultaneous removing of Cr, 86% and Pb, 100% may be 12.5 g/L clay content and a pH of 7.5 within 30 minutes. The kinetic study of the results indicates the adsorption follow pseudo-second order kinetics in which chemical interaction is also involved. The kinetic study confirms the dependence of chromium adsorption on the pH of the medium being favoured at high pH values.

Share and Cite:

Barbooti, M. (2015) Simultaneous Removal of Chromium and Lead from Water by Sorption on Iraqi Montmorillonite. Journal of Environmental Protection, 6, 237-249. doi: 10.4236/jep.2015.63024.

Cited by

[1] Optimization of arsenic ions adsorption and removal from hospitals wastewater by nano-bentonite using central composite design
Materials Today: Proceedings, 2022
[2] Heavy Metal's Environmental Impact
2022
[3] Investigation of the Effect of Mixed Anion and Mixed Metal on Heavy Metal Removal from Contaminated Aqueous Solutions
… Research Journal of …, 2021
[4] Using Montmorillonite Mineral Clay to Remove Lead Ions from Wastewater
Shuwaiki - Dijlah Journal, 2021
[5] Removal of Pb2+ and Zn2+ using modified Chocolate B clay: a study using statistical analysis, equilibrium isotherms, and adsorption kinetics
Cerâmica, 2021
[6] Adsorptive removal of pollutants from industrial wastewater using mesoporous kaolin and kaolin/TiO2 nanoadsorbents
2021
[7] پاکسازی کروم (VI) از پساب شبیه ‌سازی شده با استفاده از بنتونایت اصلاح شده با آهن (II)..‎
2020
[8] Experimental design approach for optimization of Pb (II) removal from aqueous solution using poly-o-toluidine/stannic (IV) triethanolamine as adsorbent
2020
[9] Removal of Precious Metals from Electronic-Waste by Using Composite Material
2020
[10] Adsorptive Removal of Cadmium from Aqueous solution using Clay Obtained from Okitipupa
2020
[11] Combined adsorbent best (chemical and natural) coagulation process for removing some heavy metals from wastewater
2020
[12] Investigation into the Efficiency of Kaolinite Clay for Sorption of Cadmium (II) Ion (Cd 2) from Aqueous Solution: Kinetics and Isotherm Studies
2020
[13] Improving Quality of Water from Murchison Bay using Clay from Chelel, Kapchorwa District, Ugandao
2020
[14] Electrocoagulation for the Removal of Copper and Zinc Ions from Water Using Iron Electrodes
2020
[15] Adsorption of heavy metals on bentonite and modified bentonite clay, factors, kinetic and thermodynamic studies/a review
2020
[16] Potential of Saudi natural clay as an effective adsorbent in heavy metals removal from wastewater
2019
[17] Electrocoagulation Using Concentric Tubes Electrodes Reactor for Removal of Lead from Simulated Wastewater
2018
[18] Preparation, characterization and utilization of polyacrylic acid–kaolin composite in the removal of heavy metals from water
International Journal of Environmental Science and Technology, 2018
[19] Preparation, Characterization and Utilization of Polyacrylamid-Kaolin Composite in the Removal of Nickel Ions From Water
2018
[20] Combined Clay Adsorption-Coagulation Process for the Removal of Some Heavy Metals from Water and Wastewater
2018
[21] Removal of heavy metal chromium from tannery effluent using ultrafiltration membrane
Textiles and Clothing Sustainability, 2017
[22] Activated carbon from molasses efficiency for Cr (VI), Pb (II) and Cu (II) adsorption: A mechanistic study
2017
[23] Comparative study on adsorption of chromium (VI) from industrial wastewater onto nature-derived adsorbents (brown coal and zeolite)
International Journal of Environmental Science and Technology, 2017
[24] Removal of Lead and Chromium from Aqueous Solution onto Flamboyant (Delonix regia) Pod Activated Carbon
Nigerian Journal of Technological Development, 2017
[25] Design of Experiments for the Optimization of Biochemical Treatment of Tannery Wastewater
J Bacteriol Mycol Open …, 2017

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.