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Cotransport of clay colloids and viruses in water saturated porous media

Chrysikopoulos Constantinos, Vasiliki Syngouna

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URIhttp://purl.tuc.gr/dl/dias/B9212025-20C5-4AE6-8DA2-539E98EE68BD-
Αναγνωριστικόhttps://doi.org/10.1016/j.colsurfa.2012.10.018-
Γλώσσαen-
Μέγεθος11 pagesen
ΤίτλοςCotransport of clay colloids and viruses in water saturated porous mediaen
ΔημιουργόςChrysikopoulos Constantinosen
ΔημιουργόςΧρυσικοπουλος Κωνσταντινοςel
ΔημιουργόςVasiliki Syngouna en
ΕκδότηςElsevieren
ΠερίληψηThis study examines the cotransport of clay colloids and viruses in laboratory packed columns. Bacteriophages MS2 and X174 were used as model viruses, kaolinite (kGa-1b) and montmorillonite (STx-1b) as model clay colloids, and glass beads as model packing material. The combined and synergistic effects of clay colloids and pore water velocity on virus transport and retention in porous media were examined at three pore water velocities (0.38, 0.74, and 1.21 cm/min). The results indicated that the mass recovery of viruses and clay colloids decreased as the pore water velocity decreased; whereas, for the cotransport experiments no clear trend was observed. Temporal moments of the breakthrough concentrations suggested that the presence of clays significantly influenced virus transport and irreversible deposition onto glass beads. Mass recovery values for both viruses, calculated based on total virus concentration in the effluent, were reduced compared to those in the absence of clays. The transport of both suspended and attached onto suspended clay-particles viruses was retarded, compared to the tracer, only at the highest pore water velocity. Moreover both clay colloids were shown to hinder virus transport at the highest pore water velocity. en
ΤύποςPeer-Reviewed Journal Publicationen
ΤύποςΔημοσίευση σε Περιοδικό με Κριτέςel
Άδεια Χρήσηςhttp://creativecommons.org/licenses/by/4.0/en
Ημερομηνία2015-09-21-
Ημερομηνία Δημοσίευσης2013-
Βιβλιογραφική ΑναφοράV. I. Syngouna, C. V. Chrysikopoulos , "Cotransport of clay colloids and viruses in water saturated porous media " , Coll. and Surf. a Physicoche. and Engin. Aspec. vol.416 ,no.1 ,pp. 56-65, 2013.doi:10.1016/j.colsurfa.2012.10.018en

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