<strong>Modeling and gPROMS based simulation of adsorption process for the removal of Cu (II) from aqueous wastewater</strong>
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Authentication Code |
dc |
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Title Statement |
<strong>Modeling and gPROMS based simulation of adsorption process for the removal of Cu (II) from aqueous wastewater</strong> |
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Added Entry - Uncontrolled Name |
Urgunde, Ajay B; 1. Chemical Engineering Department Pravara Rural Engineering College, Loni -413736 (MS), India
2. Department of Chemistry, Indian Institute of Technology, Jodhpur -342037 (RJ), India Gaikwad, Ravindra W; Chemical Engineering Department Pravara Rural Engineering College, Loni -413736 (MS), India Hakke, Vikas S; Chemical Engineering Department National Institute of Technology Warangal -506004 (TS), India Sonawane, Shirish H; Chemical Engineering Department National Institute of Technology Warangal -506004 (TS), India Warade, Annasaheb R; Chemical Engineering Department Pravara Rural Engineering College, Loni -413736 (MS), India |
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Uncontrolled Index Term |
Adsorption; Breakthrough curve; gPROM; Modeling; Simulations |
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Summary, etc. |
<span>The present work studies the performance of Indion 730 (Strong acid) ion exchange resin for the removal of Cu (II). The modeling and gPROMS based simulation is used to study the sorption capacity, equilibrium, and performances of Indion 730 ion exchange resin. The extraction effectiveness of the resin is studied by using breakthrough curves. The experimental and simulation results were compared. A numerical model is proposed for the investigation of the ion exchange phenomenon using gPROMS using various optimized parameters like flow rate, bed height, and initial concentration of wastewater containing Cu (II) heavy metal ion in the column. For instance, the effects of flow rate, bed height, and inlet concentration of heavy metal on a breakthrough curve are investigated in depth. The results illustrate that the predicted theoretical breakthrough curves show analogous patterns with the corresponding investigational output with a discrepancy of the equilibrium time. The predictions of the model will help to discover the optimal conditions of operation.</span><br /> |
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Publication, Distribution, Etc. |
Indian Journal of Chemical Technology (IJCT) 2022-07-12 00:00:00 |
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Electronic Location and Access |
application/pdf http://op.niscair.res.in/index.php/IJCT/article/view/48978 |
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Data Source Entry |
Indian Journal of Chemical Technology (IJCT); ##issue.vol## 29, ##issue.no## 1 (2022): Indian Journal of Chemical Technology |
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Language Note |
en |
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