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Investigation of Different Pre-Treatment Techniques and 3D Printed Turbulence Promoter to Mitigate Membrane Fouling in Dairy Wastewater Module

This study investigates the enhancement of dairy wastewater treatment using chemical and physical pre-treatments coupled with membrane separation techniques to reduce membrane fouling. Two mathematical models, namely the Hermia and resistance-in-series module, were utilized to comprehend the mechani...

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Autores principales: Kertész, Szabolcs, Al-Tayawi, Aws N., Gergely, Gréta, Ott, Bence, Gulyás, Nikolett Sz., Jákói, Zoltán, Beszédes, Sándor, Hodúr, Cecilia, Szabó, Tamás, László, Zsuzsanna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10146657/
https://www.ncbi.nlm.nih.gov/pubmed/37109952
http://dx.doi.org/10.3390/ma16083117
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author Kertész, Szabolcs
Al-Tayawi, Aws N.
Gergely, Gréta
Ott, Bence
Gulyás, Nikolett Sz.
Jákói, Zoltán
Beszédes, Sándor
Hodúr, Cecilia
Szabó, Tamás
László, Zsuzsanna
author_facet Kertész, Szabolcs
Al-Tayawi, Aws N.
Gergely, Gréta
Ott, Bence
Gulyás, Nikolett Sz.
Jákói, Zoltán
Beszédes, Sándor
Hodúr, Cecilia
Szabó, Tamás
László, Zsuzsanna
author_sort Kertész, Szabolcs
collection PubMed
description This study investigates the enhancement of dairy wastewater treatment using chemical and physical pre-treatments coupled with membrane separation techniques to reduce membrane fouling. Two mathematical models, namely the Hermia and resistance-in-series module, were utilized to comprehend the mechanisms of ultrafiltration (UF) membrane fouling. The predominant fouling mechanism was identified by fitting experimental data into four models. The study calculated and compared permeate flux, membrane rejection, and membrane reversible and irreversible resistance values. The gas formation was also evaluated as a post-treatment. The results showed that the pre-treatments improved UF efficiency for flux, retention, and resistance values compared to the control. Chemical pre-treatment was identified as the most effective approach to improve filtration efficiency. Physical treatments after microfiltration (MF) and UF showed better fluxes, retention, and resistance results than ultrasonic pre-treatment followed by UF. The efficacy of a three-dimensionally printed (3DP) turbulence promoter was also examined to mitigate membrane fouling. The integration of the 3DP turbulence promoter enhanced hydrodynamic conditions and increased the shear rate on the membrane surface, shortening filtration time and increasing permeate flux values. This study provides valuable insights into optimizing dairy wastewater treatment and membrane separation techniques, which can have significant implications for sustainable water resource management. The present outcomes clearly recommend the application of hybrid pre-, main- and post-treatments coupled with module-integrated turbulence promoters in dairy wastewater ultrafiltration membrane modules to increase membrane separation efficiencies.
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spelling pubmed-101466572023-04-29 Investigation of Different Pre-Treatment Techniques and 3D Printed Turbulence Promoter to Mitigate Membrane Fouling in Dairy Wastewater Module Kertész, Szabolcs Al-Tayawi, Aws N. Gergely, Gréta Ott, Bence Gulyás, Nikolett Sz. Jákói, Zoltán Beszédes, Sándor Hodúr, Cecilia Szabó, Tamás László, Zsuzsanna Materials (Basel) Article This study investigates the enhancement of dairy wastewater treatment using chemical and physical pre-treatments coupled with membrane separation techniques to reduce membrane fouling. Two mathematical models, namely the Hermia and resistance-in-series module, were utilized to comprehend the mechanisms of ultrafiltration (UF) membrane fouling. The predominant fouling mechanism was identified by fitting experimental data into four models. The study calculated and compared permeate flux, membrane rejection, and membrane reversible and irreversible resistance values. The gas formation was also evaluated as a post-treatment. The results showed that the pre-treatments improved UF efficiency for flux, retention, and resistance values compared to the control. Chemical pre-treatment was identified as the most effective approach to improve filtration efficiency. Physical treatments after microfiltration (MF) and UF showed better fluxes, retention, and resistance results than ultrasonic pre-treatment followed by UF. The efficacy of a three-dimensionally printed (3DP) turbulence promoter was also examined to mitigate membrane fouling. The integration of the 3DP turbulence promoter enhanced hydrodynamic conditions and increased the shear rate on the membrane surface, shortening filtration time and increasing permeate flux values. This study provides valuable insights into optimizing dairy wastewater treatment and membrane separation techniques, which can have significant implications for sustainable water resource management. The present outcomes clearly recommend the application of hybrid pre-, main- and post-treatments coupled with module-integrated turbulence promoters in dairy wastewater ultrafiltration membrane modules to increase membrane separation efficiencies. MDPI 2023-04-15 /pmc/articles/PMC10146657/ /pubmed/37109952 http://dx.doi.org/10.3390/ma16083117 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kertész, Szabolcs
Al-Tayawi, Aws N.
Gergely, Gréta
Ott, Bence
Gulyás, Nikolett Sz.
Jákói, Zoltán
Beszédes, Sándor
Hodúr, Cecilia
Szabó, Tamás
László, Zsuzsanna
Investigation of Different Pre-Treatment Techniques and 3D Printed Turbulence Promoter to Mitigate Membrane Fouling in Dairy Wastewater Module
title Investigation of Different Pre-Treatment Techniques and 3D Printed Turbulence Promoter to Mitigate Membrane Fouling in Dairy Wastewater Module
title_full Investigation of Different Pre-Treatment Techniques and 3D Printed Turbulence Promoter to Mitigate Membrane Fouling in Dairy Wastewater Module
title_fullStr Investigation of Different Pre-Treatment Techniques and 3D Printed Turbulence Promoter to Mitigate Membrane Fouling in Dairy Wastewater Module
title_full_unstemmed Investigation of Different Pre-Treatment Techniques and 3D Printed Turbulence Promoter to Mitigate Membrane Fouling in Dairy Wastewater Module
title_short Investigation of Different Pre-Treatment Techniques and 3D Printed Turbulence Promoter to Mitigate Membrane Fouling in Dairy Wastewater Module
title_sort investigation of different pre-treatment techniques and 3d printed turbulence promoter to mitigate membrane fouling in dairy wastewater module
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10146657/
https://www.ncbi.nlm.nih.gov/pubmed/37109952
http://dx.doi.org/10.3390/ma16083117
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