Ammonia and carbon dioxide regeneration from multicomponent solutions: II - Simulation and analysis of results

This study describes the simulation of the technological process of NH3 and CO2 regeneration from the multicomponent solution NH3-CO2-NaCl-NH4Cl, based on a developed mathematical model of the process. All the parameters of the technological process were obtained from the simulation, and they repres...

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Main Author: Jotanović Milovan B.
Format: Article
Language:English
Published: Association of Chemical Engineers of Serbia 2002-01-01
Series:Hemijska Industrija
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0367-598X/2002/0367-598X0210422J.pdf
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author Jotanović Milovan B.
author_facet Jotanović Milovan B.
author_sort Jotanović Milovan B.
collection DOAJ
description This study describes the simulation of the technological process of NH3 and CO2 regeneration from the multicomponent solution NH3-CO2-NaCl-NH4Cl, based on a developed mathematical model of the process. All the parameters of the technological process were obtained from the simulation, and they represent the mass flow rates as well as the physical and chemical properties (pressure, temperature,..) of all the flows shown on the process flowsheet. The calculation of numerous variations of the process also enabled the analysis and establishment for a relation between the crucial process variables and the steam and liquid phase supply. These relations are important for the absorption-desorption process of synthesis, operating process analysis and process control.
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spelling doaj.art-4e635a0a56fd4b6784b2f589a7c851302022-12-21T19:11:50ZengAssociation of Chemical Engineers of SerbiaHemijska Industrija0367-598X2002-01-01561042242810.2298/HEMIND0210422JAmmonia and carbon dioxide regeneration from multicomponent solutions: II - Simulation and analysis of resultsJotanović Milovan B.This study describes the simulation of the technological process of NH3 and CO2 regeneration from the multicomponent solution NH3-CO2-NaCl-NH4Cl, based on a developed mathematical model of the process. All the parameters of the technological process were obtained from the simulation, and they represent the mass flow rates as well as the physical and chemical properties (pressure, temperature,..) of all the flows shown on the process flowsheet. The calculation of numerous variations of the process also enabled the analysis and establishment for a relation between the crucial process variables and the steam and liquid phase supply. These relations are important for the absorption-desorption process of synthesis, operating process analysis and process control.http://www.doiserbia.nb.rs/img/doi/0367-598X/2002/0367-598X0210422J.pdfsoda ash productionammonia and carbon dioxide regenerationprocess simulationanalysis of simulation results
spellingShingle Jotanović Milovan B.
Ammonia and carbon dioxide regeneration from multicomponent solutions: II - Simulation and analysis of results
Hemijska Industrija
soda ash production
ammonia and carbon dioxide regeneration
process simulation
analysis of simulation results
title Ammonia and carbon dioxide regeneration from multicomponent solutions: II - Simulation and analysis of results
title_full Ammonia and carbon dioxide regeneration from multicomponent solutions: II - Simulation and analysis of results
title_fullStr Ammonia and carbon dioxide regeneration from multicomponent solutions: II - Simulation and analysis of results
title_full_unstemmed Ammonia and carbon dioxide regeneration from multicomponent solutions: II - Simulation and analysis of results
title_short Ammonia and carbon dioxide regeneration from multicomponent solutions: II - Simulation and analysis of results
title_sort ammonia and carbon dioxide regeneration from multicomponent solutions ii simulation and analysis of results
topic soda ash production
ammonia and carbon dioxide regeneration
process simulation
analysis of simulation results
url http://www.doiserbia.nb.rs/img/doi/0367-598X/2002/0367-598X0210422J.pdf
work_keys_str_mv AT jotanovicmilovanb ammoniaandcarbondioxideregenerationfrommulticomponentsolutionsiisimulationandanalysisofresults