2020
DOI: 10.1021/acs.est.0c01590
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In Situ Electrochemical Generation of Reactive Chlorine Species for Efficient Ultrafiltration Membrane Self-Cleaning

Abstract: Reactive membranes based on hydroxyl radical generation are hindered by the need for chemical dosing and complicated module and material design. Herein, we utilize an electrochemical approach featuring in situ generation of reactive (radical) chlorine species (RCS) through anodization of chloride ions for membrane self-cleaning. A hybridized carbon nanotube (CNT)-functionalized ceramic membrane (h-CNT/CM), possessing high hydrophilicity, permeability, and conductivity, was fabricated. Using carbamazepine (CBZ)… Show more

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Cited by 104 publications
(67 citation statements)
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“…1a, c). These sputtered depths are over an order of magnitude greater than the inner-porous reactive lengths of reported electrocatalytic membranes 67,68 . Taken together, the high dispersion of the electro-catalysts, as well as the elongated reactive regions, guarantee maximal exposure of the reactive sites in the Pd-Pt-CM.…”
Section: Discussionmentioning
confidence: 74%
“…1a, c). These sputtered depths are over an order of magnitude greater than the inner-porous reactive lengths of reported electrocatalytic membranes 67,68 . Taken together, the high dispersion of the electro-catalysts, as well as the elongated reactive regions, guarantee maximal exposure of the reactive sites in the Pd-Pt-CM.…”
Section: Discussionmentioning
confidence: 74%
“…ROS production through oxygen reduction and electrical repulsion was also believed to have contributed to the self-cleaning ability. Wang et al [77] evaluated the self-cleaning efficiency of a hybridized CNT-functionalized ceramic (h-CNT/CN) membrane after the membrane was fouled with alginate. The supply of 3 V voltage for 15 min to the membrane recovered the water flux almost completely.…”
Section: Self-cleaningmentioning
confidence: 99%
“…H2O2 and chlorine generation were found to be voltage-dependent, 17,20,62 which would have increased with increasing voltage, resulting in more indirect oxidation of microbial cellular materials. Also, a higher electric field is required for the electroporation effect in smaller organisms, 63 and provides a plausible explanation for the relatively higher electrical potential for viral destruction compared to bacteria (Fig.…”
Section: Antiviral Activity Of the Lig Filtersmentioning
confidence: 99%