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Laboratory efficacy of locally available backwashing methods at removing fouling in hollow-fiber membrane filters used for household water treatment

Title: Laboratory efficacy of locally available backwashing methods at removing fouling in hollow-fiber membrane filters used for household water treatment
Authors: Heylen C.; Oliveira Aguiar A.; String G.; Domini M.; Goff N.; Murray A.; Asatekin A.; Lantagne D.
Contributors: Heylen C.; Oliveira Aguiar A.; String G.; Domini M.; Goff N.; Murray A.; Asatekin A.; Lantagne D.
Publication Year: 2021
Collection: Università degli Studi di Brescia: OPENBS - Open Archive UniBS
Subject Terms: Backwashing; Fouling; Household water treatment; Humanitarian response; Membrane filters
Description: Hollow-fiber membrane filters (HFMFs) for household water treatment (HWT) can effi-caciously remove disease-causing organisms in laboratory settings. However, lower effectiveness in use in low-and middle-income countries (LMICs) and humanitarian contexts (HCs) has been observed and attributed to membrane fouling and the associated cleaning. In LMICs/HCs, it is not possible to prevent and control fouling using commonly known methods (e.g., testing influent water, maintenance regimes), and the literature on fouling/cleaning of HFMFs distributed in LMICs is scarce. As such, controlled laboratory experiments were conducted to determine the efficacy of locally available (in LMICs/HCs) backwashing solutions at removing fouling using different influent waters and HFMF types. Four commonly distributed HFMFs were selected; fouling layers were developed by filtering three influent water compositions, representing LMIC/HC waters, for 10-days, and bleach, water, or vinegar backwashing solutions were used for daily backwashing. Filter performance indicators included: fiber mechanical properties (strain at break, break force), water quantity performance (flow), water quality performance (turbidity, E. coli), and imaging. The study found fouling developed rapidly and altered mechanical properties and water quantity indicators within 200 h of filtration. Fouling did not decrease water quality indicators. Backwashing improved the filter’s mechanical properties and water quantity performance, but it did not fully recover the initial performance. Additionally, recovery differed between backwashing solutions, and no universal cleaning recommendation appropriate for HFMFs in LMICs/HCs was identified. Overall, fouling development and control depended on HFMF type, influent water quality, and backwashing solution type; thus, caution before distributing HFMFs for long-term use in LMICs/HCs is recommended.
Document Type: article in journal/newspaper
Language: English
Relation: info:eu-repo/semantics/altIdentifier/pmid/34065587; info:eu-repo/semantics/altIdentifier/wos/WOS:000654285900001; volume:11; issue:5; firstpage:375; journal:MEMBRANES; http://hdl.handle.net/11379/555189
DOI: 10.3390/membranes11050375
Availability: http://hdl.handle.net/11379/555189; https://doi.org/10.3390/membranes11050375
Accession Number: edsbas.7FF4B64B
Database: BASE