Influence of mass transfer on stable isotope fractionation
Publication date
2013
Authors
Thullner, M.
Fischer, A.
Richnow, H.-H.
Wick, L.Y.
Editors
Advisors
Supervisors
Document Type
Article
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(c) UU Universiteit Utrecht, 2013
Abstract
Biodegradation of contaminants is a common remediation
strategy for subsurface environments. To monitor
the success of such remediation means a quantitative assessment
of biodegradation at the field scale is required.
Nevertheless, the reliable quantification of the in situ biodegradation
process it is still a major challenge. Compoundspecific
stable isotope analysis has become an established
method for the qualitative analysis of biodegradation in the
field and this method is also proposed for a quantitative
analysis. However, to use stable isotope data to obtain quantitative
information on in situ biodegradation requires among
others knowledge on the influence of mass transfer processes
on the observed stable isotope fractionation. This paper
reviews recent findings on the influence of mass transfer
processes on stable isotope fractionation and on the quantitative
interpretation of isotope data. Focus will be given on
small-scale mass transfer processes controlling the bioavailability
of contaminants. Such bioavailability limitations are
known to affect the biodegradation rate and have recently
been shown to affect stable isotope fractionation, too.
Theoretical as well as experimental studies addressing the link
between bioavailability and stable isotope fractionation are
reviewed and the implications for assessing biodegradation
in the field are discussed.
Keywords
Bioavailability, Compound-specific stable isotope analysis, CSIA, Biodegradation, Groundwater contamination