• English
    • svenska
  • English 
    • English
    • svenska
  • Login
View Item 
  •   Home
  • Sahlgrenska Academy / Sahlgrenska akademin
  • Institute of Biomedicine / Institutionen för biomedicin
  • Doctoral Theses / Doktorsavhandlingar Institutionen för biomedicin
  • View Item
  •   Home
  • Sahlgrenska Academy / Sahlgrenska akademin
  • Institute of Biomedicine / Institutionen för biomedicin
  • Doctoral Theses / Doktorsavhandlingar Institutionen för biomedicin
  • View Item
JavaScript is disabled for your browser. Some features of this site may not work without it.

ldentification of viruses, their viability and purification in drinking water

Abstract
This thesis aimed to identify viruses commonly found in water sources and assess the efficiency of water barriers in viral reduction at drinking water treatment plants (DWTPs) over time. Cell culture assays and molecular techniques were used to determine the inactivation of echovirus 30 (E30), simian rotavirus (RV SA11), and human adenovirus 2 (HAdV2) after treatment with chlorine, chlorine dioxide, and three different UV doses. All three viruses achieved a 3-4 log10 reduction after being disinfected by chlorine and chlorine dioxide. No virus was viable beyond 2 min of contact time by either chlorine or chlorine dioxide. The results suggested that the present CT (concentration x time) methods for lab-scale analysis might have an error. The UV dose of 400 J/m2 adequately inactivated E30 to 3 log10 reduction. However, 600 J/m2 was required to achieve a 3 log10 reduction of double-stranded viruses (RV SA11 and HAdV2). The viral identification in water samples from six DWTPs by next-generation sequencing (NGS) and later by qPCR revealed 147 classified viruses from 64 virus families and 6 unclassified viruses. Several viruses were identified in both raw and drinking water, although to a much lower degree, with a reduction of 1-3 log10. Virus removal by ultrafiltration increased proportionally with virus size, but other barriers such as rapid sand filtration appeared more effective at removing smaller viruses. The efficiency of some barriers was affected by factors such as temperature fluctuations, virus type, and different water sources.
Parts of work
I. Saguti, F., Churqui, M. P., Kjellberg, I., Wang, H., Ottoson, J., Paul, C., Bergstedt, O., Norder, H., Nyström, K. The UV Dose Used for Disinfection of Drinking Water in Sweden Inadequately Inactivates Enteric Virus with Double- Stranded Genomes. Int J Environ Res Public Health, 2022. 19(14). http://doi.org/10.3390/ijerph19148669
 
II. Saguti, F., Kjellberg, I., Churqui, M. P., Wang, H., Tunovic, T., Ottoson, J., Bergstedt, O., Norder, H., Nyström, K. The Virucidal Effect of the Chlorination of Water at the Initial Phase of Disinfection May Be Underestimated If Contact Time Calculations Are Used. Pathogens, 2023. 12(10). http://doi.org/10.3390/pathogens12101216
 
III. Saguti, F., Wang, H., Patzi Churqui, M., Tunovic, T., Holmer, L., Pettersson, Ä., Schleich. C., Bergstedt, O., Nyström, K., Norder, H., Variations of the virome in raw and treated water – a one-year follow-up at six different water treatment plants, manuscript, 2024.
 
IV. Saguti, F., Wang, H., Patzi Churqui, M., Tunovic, T., Holmer, L., Pettersson, Ä., Schleich. C., Bergstedt, O., Nyström, K., Norder, H., Highly efficient virus elimination at six Swedish drinking water treatment plants during one-year follow-up, manuscript, 2024
 
Degree
Doctor of Philosophy (Health Care Sciences)
University
University of Gothenburg. Sahlgrenska Academy
Institution
Institute of Biomedicine. Department of Infectious Diseases
Disputation
Fredagen den 1 november 2024, kl. 9.00, Vån 3, Guldhedsgatan 10A, Göteborg
Date of defence
2024-11-01
URI
https://hdl.handle.net/2077/81811
Collections
  • Doctoral Theses / Doktorsavhandlingar Institutionen för biomedicin
View/Open
Cover (2.640Mb)
Thesis frame (3.897Mb)
Abstract (128.6Kb)
Date
2024-10-14
Author
Saguti, Fredy
Keywords
DWTPs
Enteric virus
gastroenteric viruses
Drinking water
Publication type
Doctoral thesis
ISBN
978-91-8069-887-0 (TRYCK)
978-91-8069-888-7 (PDF)
Language
eng
Metadata
Show full item record

DSpace software copyright © 2002-2016  DuraSpace
Contact Us | Send Feedback
Theme by 
Atmire NV
 

 

Browse

All of DSpaceCommunities & CollectionsBy Issue DateAuthorsTitlesSubjectsThis CollectionBy Issue DateAuthorsTitlesSubjects

My Account

LoginRegister

DSpace software copyright © 2002-2016  DuraSpace
Contact Us | Send Feedback
Theme by 
Atmire NV