Isotope effects of neodymium in different ligands exchange systems studied by ion exchange displacement chromatography

The isotope effects of neodymium in Nd-glycolate ligand exchange system were studied by using ion exchange chromatography. The separation coefficients of neodymium isotopes, ε’s, were calculated from the observed isotopic ratios at the front and rear boundaries of the neodymium adsorption band. The...

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Main Authors: Ibrahim Ismail, Ahmed S. Fawzy, Mohammad I. Ahmad, Hisham F. Aly, Masao Nomura, Yasuhiko Fujii
Format: Article
Language:English
Published: Elsevier 2013-03-01
Series:Journal of Advanced Research
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2090123212000252
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spelling doaj-bb348e94534c4388bfda79a43e48fa2b2020-11-25T01:09:25ZengElsevierJournal of Advanced Research2090-12322090-12242013-03-014212913510.1016/j.jare.2012.03.003Isotope effects of neodymium in different ligands exchange systems studied by ion exchange displacement chromatographyIbrahim Ismail0Ahmed S. Fawzy1Mohammad I. Ahmad2Hisham F. Aly3Masao Nomura4Yasuhiko Fujii5Chemical Engineering Department, Cairo University, Giza, EgyptChemical Engineering Department, Cairo University, Giza, EgyptEgyptian Atomic Energy Authority, Cairo, EgyptEgyptian Atomic Energy Authority, Cairo, EgyptResearch Laboratory for Nuclear Reactors, Tokyo Institute of Technology, Tokyo, JapanResearch Laboratory for Nuclear Reactors, Tokyo Institute of Technology, Tokyo, Japan The isotope effects of neodymium in Nd-glycolate ligand exchange system were studied by using ion exchange chromatography. The separation coefficients of neodymium isotopes, ε’s, were calculated from the observed isotopic ratios at the front and rear boundaries of the neodymium adsorption band. The values of separation coefficients of neodymium isotopes, ε’s, for the Nd-glycolate ligand exchange system were compared with those of Nd-malate and Nd-citrate, which indicated that the isotope effects of neodymium as studied by the three ligands takes the following direction Malate > Citrate > Glycolate. This order agrees with the number of available sites for complexation of each ligand. The values of the plate height, HETP of Nd in Nd-ligand exchange systems were also calculated. http://www.sciencedirect.com/science/article/pii/S2090123212000252Neodymium isotopesIon exchangeChromatographySeparationIsotope effects
collection DOAJ
language English
format Article
sources DOAJ
author Ibrahim Ismail
Ahmed S. Fawzy
Mohammad I. Ahmad
Hisham F. Aly
Masao Nomura
Yasuhiko Fujii
spellingShingle Ibrahim Ismail
Ahmed S. Fawzy
Mohammad I. Ahmad
Hisham F. Aly
Masao Nomura
Yasuhiko Fujii
Isotope effects of neodymium in different ligands exchange systems studied by ion exchange displacement chromatography
Journal of Advanced Research
Neodymium isotopes
Ion exchange
Chromatography
Separation
Isotope effects
author_facet Ibrahim Ismail
Ahmed S. Fawzy
Mohammad I. Ahmad
Hisham F. Aly
Masao Nomura
Yasuhiko Fujii
author_sort Ibrahim Ismail
title Isotope effects of neodymium in different ligands exchange systems studied by ion exchange displacement chromatography
title_short Isotope effects of neodymium in different ligands exchange systems studied by ion exchange displacement chromatography
title_full Isotope effects of neodymium in different ligands exchange systems studied by ion exchange displacement chromatography
title_fullStr Isotope effects of neodymium in different ligands exchange systems studied by ion exchange displacement chromatography
title_full_unstemmed Isotope effects of neodymium in different ligands exchange systems studied by ion exchange displacement chromatography
title_sort isotope effects of neodymium in different ligands exchange systems studied by ion exchange displacement chromatography
publisher Elsevier
series Journal of Advanced Research
issn 2090-1232
2090-1224
publishDate 2013-03-01
description The isotope effects of neodymium in Nd-glycolate ligand exchange system were studied by using ion exchange chromatography. The separation coefficients of neodymium isotopes, ε’s, were calculated from the observed isotopic ratios at the front and rear boundaries of the neodymium adsorption band. The values of separation coefficients of neodymium isotopes, ε’s, for the Nd-glycolate ligand exchange system were compared with those of Nd-malate and Nd-citrate, which indicated that the isotope effects of neodymium as studied by the three ligands takes the following direction Malate > Citrate > Glycolate. This order agrees with the number of available sites for complexation of each ligand. The values of the plate height, HETP of Nd in Nd-ligand exchange systems were also calculated.
topic Neodymium isotopes
Ion exchange
Chromatography
Separation
Isotope effects
url http://www.sciencedirect.com/science/article/pii/S2090123212000252
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