Removal of Pb2+ and Cd2+ by adsorption onto Y zeolite and its selectivity of retention in an actual contaminated effluent

The most important natural resource for human health and well-being is water, which can be affected by different sources, such as physical, organic, chemical, and microbiological ones. CBV 760 commercial zeolite was used and tested to remove inorganic pollutants, lead, and cadmium. Adsorption isothe...

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Veröffentlicht in:Colloid and polymer science 2023-06, Vol.301 (6), p.631-645
Hauptverfasser: Hamoudi, Souhila Ait, Khelifa, Nedjma, Nouri, Loubna, Hemidouche, Sabra, Boudjemaa, Amel, Boucheffa, Youcef
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container_title Colloid and polymer science
container_volume 301
creator Hamoudi, Souhila Ait
Khelifa, Nedjma
Nouri, Loubna
Hemidouche, Sabra
Boudjemaa, Amel
Boucheffa, Youcef
description The most important natural resource for human health and well-being is water, which can be affected by different sources, such as physical, organic, chemical, and microbiological ones. CBV 760 commercial zeolite was used and tested to remove inorganic pollutants, lead, and cadmium. Adsorption isotherms were used to assess the adsorption properties of contaminants and real effluent. At the solution pH (4.5 and 5), adsorption kinetics and isotherms were conducted for lead and cadmium, respectively. The investigated zeolite was quite efficient in lead and cadmium removal, as the maximal adsorbed amounts were Q a  = 175 and 148 mg g −1 for lead and cadmium, respectively, at T  = 308 K. Adsorption capacity is pH dependent. Adsorption of Pb 2+ and Cd 2+ is highest at pH 8 ( Q a  = 107 and 53.58 mg g −1 , respectively). The CBV 760 displays more affinity for Pb 2+ than Cd 2+ . It is worth noticing that CBV 760 exhibits good selectivity for heavy metal retention metals, namely, Ni 2+ , Cu 2+ , Cd 2+ , and Pb 2+ , in an actual contaminated effluent with a removal yield of 80% on CBV 760.
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subjects Adsorption
Cadmium
Characterization and Evaluation of Materials
Chemistry
Chemistry and Materials Science
Complex Fluids and Microfluidics
Contaminants
Effluents
Food Science
Heavy metals
Isotherms
Lead
Nanotechnology and Microengineering
Natural resources
Original Contribution
Physical Chemistry
Polymer Sciences
Soft and Granular Matter
Zeolites
title Removal of Pb2+ and Cd2+ by adsorption onto Y zeolite and its selectivity of retention in an actual contaminated effluent
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