Effect of operating parameters on the selectivity of nanofiltration phosphates transfer through a Nanomax-50 membrane

The present study deals with the retention by nanofiltration of synthetic solutions containing phosphate salts with a Nanomax-50 charged membrane. This work investigates the potential of the membrane for the selective retention of the phosphate anions H2PO4- and HPO42-. The first part of the study i...

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Main Authors: Abdenabi Abidi, Noureddine Gherraf, Segni Ladjel, Murielle Rabiller-Baudry, Tidjani Bouchami
Format: Article
Language:English
Published: Elsevier 2016-09-01
Series:Arabian Journal of Chemistry
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1878535211001195
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spelling doaj-c7f8f1227bf84f3e89a6af0331731cad2020-11-24T21:51:54ZengElsevierArabian Journal of Chemistry1878-53522016-09-019S1S334S34110.1016/j.arabjc.2011.04.014Effect of operating parameters on the selectivity of nanofiltration phosphates transfer through a Nanomax-50 membraneAbdenabi Abidi0Noureddine Gherraf1Segni Ladjel2Murielle Rabiller-Baudry3Tidjani Bouchami4Département Génie des Procédés, Université Badji Mokhtar, Annaba 23000, AlgeriaDépartement Génie des Procédés, Université larbi ben Mhidi, Oum Elbouaghi, AlgeriaDépartement Génie des Procédés, Université Kasdi Merbah Ouargla, AlgeriaUniversité Rennes1, Sciences Chimiques de Rennes, UMR 6226, CNRS, ENSCR, FranceDépartement Génie des Procédés, Université Badji Mokhtar, Annaba 23000, AlgeriaThe present study deals with the retention by nanofiltration of synthetic solutions containing phosphate salts with a Nanomax-50 charged membrane. This work investigates the potential of the membrane for the selective retention of the phosphate anions H2PO4- and HPO42-. The first part of the study involves the characterization of the membrane used in filtration tests with aqueous solutions of neutral solutes (organic) and charged solutes (inorganic salts). In the second part, the effects of pressure, ionic strength and pH on the retention of phosphate anions are described. The results showed that the membrane is negatively charged at pH > 5 with a pore radius of about 0.45 nm and a hydraulic permeability around 24.6 10−12 m s−1 Pa−1. The values of the rejection rate of the phosphate anions are about 93% for HPO4- and 98% for HPO42-. The rejection rate of phosphate anions, particularly monovalent, depends on chemical parameters (feed concentrations, ionic strength and pH) and on transmembrane pressure. The experimental results were analyzed by the Spiegler–Kedem model and the transport parameters of phosphate anions: the reflection coefficient σ and solute permeability Ps were determined.http://www.sciencedirect.com/science/article/pii/S1878535211001195NanofiltrationCharged membraneNanomax-50Phosphate salts
collection DOAJ
language English
format Article
sources DOAJ
author Abdenabi Abidi
Noureddine Gherraf
Segni Ladjel
Murielle Rabiller-Baudry
Tidjani Bouchami
spellingShingle Abdenabi Abidi
Noureddine Gherraf
Segni Ladjel
Murielle Rabiller-Baudry
Tidjani Bouchami
Effect of operating parameters on the selectivity of nanofiltration phosphates transfer through a Nanomax-50 membrane
Arabian Journal of Chemistry
Nanofiltration
Charged membrane
Nanomax-50
Phosphate salts
author_facet Abdenabi Abidi
Noureddine Gherraf
Segni Ladjel
Murielle Rabiller-Baudry
Tidjani Bouchami
author_sort Abdenabi Abidi
title Effect of operating parameters on the selectivity of nanofiltration phosphates transfer through a Nanomax-50 membrane
title_short Effect of operating parameters on the selectivity of nanofiltration phosphates transfer through a Nanomax-50 membrane
title_full Effect of operating parameters on the selectivity of nanofiltration phosphates transfer through a Nanomax-50 membrane
title_fullStr Effect of operating parameters on the selectivity of nanofiltration phosphates transfer through a Nanomax-50 membrane
title_full_unstemmed Effect of operating parameters on the selectivity of nanofiltration phosphates transfer through a Nanomax-50 membrane
title_sort effect of operating parameters on the selectivity of nanofiltration phosphates transfer through a nanomax-50 membrane
publisher Elsevier
series Arabian Journal of Chemistry
issn 1878-5352
publishDate 2016-09-01
description The present study deals with the retention by nanofiltration of synthetic solutions containing phosphate salts with a Nanomax-50 charged membrane. This work investigates the potential of the membrane for the selective retention of the phosphate anions H2PO4- and HPO42-. The first part of the study involves the characterization of the membrane used in filtration tests with aqueous solutions of neutral solutes (organic) and charged solutes (inorganic salts). In the second part, the effects of pressure, ionic strength and pH on the retention of phosphate anions are described. The results showed that the membrane is negatively charged at pH > 5 with a pore radius of about 0.45 nm and a hydraulic permeability around 24.6 10−12 m s−1 Pa−1. The values of the rejection rate of the phosphate anions are about 93% for HPO4- and 98% for HPO42-. The rejection rate of phosphate anions, particularly monovalent, depends on chemical parameters (feed concentrations, ionic strength and pH) and on transmembrane pressure. The experimental results were analyzed by the Spiegler–Kedem model and the transport parameters of phosphate anions: the reflection coefficient σ and solute permeability Ps were determined.
topic Nanofiltration
Charged membrane
Nanomax-50
Phosphate salts
url http://www.sciencedirect.com/science/article/pii/S1878535211001195
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