Research on flux decline in nanofiltration of lactic acid solutions with ZRIV/PAA membranes application

The efficiency of lactic acid solutions nanofiltration with dynamically formed zirconium (IV) hydrous oxide polyacrylate (ZrIV/PAA) membranes application were considered in this paper. The results of investigations on flux decline in nanofiltration of lactic acid solutions under conditions resulting...

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Main Author: Połom Ewa
Format: Article
Language:English
Published: Sciendo 2016-09-01
Series:Polish Journal of Chemical Technology
Subjects:
Online Access:https://doi.org/10.1515/pjct-2016-0043
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spelling doaj-7b6511329c54418f9615dc571b9b48132021-09-05T13:59:43ZengSciendoPolish Journal of Chemical Technology1899-47412016-09-01183172110.1515/pjct-2016-0043pjct-2016-0043Research on flux decline in nanofiltration of lactic acid solutions with ZRIV/PAA membranes applicationPołom Ewa0West Pomeranian University of Technology, Szczecin, Faculty of Chemical Technology and Engineering, Chemical Engineering and Environmental Protection Institute, al. Piastów 42, 71-065 Szczecin, PolandThe efficiency of lactic acid solutions nanofiltration with dynamically formed zirconium (IV) hydrous oxide polyacrylate (ZrIV/PAA) membranes application were considered in this paper. The results of investigations on flux decline in nanofiltration of lactic acid solutions under conditions resulting in low and high lactic acid rejection are reported. In the long term experimental research on pressure driven membrane processes the main reason of permeate flux reduction is an accumulation of concentration polarization and fouling effects. The experimental permeate flux versus time curves were analyzed in the frame of resistance-in-series model with the aim to develop the characteristic fouling and concentration polarization resistances. The analysis of experimental data and results of calculations showed that both: concentration polarization and fouling phenomena in investigated system depend on hydrodynamic conditions and properties of filtered solutions and (ZrIV/PAA) membrane.https://doi.org/10.1515/pjct-2016-0043nanofiltrationdynamically formed membraneslactic acidflux declineresistance in series model
collection DOAJ
language English
format Article
sources DOAJ
author Połom Ewa
spellingShingle Połom Ewa
Research on flux decline in nanofiltration of lactic acid solutions with ZRIV/PAA membranes application
Polish Journal of Chemical Technology
nanofiltration
dynamically formed membranes
lactic acid
flux decline
resistance in series model
author_facet Połom Ewa
author_sort Połom Ewa
title Research on flux decline in nanofiltration of lactic acid solutions with ZRIV/PAA membranes application
title_short Research on flux decline in nanofiltration of lactic acid solutions with ZRIV/PAA membranes application
title_full Research on flux decline in nanofiltration of lactic acid solutions with ZRIV/PAA membranes application
title_fullStr Research on flux decline in nanofiltration of lactic acid solutions with ZRIV/PAA membranes application
title_full_unstemmed Research on flux decline in nanofiltration of lactic acid solutions with ZRIV/PAA membranes application
title_sort research on flux decline in nanofiltration of lactic acid solutions with zriv/paa membranes application
publisher Sciendo
series Polish Journal of Chemical Technology
issn 1899-4741
publishDate 2016-09-01
description The efficiency of lactic acid solutions nanofiltration with dynamically formed zirconium (IV) hydrous oxide polyacrylate (ZrIV/PAA) membranes application were considered in this paper. The results of investigations on flux decline in nanofiltration of lactic acid solutions under conditions resulting in low and high lactic acid rejection are reported. In the long term experimental research on pressure driven membrane processes the main reason of permeate flux reduction is an accumulation of concentration polarization and fouling effects. The experimental permeate flux versus time curves were analyzed in the frame of resistance-in-series model with the aim to develop the characteristic fouling and concentration polarization resistances. The analysis of experimental data and results of calculations showed that both: concentration polarization and fouling phenomena in investigated system depend on hydrodynamic conditions and properties of filtered solutions and (ZrIV/PAA) membrane.
topic nanofiltration
dynamically formed membranes
lactic acid
flux decline
resistance in series model
url https://doi.org/10.1515/pjct-2016-0043
work_keys_str_mv AT połomewa researchonfluxdeclineinnanofiltrationoflacticacidsolutionswithzrivpaamembranesapplication
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