Modern Trends in the Mathematical Simulation of Pressure-Driven Membrane Processes

The presented article is an attempt to evaluate the progress in the development of the mathematical simulation of the pressure-driven membrane processes. It was considered more than 170 articles devoted to the simulation of reverse osmosis, nanofiltration, ultrafiltration, and microfiltration and th...

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Main Authors: Huliienko S. V., Korniienko Y. M., Gatilov K. O.
Format: Article
Language:English
Published: Sumy State University 2020-04-01
Series:Журнал інженерних наук
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Online Access:http://jes.sumdu.edu.ua/wp-content/uploads/2020/04/jes_7_1_2020_F1-F21.pdf
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author Huliienko S. V.
Korniienko Y. M.
Gatilov K. O.
author_facet Huliienko S. V.
Korniienko Y. M.
Gatilov K. O.
author_sort Huliienko S. V.
collection DOAJ
description The presented article is an attempt to evaluate the progress in the development of the mathematical simulation of the pressure-driven membrane processes. It was considered more than 170 articles devoted to the simulation of reverse osmosis, nanofiltration, ultrafiltration, and microfiltration and the others published between 2000 and 2010 years. Besides the conventional approaches, which include the irreversible thermodynamics, diffusion and pore flow (and models which consider the membrane surface charge for nanofiltration process), the application of the methods the computational fluid dynamics, artificial neural networks, optimization, and economic analysis have been considered. The main trends in this field have been pointed out, and the areas of using approaches under consideration have been determined. The technological problems which have been solved using the mentioned approaches have also been considered. Although the question of the concentration polarization has not been considered separately, it was defined that, in many cases, the sufficiently accurate model cannot be designed without considering this phenomenon. The findings allow evaluating more thoroughly the development of the simulation of pressure-driven membrane processes. Moreover, the review allows choosing the strategy of the simulation of the considered processes.
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issn 2312-2498
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publishDate 2020-04-01
publisher Sumy State University
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series Журнал інженерних наук
spelling doaj-art-7c683d1a2db8497d882ee43cb4af47dd2025-08-20T03:16:45ZengSumy State UniversityЖурнал інженерних наук2312-24982414-93812020-04-0171F1F2110.21272/jes.2020.7(1).f1Modern Trends in the Mathematical Simulation of Pressure-Driven Membrane ProcessesHuliienko S. V.0Korniienko Y. M.1Gatilov K. O.2National Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute”, 37 Peremohy Ave., 03056, Kyiv, UkraineNational Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute”, 37 Peremohy Ave., 03056, Kyiv, UkraineArcher Daniels Midland Company ADM Europoort B.V., 125, Elbeweg, 3198 LC, Rotterdam, NetherlandsThe presented article is an attempt to evaluate the progress in the development of the mathematical simulation of the pressure-driven membrane processes. It was considered more than 170 articles devoted to the simulation of reverse osmosis, nanofiltration, ultrafiltration, and microfiltration and the others published between 2000 and 2010 years. Besides the conventional approaches, which include the irreversible thermodynamics, diffusion and pore flow (and models which consider the membrane surface charge for nanofiltration process), the application of the methods the computational fluid dynamics, artificial neural networks, optimization, and economic analysis have been considered. The main trends in this field have been pointed out, and the areas of using approaches under consideration have been determined. The technological problems which have been solved using the mentioned approaches have also been considered. Although the question of the concentration polarization has not been considered separately, it was defined that, in many cases, the sufficiently accurate model cannot be designed without considering this phenomenon. The findings allow evaluating more thoroughly the development of the simulation of pressure-driven membrane processes. Moreover, the review allows choosing the strategy of the simulation of the considered processes.http://jes.sumdu.edu.ua/wp-content/uploads/2020/04/jes_7_1_2020_F1-F21.pdfmembranesimulationmodelreverse osmosis nanofiltrationultrafiltrationmicrofiltration
spellingShingle Huliienko S. V.
Korniienko Y. M.
Gatilov K. O.
Modern Trends in the Mathematical Simulation of Pressure-Driven Membrane Processes
Журнал інженерних наук
membrane
simulation
model
reverse osmosis nanofiltration
ultrafiltration
microfiltration
title Modern Trends in the Mathematical Simulation of Pressure-Driven Membrane Processes
title_full Modern Trends in the Mathematical Simulation of Pressure-Driven Membrane Processes
title_fullStr Modern Trends in the Mathematical Simulation of Pressure-Driven Membrane Processes
title_full_unstemmed Modern Trends in the Mathematical Simulation of Pressure-Driven Membrane Processes
title_short Modern Trends in the Mathematical Simulation of Pressure-Driven Membrane Processes
title_sort modern trends in the mathematical simulation of pressure driven membrane processes
topic membrane
simulation
model
reverse osmosis nanofiltration
ultrafiltration
microfiltration
url http://jes.sumdu.edu.ua/wp-content/uploads/2020/04/jes_7_1_2020_F1-F21.pdf
work_keys_str_mv AT huliienkosv moderntrendsinthemathematicalsimulationofpressuredrivenmembraneprocesses
AT korniienkoym moderntrendsinthemathematicalsimulationofpressuredrivenmembraneprocesses
AT gatilovko moderntrendsinthemathematicalsimulationofpressuredrivenmembraneprocesses