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Performance of a novel granular activated carbon and gravity-driven membrane hybrid process: Process development and removal of emerging contaminants

Authors
Kim, L.H.Lee, D.Oh, J.Kim, S.Chae, S.-H.Youn, D.Kim, Y.
Issue Date
2022
Publisher
Institution of Chemical Engineers
Keywords
Chironomidae larvae; Granular activated carbon; Gravity-driven ceramic membrane; Microplastics; Perfluorinated compounds
Citation
Process Safety and Environmental Protection, v.168, pp.810 - 819
Indexed
SCIE
SCOPUS
Journal Title
Process Safety and Environmental Protection
Volume
168
Start Page
810
End Page
819
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/147053
DOI
10.1016/j.psep.2022.10.067
ISSN
0957-5820
Abstract
In this study, a novel granular activated carbon (GAC) gravity-driven membrane (GDM) hybrid system with a ceramic membrane was developed for the production of high quality water. The operational performance in water permeability; removal of organic matter; and contaminants of emerging concern (CECs) including microplastics, larvae, and perfluorinated compounds (i.e., perfluorooctanoic acid (PFOA) and perfluorooctanesulfonic acid(PFOS)) was evaluated. The experimental results indicate that the GAC-GDM hybrid system can overcome the limitations of the GAC (i.e., low rejection efficiency of particulates) and GDM (i.e., low rejection efficiency of organics) processes. The GDM process showed higher removal rates of microplastics and larvae than the GAC process (i.e., 77.9% and 100% vs. 16.6% and 70%, respectively), and the GAC process exhibited higher removal rates of organic matter and perfluorinated compounds (PFOA and PFOS) than the GDM process (i.e., 54.8%, 90.9% and 99.1% vs. 17.6%, 23% and 31.8%, respectively). In the GAC-GDM hybrid system, stable water flux was observed with the efficient removal of CECs and organic matter during operation. This study implies that the GAC-GDM system can be used as a distributed water treatment system in remote areas such as islands and mountains because the GAC-GDM system is able to minimize the operation scale. © 2022 The Institution of Chemical Engineers
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