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Highly Efficient Chelating Polymers Based on Plastic Waste for Removal of Toxic Heavy Metal Pollutants

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Last updated: 01 Jan 2025

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Abstract

NEW efficient chelating polymers CPs based on waste …….poly(methylmethacrylate) (PMMA) functionalized by itaconic acid moieties in absence and presence of montmorillonite clay MMT have been prepared by simple solution polymerization technique.  The obtained CPs have been characterized using various techniques such as Fourier-Infra-red (FT-IR), scanning electron microscope (SEM), differential scanning calorimetric (DSC) and thermo gravimetrical analysis (TGA). The prepared CPs has been used as potential adsorbents for removal of different toxic metal ions from their aqueous solutions. The CP containing MMT clay showed higher sorption capacity. The adsorption performance of the prepared CPs has been found to match well with Langmuir adsorption isotherms. The maximum sorption capacity for Cu +2 ions was found to be 200.7 mg/g at natural pH 5.8 and was highly enhanced to reach 478.6 mg/g at higher pH values. The correlation coefficient values showed that the sorption of Cu+2 ions by CP with and without clay fit well pseudo-second order models. The highest sorption affinity of the prepared CPs towards different metal ions was in the order Co ˃Ni ˃Pb ˃ Cu˃ Cd˃Cr and Pb˃Cu ˃Cd ˃ Ni ˃Co ˃ Cr for CP without and with clay respectively.  
 
 

DOI

10.21608/ejchem.2016.944

Keywords

Chelating polymers, Copper ion uptake, Sorption Kinetics, and Sorption affinity

Volume

59

Article Issue

2

Related Issue

217

Issue Date

2016-04-01

Receive Date

2016-01-11

Publish Date

2016-04-30

Page Start

209

Page End

227

Print ISSN

0449-2285

Online ISSN

2357-0245

Link

https://ejchem.journals.ekb.eg/article_944.html

Detail API

https://ejchem.journals.ekb.eg/service?article_code=944

Order

5

Type Code

292

Publication Type

Journal

Publication Title

Egyptian Journal of Chemistry

Publication Link

https://ejchem.journals.ekb.eg/

MainTitle

Highly Efficient Chelating Polymers Based on Plastic Waste for Removal of Toxic Heavy Metal Pollutants

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Type

Article

Created At

22 Jan 2023