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http://hub.abes.fr/acs/periodical/esthag/2004/volume_38/issue_18/101021es049920y/authorship/7
http://hub.abes.fr/acs/periodical/ancham/2006/volume_78/issue_21/101021ac061078m/authorship/3
http://hub.abes.fr/acs/periodical/esthag/2000/volume_34/issue_5/101021es990797y/authorship/2
http://hub.abes.fr/acs/periodical/esthag/2008/volume_42/issue_22/101021es801107g/authorship/7
http://hub.abes.fr/acs/periodical/esthag/2006/volume_40/issue_12/101021es051513e/authorship/5
http://hub.abes.fr/acs/periodical/esthag/2007/volume_41/issue_22/101021es072046z/authorship/4
http://hub.abes.fr/acs/periodical/esthag/2007/volume_41/issue_11/101021es063040x/authorship/4
http://hub.abes.fr/acs/periodical/ancham/2007/volume_79/issue_9/101021ac062299v/authorship/1
http://hub.abes.fr/acs/periodical/esthag/2002/volume_36/issue_9/101021es011135n/authorship/7
http://hub.abes.fr/acs/periodical/esthag/2008/volume_42/issue_1/101021es0711819/authorship/5
http://hub.abes.fr/acs/periodical/esthag/2008/volume_42/issue_16/101021es8001986/authorship/5
http://hub.abes.fr/acs/periodical/esthag/2001/volume_35/issue_5/101021es001583f/authorship/2
http://hub.abes.fr/acs/periodical/esthag/2002/volume_36/issue_11/101021es011253a/authorship/7
http://hub.abes.fr/acs/periodical/esthag/2005/volume_39/issue_13/101021es048592z/authorship/4
http://hub.abes.fr/acs/periodical/esthag/2000/volume_34/issue_21/101021es001128j/authorship/6
http://hub.abes.fr/acs/periodical/esthag/2006/volume_40/issue_11/101021es051493g/authorship/10
http://hub.abes.fr/acs/periodical/esthag/2006/volume_40/issue_24/101021es061363n/authorship/7
http://hub.abes.fr/acs/periodical/esthag/2005/volume_39/issue_4/101021es0492945/authorship/8
http://hub.abes.fr/acs/periodical/esthag/2007/volume_41/issue_16/101021es070531o/authorship/4
http://hub.abes.fr/acs/periodical/esthag/2008/volume_42/issue_16/101021es8009666/authorship/5
http://hub.abes.fr/acs/periodical/esthag/1994/volume_28/issue_13/101021es00062a030/authorship/1
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Response to Comment on“1,1,2,2-Tetrachloroethane Reactions withOH-, Cr(II), Granular Iron, and a Copper−IronBimetal: Insights from Product Formation andAssociated Carbon Isotope Fractionation”
Isotopic Evidence Suggests Different Initial Reaction Mechanisms for Anaerobic Benzene Biodegradation
Freezing To Preserve Groundwater Samples andImprove Headspace Quantification Limits ofWater-Soluble Organic Contaminants for CarbonIsotope Analysis
Biological Enhancement ofTetrachloroethene Dissolution andAssociated Microbial CommunityChanges
Evaluation of Isotopic EnrichmentFactors for the Biodegradation ofChlorinated Ethenes Using aParameter Estimation Model: Toward an Improved Quantificationof Biodegradation
Stable Isotope Evidence forBiodegradation of ChlorinatedEthenes at a Fractured Bedrock Site
Carbon Isotopic Fractionation duringAerobic Vinyl Chloride Degradation
Insight into Methyl tert-Butyl Ether(MTBE) Stable Isotope Fractionationfrom Abiotic Reference Experiments
Carbon Isotope Fractionation duringAnaerobic Biodegradation ofToluene: Implications for IntrinsicBioremediation
Hydrogen Isotopic Enrichment: AnIndicator of Biodegradation at aPetroleum HydrocarbonContaminated Field Site
Variability in Carbon IsotopicFractionation during Biodegradationof Chlorinated Ethenes: Implications for Field Applications
Hydrogen Isotope Fractionationduring Methanogenic Degradation ofToluene: Potential for DirectVerification of Bioremediation
Effects of Trace ElementConcentration on Enzyme ControlledStable Isotope Fractionation duringAerobic Biodegradation of Toluene
1,1,2,2-Tetrachloroethane Reactionswith OH-, Cr(II), Granular Iron, anda Copper−Iron Bimetal: Insightsfrom Product Formation andAssociated Carbon IsotopeFractionation
Identifying Abiotic Chlorinated Ethene Degradation: Characteristic Isotope Patterns in Reaction Products with Nanoscale Zero-Valent Iron
Pathway Dependent IsotopicFractionation during AerobicBiodegradation of1,2-Dichloroethane
Potential for Identifying Abiotic Chloroalkane Degradation Mechanisms using Carbon Isotopic Fractionation
Comparative Assessments of Benzene, Toluene, and Xylene Natural Attenuation by Quantitative Polymerase Chain Reaction Analysis of a Catabolic Gene, Signature Metabolites, and Compound-Specific Isotope Analysis
An Approach for Assessing Total InstrumentalUncertainty in Compound-Specific Carbon IsotopeAnalysis: Implications for EnvironmentalRemediation Studies
Carbon and Hydrogen IsotopicFractionation during Biodegradationof Methyl tert-Butyl Ether
New Sampling Devices for Environmental Characterization of Groundwater and Dissolved Gas Chemistry (CH4, N2, He)
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