<div class="csl-bib-body">
<div class="csl-entry">Stevenson, M. E. (2015). <i>New strategies to investigate the transport of pathogenic microorganisms in the subsurface</i> [Dissertation, Technische Universität Wien]. reposiTUm. https://doi.org/10.34726/hss.2015.34742</div>
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dc.identifier.uri
https://doi.org/10.34726/hss.2015.34742
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dc.identifier.uri
http://hdl.handle.net/20.500.12708/2828
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dc.description
Zusammenfassung in deutscher Sprache
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dc.description.abstract
Of the world's liquid freshwater resources, 97% is stored as groundwater. For millennia, humans have used this resource to provide water for domestic use, agriculture and industry. The water quality of groundwater for drinking water, specifically, is important to human health and therefore the health of society. The focus of this doctoral thesis is on the microbial water quality of groundwater intended for drinking water consumption. The presence and transport of pathogenic microorganisms in the subsurface is difficult to detect and quantify due to their low concentrations in the environment. It is possible to perform field tests by injecting high concentrations of a colloidal tracer and taking measurements along the groundwater flow path; however, to ensure groundwater protection, it is not allowed to inject real pathogenic microorganisms. Surrogates that are representative of the microorganisms under consideration need to be developed. The aim of this doctoral thesis is twofold: to study microbial transport in the subsurface by developing surrogates for two common and persistent pathogenic microorganisms, Cryptosporidium parvum and human adenovirus, and to use an appropriate method for detection and quantification of low concentrations of microorganisms and surrogates in environmental water. Following the Introduction, Chapter 2 addresses the problem of detecting low concentrations of colloids in groundwater, as compared to surface water and a control of sterile deionized water. It was found that surrogates could be detected in very turbid lake water down to a size of 0.75 -m and a maximum sample volume of 1 ml. In pristine spring water, colloids could be quantified down to a size of 0.5 -m in a maximum volume of 500 ml. Chapter 3 goes on to use the method developed in Chapter 2 to enumerate low concentrations of surrogates representing C. parvum in laboratory column tests with granular limestone aquifer material. The best surrogate for C. parvum, as indicated by parameters calculated using colloid filtration theory and breakthrough curves, was a glycoprotein-coated microsphere. Surrogates representing human adenovirus were compared in Chapter 4 in order to determine the most ideal surrogate of those tested and the removal mechanism in limestone material. PRD1 phage was found to be the surrogate best representing human adenovirus removal in high carbonate material, but failed to mimic the detachment of human adenovirus under high ionic strength and high pH conditions. In this doctoral thesis, two strategies were developed to further advance colloid tracer technology and the enumeration of colloids. The implication of this work is that each system comprising of aquifer media, certain chemical conditions and a specific microorganism is unique and needs to be considered on a case by case basis. Due to the complexity of the system, microbial transport in one material cannot be generalized to represent transport in all groundwater systems. This makes it almost impossible to establish standard methods to monitor drinking water quality in the subsurface. In conclusion, experimental field tests using a surrogate that is compared to the pathogenic microorganism in laboratory tests is recommended. With the results obtained from such tests, the transport processes of pathogenic microorganisms in groundwater can be better characterized and this would enable a risk approach analysis to be used.
en
dc.language
English
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dc.language.iso
en
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dc.rights.uri
http://rightsstatements.org/vocab/InC/1.0/
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dc.subject
Pathogenic Microorganisms
de
dc.subject
Pathogenic Microorganisms
en
dc.title
New strategies to investigate the transport of pathogenic microorganisms in the subsurface
en
dc.type
Thesis
en
dc.type
Hochschulschrift
de
dc.rights.license
In Copyright
en
dc.rights.license
Urheberrechtsschutz
de
dc.identifier.doi
10.34726/hss.2015.34742
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dc.contributor.affiliation
TU Wien, Österreich
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dc.rights.holder
Margaret Ellen Stevenson
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dc.publisher.place
Wien
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tuw.version
vor
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tuw.thesisinformation
Technische Universität Wien
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dc.contributor.assistant
Farnleitner, Andreas
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tuw.publication.orgunit
E226 - Institut für Wasserbau und Ingenieurhydrologie
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dc.type.qualificationlevel
Doctoral
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dc.identifier.libraryid
AC12710981
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dc.description.numberOfPages
85
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dc.identifier.urn
urn:nbn:at:at-ubtuw:1-79299
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dc.thesistype
Dissertation
de
dc.thesistype
Dissertation
en
tuw.author.orcid
0000-0002-4259-4033
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dc.rights.identifier
In Copyright
en
dc.rights.identifier
Urheberrechtsschutz
de
tuw.advisor.staffStatus
staff
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tuw.assistant.staffStatus
staff
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tuw.advisor.orcid
0000-0001-8617-5802
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item.languageiso639-1
en
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item.grantfulltext
open
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item.cerifentitytype
Publications
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item.openairetype
doctoral thesis
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item.openairecristype
http://purl.org/coar/resource_type/c_db06
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item.fulltext
with Fulltext
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item.mimetype
application/pdf
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item.openaccessfulltext
Open Access
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crisitem.author.dept
E222-02 - Forschungsbereich Ingenieurhydrologie
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crisitem.author.orcid
0000-0002-4259-4033
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crisitem.author.parentorg
E222 - Institut für Wasserbau und Ingenieurhydrologie