Technological model of water contact iron removal

Different types of filters are used to remove iron from underground water, one of them is foam polystyrene. Depending on the chemical water composition, tasks for water supply and other working conditions of iron-removing filters, it is necessary to define an exact grain size, specific granulometric...

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Main Authors: Martynov Serhii, Fylypchuk Victor, Zoshchuk Vitalii, Kunytskyi Serhii, Safonyk Andrii, Pinchuk Oleg
Format: Article
Language:English
Published: Sciendo 2018-12-01
Series:Journal of Water and Land Development
Subjects:
Online Access:http://www.degruyter.com/view/j/jwld.2018.39.issue-1/jwld-2018-0063/jwld-2018-0063.xml?format=INT
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spelling doaj-3acd71f1a6704bc8aa30e7042d2d866f2020-11-24T23:04:37ZengSciendoJournal of Water and Land Development2083-45352018-12-01391939910.2478/jwld-2018-0063jwld-2018-0063Technological model of water contact iron removalMartynov Serhii0Fylypchuk Victor1Zoshchuk Vitalii2Kunytskyi Serhii3Safonyk Andrii4Pinchuk Oleg5National University of Water and Environmental Engineering, Department of Water Supply, Water Disposal and Drilling Engineering, UkraineNational University of Water and Environmental Engineering, Department of Labour Security, Health and Safety, UkraineNational University of Water and Environmental Engineering, Department of Labour Security, Health and Safety, UkraineNational University of Water and Environmental Engineering, Department of Science and Research, UkraineNational University of Water and Environmental Engineering, Department of Automation, Electrical and Computer-Integrated Technologies, UkraineNational University of Water and Environmental Engineering, Department of Hydroinformatics, 11 Soborna St., Rivne, 33028, UkraineDifferent types of filters are used to remove iron from underground water, one of them is foam polystyrene. Depending on the chemical water composition, tasks for water supply and other working conditions of iron-removing filters, it is necessary to define an exact grain size, specific granulometric composition, the thickness of the layer and the adequate rate of filtration. This kind of problems is multifactorial and its solution is based on the mathematical modelling.http://www.degruyter.com/view/j/jwld.2018.39.issue-1/jwld-2018-0063/jwld-2018-0063.xml?format=INTfoam polystyrene filteriron removalmathematical modelunderground waterwater treatment technology
collection DOAJ
language English
format Article
sources DOAJ
author Martynov Serhii
Fylypchuk Victor
Zoshchuk Vitalii
Kunytskyi Serhii
Safonyk Andrii
Pinchuk Oleg
spellingShingle Martynov Serhii
Fylypchuk Victor
Zoshchuk Vitalii
Kunytskyi Serhii
Safonyk Andrii
Pinchuk Oleg
Technological model of water contact iron removal
Journal of Water and Land Development
foam polystyrene filter
iron removal
mathematical model
underground water
water treatment technology
author_facet Martynov Serhii
Fylypchuk Victor
Zoshchuk Vitalii
Kunytskyi Serhii
Safonyk Andrii
Pinchuk Oleg
author_sort Martynov Serhii
title Technological model of water contact iron removal
title_short Technological model of water contact iron removal
title_full Technological model of water contact iron removal
title_fullStr Technological model of water contact iron removal
title_full_unstemmed Technological model of water contact iron removal
title_sort technological model of water contact iron removal
publisher Sciendo
series Journal of Water and Land Development
issn 2083-4535
publishDate 2018-12-01
description Different types of filters are used to remove iron from underground water, one of them is foam polystyrene. Depending on the chemical water composition, tasks for water supply and other working conditions of iron-removing filters, it is necessary to define an exact grain size, specific granulometric composition, the thickness of the layer and the adequate rate of filtration. This kind of problems is multifactorial and its solution is based on the mathematical modelling.
topic foam polystyrene filter
iron removal
mathematical model
underground water
water treatment technology
url http://www.degruyter.com/view/j/jwld.2018.39.issue-1/jwld-2018-0063/jwld-2018-0063.xml?format=INT
work_keys_str_mv AT martynovserhii technologicalmodelofwatercontactironremoval
AT fylypchukvictor technologicalmodelofwatercontactironremoval
AT zoshchukvitalii technologicalmodelofwatercontactironremoval
AT kunytskyiserhii technologicalmodelofwatercontactironremoval
AT safonykandrii technologicalmodelofwatercontactironremoval
AT pinchukoleg technologicalmodelofwatercontactironremoval
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