Measurement and Modeling of Mean Ionic Activity Coefficient in Aqueous Solution Containing NaNO3 and Poly Ethylene Glycol
Potentiometric investigation on {H2O+NaNO3+PEG1500} mixtures were made at T=308.15K, using electrochemical cells with two ion-selective electrodes, (Na+ glass) as the cation ion-selective electrode against (NO3- solvent-polymer PVC) as the anion ion-selective electrode. The mean ionic activity coeff...
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Iranian Institute of Research and Development in Chemical Industries (IRDCI)-ACECR
2013-06-01
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doaj-e82ed7a04117446493cf0b7d3a9522262020-11-25T03:40:33ZengIranian Institute of Research and Development in Chemical Industries (IRDCI)-ACECRIranian Journal of Chemistry & Chemical Engineering 1021-99861021-99862013-06-0132231395865Measurement and Modeling of Mean Ionic Activity Coefficient in Aqueous Solution Containing NaNO3 and Poly Ethylene GlycolSiamak Modarresi0Mohammad Reza Dehghani1Parinaz Alimardani2Sara Kazemi Sabzvar3Farzaneh Feyzi4Chemical Engineering Department, Iran University of Science and Technology, Tehran, I.R. IRANChemical Engineering Department, Iran University of Science and Technology, Tehran, I.R. IRANChemical Engineering Department, Iran University of Science and Technology, Tehran, I.R. IRANChemical Engineering Department, Iran University of Science and Technology, Tehran, I.R. IRANChemical Engineering Department, Iran University of Science and Technology, Tehran, I.R. IRANPotentiometric investigation on {H2O+NaNO3+PEG1500} mixtures were made at T=308.15K, using electrochemical cells with two ion-selective electrodes, (Na+ glass) as the cation ion-selective electrode against (NO3- solvent-polymer PVC) as the anion ion-selective electrode. The mean ionic activity coefficients of NaNO3 were measured at different concentrations of NaNO3 and PEG. Maximum concentration of electrolyte and PEG were 1 mol/kg and 0.12 mol/kg, respectively. The experimental data was modeled by utilizing the modified Pitzer equation and the activity coefficient ratio of PEG was evaluated by using Maxwell’s cross differential relation.http://www.ijcce.ac.ir/article_5865_e2fbb73d0a550f376e0950dabf913a1f.pdfactivity coefficientpolymerelectrolyte solutionion-selective electrode |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Siamak Modarresi Mohammad Reza Dehghani Parinaz Alimardani Sara Kazemi Sabzvar Farzaneh Feyzi |
spellingShingle |
Siamak Modarresi Mohammad Reza Dehghani Parinaz Alimardani Sara Kazemi Sabzvar Farzaneh Feyzi Measurement and Modeling of Mean Ionic Activity Coefficient in Aqueous Solution Containing NaNO3 and Poly Ethylene Glycol Iranian Journal of Chemistry & Chemical Engineering activity coefficient polymer electrolyte solution ion-selective electrode |
author_facet |
Siamak Modarresi Mohammad Reza Dehghani Parinaz Alimardani Sara Kazemi Sabzvar Farzaneh Feyzi |
author_sort |
Siamak Modarresi |
title |
Measurement and Modeling of Mean Ionic Activity Coefficient in Aqueous Solution Containing NaNO3 and Poly Ethylene Glycol |
title_short |
Measurement and Modeling of Mean Ionic Activity Coefficient in Aqueous Solution Containing NaNO3 and Poly Ethylene Glycol |
title_full |
Measurement and Modeling of Mean Ionic Activity Coefficient in Aqueous Solution Containing NaNO3 and Poly Ethylene Glycol |
title_fullStr |
Measurement and Modeling of Mean Ionic Activity Coefficient in Aqueous Solution Containing NaNO3 and Poly Ethylene Glycol |
title_full_unstemmed |
Measurement and Modeling of Mean Ionic Activity Coefficient in Aqueous Solution Containing NaNO3 and Poly Ethylene Glycol |
title_sort |
measurement and modeling of mean ionic activity coefficient in aqueous solution containing nano3 and poly ethylene glycol |
publisher |
Iranian Institute of Research and Development in Chemical Industries (IRDCI)-ACECR |
series |
Iranian Journal of Chemistry & Chemical Engineering |
issn |
1021-9986 1021-9986 |
publishDate |
2013-06-01 |
description |
Potentiometric investigation on {H2O+NaNO3+PEG1500} mixtures were made at T=308.15K, using electrochemical cells with two ion-selective electrodes, (Na+ glass) as the cation ion-selective electrode against (NO3- solvent-polymer PVC) as the anion ion-selective electrode. The mean ionic activity coefficients of NaNO3 were measured at different concentrations of NaNO3 and PEG. Maximum concentration of electrolyte and PEG were 1 mol/kg and 0.12 mol/kg, respectively. The experimental data was modeled by utilizing the modified Pitzer equation and the activity coefficient ratio of PEG was evaluated by using Maxwell’s cross differential relation. |
topic |
activity coefficient polymer electrolyte solution ion-selective electrode |
url |
http://www.ijcce.ac.ir/article_5865_e2fbb73d0a550f376e0950dabf913a1f.pdf |
work_keys_str_mv |
AT siamakmodarresi measurementandmodelingofmeanionicactivitycoefficientinaqueoussolutioncontainingnano3andpolyethyleneglycol AT mohammadrezadehghani measurementandmodelingofmeanionicactivitycoefficientinaqueoussolutioncontainingnano3andpolyethyleneglycol AT parinazalimardani measurementandmodelingofmeanionicactivitycoefficientinaqueoussolutioncontainingnano3andpolyethyleneglycol AT sarakazemisabzvar measurementandmodelingofmeanionicactivitycoefficientinaqueoussolutioncontainingnano3andpolyethyleneglycol AT farzanehfeyzi measurementandmodelingofmeanionicactivitycoefficientinaqueoussolutioncontainingnano3andpolyethyleneglycol |
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1724534082823520256 |