Removal of Pb(II) Ions from Contaminated Water by Polymer-Supported Ultrafiltration

Through the ultrafiltration of water containing Pb(II) ions and poly(ethyleneimine) as an example, it was possible to determine the Pb(II) ion retention coefficients by UPM-20 membranes and the corresponding transmembrane fluxes. The optimal parameters, i.e. pH and concentration ratio C Pb(II) /C PE...

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Main Authors: L.Yu. Yurlova, A.P. Kryvoruchko
Format: Article
Language:English
Published: SAGE Publishing 2004-08-01
Series:Adsorption Science & Technology
Online Access:https://doi.org/10.1260/0263617042879474
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author L.Yu. Yurlova
A.P. Kryvoruchko
author_facet L.Yu. Yurlova
A.P. Kryvoruchko
author_sort L.Yu. Yurlova
collection DOAJ
description Through the ultrafiltration of water containing Pb(II) ions and poly(ethyleneimine) as an example, it was possible to determine the Pb(II) ion retention coefficients by UPM-20 membranes and the corresponding transmembrane fluxes. The optimal parameters, i.e. pH and concentration ratio C Pb(II) /C PEI , necessary to remove Pb(II) ions from aqueous media using a complexation/ultrafiltration technique (polymer-supported ultrafiltration) were also determined. The state of water in the membranes and its quantity were found using differential scanning calorimetric methods. On the basis of investigations by the method of differential scanning calorimetry, it was possible to assume that the layers of Pb(II)-poly(ethyleneimine) complexes and Pb(II) hydroxo complexes were situated either on the membrane surface or in its pores. In addition, a relationship was established between the transmembrane transfer of Pb(II) ions and the amount of free and bound water in the membrane under investigation.
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series Adsorption Science & Technology
spelling doaj-art-d0bad188e0bb429f9b0a607b71b8c7fe2025-01-02T22:37:24ZengSAGE PublishingAdsorption Science & Technology0263-61742048-40382004-08-012210.1260/0263617042879474Removal of Pb(II) Ions from Contaminated Water by Polymer-Supported UltrafiltrationL.Yu. YurlovaA.P. KryvoruchkoThrough the ultrafiltration of water containing Pb(II) ions and poly(ethyleneimine) as an example, it was possible to determine the Pb(II) ion retention coefficients by UPM-20 membranes and the corresponding transmembrane fluxes. The optimal parameters, i.e. pH and concentration ratio C Pb(II) /C PEI , necessary to remove Pb(II) ions from aqueous media using a complexation/ultrafiltration technique (polymer-supported ultrafiltration) were also determined. The state of water in the membranes and its quantity were found using differential scanning calorimetric methods. On the basis of investigations by the method of differential scanning calorimetry, it was possible to assume that the layers of Pb(II)-poly(ethyleneimine) complexes and Pb(II) hydroxo complexes were situated either on the membrane surface or in its pores. In addition, a relationship was established between the transmembrane transfer of Pb(II) ions and the amount of free and bound water in the membrane under investigation.https://doi.org/10.1260/0263617042879474
spellingShingle L.Yu. Yurlova
A.P. Kryvoruchko
Removal of Pb(II) Ions from Contaminated Water by Polymer-Supported Ultrafiltration
Adsorption Science & Technology
title Removal of Pb(II) Ions from Contaminated Water by Polymer-Supported Ultrafiltration
title_full Removal of Pb(II) Ions from Contaminated Water by Polymer-Supported Ultrafiltration
title_fullStr Removal of Pb(II) Ions from Contaminated Water by Polymer-Supported Ultrafiltration
title_full_unstemmed Removal of Pb(II) Ions from Contaminated Water by Polymer-Supported Ultrafiltration
title_short Removal of Pb(II) Ions from Contaminated Water by Polymer-Supported Ultrafiltration
title_sort removal of pb ii ions from contaminated water by polymer supported ultrafiltration
url https://doi.org/10.1260/0263617042879474
work_keys_str_mv AT lyuyurlova removalofpbiiionsfromcontaminatedwaterbypolymersupportedultrafiltration
AT apkryvoruchko removalofpbiiionsfromcontaminatedwaterbypolymersupportedultrafiltration