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Luminescent film: Biofouling investigation of tetraphenylethylene blended polyethersulfone ultrafiltration membrane.

Authors :
Orooji, Yasin
Movahedi, Ali
Liu, Zhipeng
Asadnia, Mohsen
Ghasali, Ehsan
Ganjkhanlou, Yadolah
Razmjou, Amir
Karimi-Maleh, Hassan
Kiadeh, Naser Tavajohi Hassan
Source :
Chemosphere. Mar2021, Vol. 267, pN.PAG-N.PAG. 1p.
Publication Year :
2021

Abstract

Despite the huge contribution of membrane-based brine and wastewater purification systems in today's life, biofouling still affects sustainability of membrane engineering. Aimed at reducing membrane modules wastage, the need to study biofouling monitoring as one of contributory factors stemmed from the short time between initial attachment and irreversible biofoulant adhesion. Hence, a membrane for monitoring is introduced to determine the right cleaning time by using fluorescent sensing as a non-destructive and scalable approach. The classical solid-state emissive fluorophore, tetraphenylethylene (TPE), was introduced as a sustainable, safe and sensitive fluorescent indicator in order to show the potential of the method, and polyethersulfone (PES) and nonsolvent-induced phase separation method, the most popular material and method, are used to fabricate membrane in industry and academia. Since the employed filler has an aggregation-induced emission (AIE) characteristic, it can track the biofouling throughout the operation. The fabricated membranes have certain characterizations (i.e. morphology assessment, flux, antibiogram, flow cytometry, surface free energy, and protein adsorption) which indicate that hybrid membrane with 5 wt % of TPE has identical biofouling activity compared to neat PES membrane and its optimal luminescence properties make it an appropriate candidate for non-destructive and online biofouling monitoring. Image 1 • A multifunctional mixed matrix membrane for better understanding of biofouling is presented. • Employed filler has an aggregation-induced emission characteristic which can track the biofouling throughout the operation. • The obtained membranes revealed promising biofouling sensitivity. • The hybrid PES UF membrane with 5 wt % of TPE caused apparent biofouling detection. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00456535
Volume :
267
Database :
Academic Search Index
Journal :
Chemosphere
Publication Type :
Academic Journal
Accession number :
148124610
Full Text :
https://doi.org/10.1016/j.chemosphere.2020.128871