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Virus attachment onto quartz sand: Role of grain size and temperature

Chrysikopoulos Constantinos, Andriana F. Aravantinou

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URIhttp://purl.tuc.gr/dl/dias/CEA5AFED-FC37-420D-9DF9-2E1E15C7A1F6-
Identifierhttps://doi.org/10.1016/j.jece.2014.01.025-
Languageen-
Extent6 pagesen
TitleVirus attachment onto quartz sand: Role of grain size and temperatureen
CreatorChrysikopoulos Constantinosen
CreatorΧρυσικοπουλος Κωνσταντινοςel
CreatorAndriana F. Aravantinouen
Content SummaryVirus transport in groundwater is controlled mainly by attachment onto the solid matrix and inactivation. Therefore, understanding how the various parameters affect virus attachment can lead to improved virus transport predictions and better health risk evaluations. This study is focused on the attachment of viruses onto quartz sand under batch experimental conditions. The bacteriophages FX174 and MS2 were used as model viruses. Three different sand grain sizes were employed for the static and dynamic experiments. The batch sorption experiments were performed under static conditions at 4 8C and 20 8C and dynamic conditions at 4 8C. The experimental data were adequately described by the Freundlich isotherm. It was shown that temperature significantly affects virus attachment under static conditions. The attachment of both MS2 and FX174 onto quartz sand was greater at 20 8C than 4 8C. Higher virus attachment was observed under dynamic than static conditions, and in all cases, the affinity of MS2 for quartz sand was greater than that of FX174. Furthermore, in most of the cases considered, bacteriophage attachment was shown to decrease with increasing quartz sand size.en
Type of ItemPeer-Reviewed Journal Publicationen
Type of ItemΔημοσίευση σε Περιοδικό με Κριτέςel
Licensehttp://creativecommons.org/licenses/by/4.0/en
Date of Item2015-09-23-
Date of Publication2014-
Bibliographic CitationC. V. Chrysikopoulos , A. F. Aravantinou , "Virus attachment onto quartz sand: Role of grain size and temperature " ,J. of Envir. Ch. Eng.,vol. 2 ,no.2 ,pp. 796–801,2014.doi:10.1016/j.jece.2014.01.025en

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