Mathematical Modelling of Nitrate Removal from Water Using a Submerged Membrane Adsorption Hybrid System with Four Adsorbents
Excessive concentrations of nitrate in ground water are known to cause human health hazards. A submerged membrane adsorption hybrid system that includes a microfilter membrane and four different adsorbents (Dowex 21K XLT ion exchange resin (Dowex), Fe-coated Dowex, amine-grafted (AG) corn cob and AG...
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doaj-0662b720480149a495c3ebfdb8247bfa2020-11-25T01:28:28ZengMDPI AGApplied Sciences2076-34172018-01-018219410.3390/app8020194app8020194Mathematical Modelling of Nitrate Removal from Water Using a Submerged Membrane Adsorption Hybrid System with Four AdsorbentsMahatheva Kalaruban0Paripurnanda Loganathan1Wang Geun Shim2Jaya Kandasamy3Saravanamuthu Vigneswaran4Faculty of Engineering, University of Technology Sydney (UTS), P.O. Box 123, Broadway, NSW 2007, AustraliaFaculty of Engineering, University of Technology Sydney (UTS), P.O. Box 123, Broadway, NSW 2007, AustraliaDepartment of Polymer Science and Engineering, Sunchon National University, 255 Jungang-Ro, Suncheon-si, Jeollanam-do 57922, KoreaFaculty of Engineering, University of Technology Sydney (UTS), P.O. Box 123, Broadway, NSW 2007, AustraliaFaculty of Engineering, University of Technology Sydney (UTS), P.O. Box 123, Broadway, NSW 2007, AustraliaExcessive concentrations of nitrate in ground water are known to cause human health hazards. A submerged membrane adsorption hybrid system that includes a microfilter membrane and four different adsorbents (Dowex 21K XLT ion exchange resin (Dowex), Fe-coated Dowex, amine-grafted (AG) corn cob and AG coconut copra) operated at four different fluxes was used to continuously remove nitrate. The experimental data obtained in this study was simulated mathematically with a homogeneous surface diffusion model that incorporated membrane packing density and membrane correlation coefficient, and applied the concept of continuous flow stirred tank reactor. The model fit with experimental data was good. The surface diffusion coefficient was constant for all adsorbents and for all fluxes. The mass transfer coefficient increased with flux for all adsorbents and generally increased with the adsorption capacity of the adsorbents.http://www.mdpi.com/2076-3417/8/2/194nitrate in watersubmerged membrane adsorption hybrid systemadsorptionmodelling adsorptionion exchange resin |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Mahatheva Kalaruban Paripurnanda Loganathan Wang Geun Shim Jaya Kandasamy Saravanamuthu Vigneswaran |
spellingShingle |
Mahatheva Kalaruban Paripurnanda Loganathan Wang Geun Shim Jaya Kandasamy Saravanamuthu Vigneswaran Mathematical Modelling of Nitrate Removal from Water Using a Submerged Membrane Adsorption Hybrid System with Four Adsorbents Applied Sciences nitrate in water submerged membrane adsorption hybrid system adsorption modelling adsorption ion exchange resin |
author_facet |
Mahatheva Kalaruban Paripurnanda Loganathan Wang Geun Shim Jaya Kandasamy Saravanamuthu Vigneswaran |
author_sort |
Mahatheva Kalaruban |
title |
Mathematical Modelling of Nitrate Removal from Water Using a Submerged Membrane Adsorption Hybrid System with Four Adsorbents |
title_short |
Mathematical Modelling of Nitrate Removal from Water Using a Submerged Membrane Adsorption Hybrid System with Four Adsorbents |
title_full |
Mathematical Modelling of Nitrate Removal from Water Using a Submerged Membrane Adsorption Hybrid System with Four Adsorbents |
title_fullStr |
Mathematical Modelling of Nitrate Removal from Water Using a Submerged Membrane Adsorption Hybrid System with Four Adsorbents |
title_full_unstemmed |
Mathematical Modelling of Nitrate Removal from Water Using a Submerged Membrane Adsorption Hybrid System with Four Adsorbents |
title_sort |
mathematical modelling of nitrate removal from water using a submerged membrane adsorption hybrid system with four adsorbents |
publisher |
MDPI AG |
series |
Applied Sciences |
issn |
2076-3417 |
publishDate |
2018-01-01 |
description |
Excessive concentrations of nitrate in ground water are known to cause human health hazards. A submerged membrane adsorption hybrid system that includes a microfilter membrane and four different adsorbents (Dowex 21K XLT ion exchange resin (Dowex), Fe-coated Dowex, amine-grafted (AG) corn cob and AG coconut copra) operated at four different fluxes was used to continuously remove nitrate. The experimental data obtained in this study was simulated mathematically with a homogeneous surface diffusion model that incorporated membrane packing density and membrane correlation coefficient, and applied the concept of continuous flow stirred tank reactor. The model fit with experimental data was good. The surface diffusion coefficient was constant for all adsorbents and for all fluxes. The mass transfer coefficient increased with flux for all adsorbents and generally increased with the adsorption capacity of the adsorbents. |
topic |
nitrate in water submerged membrane adsorption hybrid system adsorption modelling adsorption ion exchange resin |
url |
http://www.mdpi.com/2076-3417/8/2/194 |
work_keys_str_mv |
AT mahathevakalaruban mathematicalmodellingofnitrateremovalfromwaterusingasubmergedmembraneadsorptionhybridsystemwithfouradsorbents AT paripurnandaloganathan mathematicalmodellingofnitrateremovalfromwaterusingasubmergedmembraneadsorptionhybridsystemwithfouradsorbents AT wanggeunshim mathematicalmodellingofnitrateremovalfromwaterusingasubmergedmembraneadsorptionhybridsystemwithfouradsorbents AT jayakandasamy mathematicalmodellingofnitrateremovalfromwaterusingasubmergedmembraneadsorptionhybridsystemwithfouradsorbents AT saravanamuthuvigneswaran mathematicalmodellingofnitrateremovalfromwaterusingasubmergedmembraneadsorptionhybridsystemwithfouradsorbents |
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1725101466329284608 |