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Analytical and Bioanalytical Chemistry|February 6, 2009
Environmental metabolomics: new insights into earthworm ecotoxicity and contaminant bioavailability in soilMyrna J Simpson, Jennifer R McKelvie
Environmental Pollution (Barking, Essex : 1987)|March 27, 2010
1H NMR metabolomics of earthworm exposure to sub-lethal concentrations of phenanthrene in soilSarah A E Brown, Jennifer R McKelvie, Andre J Simpson, et al.
Msphere|November 1, 2019
Validating DNA Extraction Protocols for Bentonite ClayKatja Engel, Sara Coyotzi, Melody A Vachon, et al.
Environmental Science & Technology|January 1, 2010
Quantitative site-specific (2)H NMR investigation of MTBE: potential for assessing contaminant sources and fateJennifer R McKelvie, Martin Elsner, André J Simpson, et al.
Environmental Pollution (Barking, Essex : 1987)|March 27, 2010
Correlations of Eisenia fetida metabolic responses to extractable phenanthrene concentrations through timeJennifer R McKelvie, David M Wolfe, Magda Celejewski, et al.
Environmental Pollution (Barking, Essex : 1987)|January 23, 2013
Reduction in the earthworm metabolomic response after phenanthrene exposure in soils with high soil organic carbon contentJennifer R McKelvie, Melissa Whitfield Åslund, Magda A Celejewski, et al.
Journal of Contaminant Hydrology|October 26, 2005
Analysis of anaerobic BTX biodegradation in a subarctic aquifer using isotopes and benzylsuccinatesJennifer R McKelvie, Jon E Lindstrom, Harry R Beller, et al.
Journal of Contaminant Hydrology|July 6, 2007
Quantifying MTBE biodegradation in the Vandenberg Air Force Base ethanol release study using stable carbon isotopesJennifer R McKelvie, Douglas M Mackay, Nicholas R de Sieyes, et al.
Environmental Pollution (Barking, Essex : 1987)|August 23, 2011
Metabolic responses of Eisenia fetida after sub-lethal exposure to organic contaminants with different toxic modes of actionJennifer R McKelvie, David M Wolfe, Magda A Celejewski, et al.
Environmental Science & Technology|May 30, 2009
Isotopic fractionation of methyl tert-butyl ether suggests different initial reaction mechanisms during aerobic biodegradationJennifer R McKelvie, Michael R Hyman, Martin Elsner, et al.
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