Isotopic compositions
Manufacturer | Applied/standard | Isomer ? | Isomer enriched | Batch/Lot n° | Commercial Name/Formulation | Purity (%) | δ13C (‰) | ± (‰) | δ37Cl (‰) | ± (‰) | δ15N (‰) | ± (‰) | δ2H (‰) | ± (‰) | Measurement method | Reference: DOI Number | Reference Citation |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Sigma Aldrich | Standard | (-)α | Yes | -32.5 | 0.8 | GC-C-IRMS | 10.1002/rcm.4987 | Badea, SL., et al, Development of an enantiomer‐specific stable carbon isotope analysis (ESIA)method for assessing the fate ofα‐hexachlorocyclohexane in the environment, Rapid Commun. Mass Spectrom. 2011, 25, 1363–1372 | |||||||||
Sigma Aldrich | Standard | (-)α | Yes | 99 | -29.6 | 0.5 | GC-IRMS | 10.1021/acs.est.9b01233 | Liu Y., et al, Enantiomer and Carbon Isotope Fractionation of α‑Hexachlorocyclohexane by Sphingobium indicum Strain B90A and the Corresponding Enzymes, Environ. Sci. Technol. 2019, 53, 8715−8724 | ||||||||
Sigma Aldrich | Standard | (-)α | Yes | 99 | -28.8 | 0.5 | GC-IRMS | 10.1021/acs.est.9b01233 | Liu Y., et al, Enantiomer and Carbon Isotope Fractionation of α‑Hexachlorocyclohexane by Sphingobium indicum Strain B90A and the Corresponding Enzymes, Environ. Sci. Technol. 2019, 53, 8715−8724 | ||||||||
Sigma Aldrich | Standard | (-)α | Yes | 99 | -29.7 | 0.6 | GC-IRMS | 10.1021/acs.est.9b01233 | Liu Y., et al, Enantiomer and Carbon Isotope Fractionation of α‑Hexachlorocyclohexane by Sphingobium indicum Strain B90A and the Corresponding Enzymes, Environ. Sci. Technol. 2019, 53, 8715−8724 | ||||||||
Sigma Aldrich | Standard | (-)α | Yes | 99 | -29.9 | 0.5 | GC-IRMS | 10.1021/acs.est.9b01233 | Liu Y., et al, Enantiomer and Carbon Isotope Fractionation of α‑Hexachlorocyclohexane by Sphingobium indicum Strain B90A and the Corresponding Enzymes, Environ. Sci. Technol. 2019, 53, 8715−8724 | ||||||||
Sigma Aldrich | Standard | (-)α | Yes | 99 | -28.8 | na | GC-IRMS | 10.1021/acs.est.9b01233 | Liu Y., et al, Enantiomer and Carbon Isotope Fractionation of α‑Hexachlorocyclohexane by Sphingobium indicum Strain B90A and the Corresponding Enzymes, Environ. Sci. Technol. 2019, 53, 8715−8724 | ||||||||
Sigma Aldrich | Standard | (-)α | Yes | 99 | -28.7 | 0.5 | GC-IRMS | 10.1021/acs.est.9b01233 | Liu Y., et al, Enantiomer and Carbon Isotope Fractionation of α‑Hexachlorocyclohexane by Sphingobium indicum Strain B90A and the Corresponding Enzymes, Environ. Sci. Technol. 2019, 53, 8715−8724 | ||||||||
Sigma Aldrich | Standard | (-)α | Yes | -32.3 | 0.5 | GC-C-IRMS | 10.1002/rcm.4987 | Badea, SL., et al, Development of an enantiomer‐specific stable carbon isotope analysis (ESIA)method for assessing the fate ofα‐hexachlorocyclohexane in the environment, Rapid Commun. Mass Spectrom. 2011, 25, 1363–1372 | |||||||||
Sigma Aldrich | Standard | (+)α | Yes | 99 | -28.8 | 0.4 | GC-IRMS | 10.1021/acs.est.9b01233 | Liu Y., et al, Enantiomer and Carbon Isotope Fractionation of α‑Hexachlorocyclohexane by Sphingobium indicum Strain B90A and the Corresponding Enzymes, Environ. Sci. Technol. 2019, 53, 8715−8724 | ||||||||
Sigma Aldrich | Standard | (+)α | Yes | 99 | -29 | 0.5 | GC-IRMS | 10.1021/acs.est.9b01233 | Liu Y., et al, Enantiomer and Carbon Isotope Fractionation of α‑Hexachlorocyclohexane by Sphingobium indicum Strain B90A and the Corresponding Enzymes, Environ. Sci. Technol. 2019, 53, 8715−8724 | ||||||||
Sigma Aldrich | Standard | (+)α | Yes | 99 | -28.8 | 0.6 | GC-IRMS | 10.1021/acs.est.9b01233 | Liu Y., et al, Enantiomer and Carbon Isotope Fractionation of α‑Hexachlorocyclohexane by Sphingobium indicum Strain B90A and the Corresponding Enzymes, Environ. Sci. Technol. 2019, 53, 8715−8724 | ||||||||
Sigma Aldrich | Standard | (+)α | Yes | 99 | -29.2 | 0.5 | GC-IRMS | 10.1021/acs.est.9b01233 | Liu Y., et al, Enantiomer and Carbon Isotope Fractionation of α‑Hexachlorocyclohexane by Sphingobium indicum Strain B90A and the Corresponding Enzymes, Environ. Sci. Technol. 2019, 53, 8715−8724 | ||||||||
Sigma Aldrich | Standard | (+)α | Yes | 99 | -28.3 | na | GC-IRMS | 10.1021/acs.est.9b01233 | Liu Y., et al, Enantiomer and Carbon Isotope Fractionation of α‑Hexachlorocyclohexane by Sphingobium indicum Strain B90A and the Corresponding Enzymes, Environ. Sci. Technol. 2019, 53, 8715−8724 | ||||||||
Sigma Aldrich | Standard | (+)α | Yes | 99 | -28.8 | 0.5 | GC-IRMS | 10.1021/acs.est.9b01233 | Liu Y., et al, Enantiomer and Carbon Isotope Fractionation of α‑Hexachlorocyclohexane by Sphingobium indicum Strain B90A and the Corresponding Enzymes, Environ. Sci. Technol. 2019, 53, 8715−8724 | ||||||||
Riedel de Haën | Standard | α | Yes | 100 | -31.7 | 0.3 | -58 | 4 | GC-IRMS | 10.1016/j.aca.2006.06.054 | Vetter, W., W. Armbruster, T. R. Betson, J. Schleucher, T. Kapp and K. Lehnert, 2006.Baseline isotopic data of polyhalogenated compounds.Analytica Chimica Acta, 577, 250-256. | ||||||
Sigma Aldrich | Standard | α | Yes | 100 | -31.9 | 0.2 | GC-IRMS | 10.1002/rcm.7146 | Chartrand, M., E. Passeport, C. Rose, G. Lacrampe-Couloume, T. F. Bidleman, L. M. Jantunen and B. S. Lollar, 2014.Compound specific isotope analysis of hexachlorocyclohexane isomers: a method for source fingerprinting and field investigation of in situ biodegradation.Rapid Communications in Mass Spectrometry, 29, 505-514. | ||||||||
Environment Canada | Standard | α | Yes | 100 | -27 | 0.3 | GC-IRMS | 10.1002/rcm.7146 | Chartrand, M., E. Passeport, C. Rose, G. Lacrampe-Couloume, T. F. Bidleman, L. M. Jantunen and B. S. Lollar, 2014.Compound specific isotope analysis of hexachlorocyclohexane isomers: a method for source fingerprinting and field investigation of in situ biodegradation.Rapid Communications in Mass Spectrometry, 29, 505-514. | ||||||||
Sigma Aldrich | Standard | α | Yes | 99 | -32.2 | 0.02 | EA-IRMS | 10.1021/es801284m | Badea, S.L., et al, Stable Isotope Fractionation of γ-Hexachlorocyclohexane (Lindane) during Reductive Dechlorination by Two Strains of Sulfate-Reducing Bacteria, Environ. Sci. Technol. 2009, 43, 3155–3161 | ||||||||
Sigma Aldrich | Standard | α | Yes | 99 | -37.2 | 0.2 | GC-C-IRMS | 10.1021/es801284m | Badea, S.L., et al, Stable Isotope Fractionation of γ-Hexachlorocyclohexane (Lindane) during Reductive Dechlorination by Two Strains of Sulfate-Reducing Bacteria, Environ. Sci. Technol. 2009, 43, 3155–3161 | ||||||||
Sigma Aldrich | Standard | α | Yes | 99 | -32.1 | 0.1 | EA-IRMS | 10.1002/rcm.4987 | Badea, SL., et al, Development of an enantiomer‐specific stable carbon isotope analysis (ESIA)method for assessing the fate ofα‐hexachlorocyclohexane in the environment, Rapid Commun. Mass Spectrom. 2011, 25, 1363–1372 | ||||||||
Sigma Aldrich | Standard | α | Yes | 99 | -32.7 | 0.2 | GC-C-IRMS | 10.1002/rcm.4987 | Badea, SL., et al, Development of an enantiomer‐specific stable carbon isotope analysis (ESIA)method for assessing the fate ofα‐hexachlorocyclohexane in the environment, Rapid Commun. Mass Spectrom. 2011, 25, 1363–1372 | ||||||||
Sigma Aldrich | Standard | α | Yes | 97-99 | -26.7 | 0.5 | EA-IRMS | 10.1016/j.watres.2014.12.033 | Bashir S., et al, Evaluating degradation of hexachlorcyclohexane (HCH) isomers within a contaminated aquifer using compound-specific stable carbon isotope analysis (CSIA), water r e s e arch 7 1 ( 2 0 1 5 ) 1 8 7e1 9 6 | ||||||||
Sigma Aldrich | Standard | α | Yes | 97-99 | -27.1 | 0.3 | GC-IRMS | 10.1016/j.watres.2014.12.033 | Bashir S., et al, Evaluating degradation of hexachlorcyclohexane (HCH) isomers within a contaminated aquifer using compound-specific stable carbon isotope analysis (CSIA), water r e s e arch 7 1 ( 2 0 1 5 ) 1 8 7e1 9 6 | ||||||||
Sigma Aldrich | Standard | α | Yes | 97-99 | -27.1 | 0.4 | GC-IRMS (arbitrary limits) | 10.1016/j.watres.2014.12.033 | Bashir S., et al, Evaluating degradation of hexachlorcyclohexane (HCH) isomers within a contaminated aquifer using compound-specific stable carbon isotope analysis (CSIA), water r e s e arch 7 1 ( 2 0 1 5 ) 1 8 7e1 9 6 | ||||||||
Sigma Aldrich | Standard | α | Yes | 99 | -27 | 0.1 | GC−C-IRMS | 10.1021/es402197s | Bashir, S., et al, Enantioselective Carbon Stable Isotope Fractionation of Hexachlorocyclohexane during Aerobic Biodegradation by Sphingobium spp., Environ. Sci. Technol. 2013, 47, 11432−11439 | ||||||||
Sigma Aldrich | Standard | α | Yes | 99 | -27.7 | 0.1 | GC−C-IRMS | 10.1021/es402197s | Bashir, S., et al, Enantioselective Carbon Stable Isotope Fractionation of Hexachlorocyclohexane during Aerobic Biodegradation by Sphingobium spp., Environ. Sci. Technol. 2013, 47, 11432−11439 | ||||||||
Sigma Aldrich | Standard | α | Yes | 99 | -26.8 | 0.1 | EA-IRMS | 10.1016/j.chroma.2014.06.014 | Ivdra, Natalija, et al., Validation of user- and environmentally friendly extraction andclean-up methods for compound-specific stable carbon isotopeanalysis of organochlorine pesticides and their metabolites in soils, Journal of Chromatography A, 1355 (2014) 36–45 | ||||||||
Sigma Aldrich | Standard | α | Yes | 99 | -26.2 | 0.2 | GC-C-IRMS (optimum conditions) | 10.1016/j.chroma.2014.06.014 | Ivdra, Natalija, et al., Validation of user- and environmentally friendly extraction andclean-up methods for compound-specific stable carbon isotopeanalysis of organochlorine pesticides and their metabolites in soils, Journal of Chromatography A, 1355 (2014) 36–45 | ||||||||
Sigma Aldrich | Standard | α | Yes | 99 | -25.9 | 0.4 | GC-C-IRMS | 10.1016/j.chroma.2014.06.014 | Ivdra, Natalija, et al., Validation of user- and environmentally friendly extraction andclean-up methods for compound-specific stable carbon isotopeanalysis of organochlorine pesticides and their metabolites in soils, Journal of Chromatography A, 1355 (2014) 36–45 | ||||||||
Sigma Aldrich | Standard | α | Yes | 99.5 | -29.3 | 0.4 | GC-C-IRMS | 10.1016/j.aca.2019.03.030 | Wu, Langping, et al, A concept for studying the transformation reaction of hexachlorocyclohexanes in food webs using multi-element compound-specific isotope analysis, Analytica Chimica Acta 1064 (2019) 56e64 | ||||||||
Sigma Aldrich | Standard | α | Yes | 99.5 | -102 | 3 | GC-HTC-IRMS | 10.1016/j.aca.2019.03.030 | Wu, Langping, et al, A concept for studying the transformation reaction of hexachlorocyclohexanes in food webs using multi-element compound-specific isotope analysis, Analytica Chimica Acta 1064 (2019) 56e64 | ||||||||
Sigma Aldrich | Standard | α | Yes | 99.5 | -0.67 | 0.14 | GC-MC-ICPMS | 10.1016/j.aca.2019.03.030 | Wu, Langping, et al, A concept for studying the transformation reaction of hexachlorocyclohexanes in food webs using multi-element compound-specific isotope analysis, Analytica Chimica Acta 1064 (2019) 56e64 | ||||||||
Greyhound | Standard | α | Yes | Lot/Batch Nr. 415-19A | 100 | -33.8 | -4.68 | -71 | 1 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | |||||
Aladdin Chemistry | Standard | α | Yes | 98 | -26.4 | -0.12 | -58 | 1 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | ||||||
Sigma Aldrich | Standard | α | Yes | Lot/Batch Nr SZBA329XV | 99 | -26.8 | -0.06 | -87.3 | 0 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | |||||
Sigma Aldrich | Standard | α | Yes | Lot/Batch Nr SZBA329XV | 100 | -27 | -87.3 | 0.6 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | ||||||
Sigma Aldrich | Standard | α | Yes | Lot/Batch Nr SZE7093X | 99 | -26.7 | -88 | 2 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | ||||||
Sigma Aldrich | Standard | α | Yes | Lot/Batch Nr SZBD156XV | 99 | -26.3 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | ||||||||
Dr. Ehrenstorfer | Standard | α | Yes | Lot/Batch Nr C14071000 | 98 | -26.6 | -61 | 2 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | ||||||
Unknown | Standard | α | Yes | Pure crystalline material | 99 | -29.1 | -82.4 | 0.1 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | ||||||
Supelco | Standard | α | Yes | 2.86 | 1.9 | GC-qMS | 10.1155/2021/8874679 | Zhang, J., S. H. Liu, J. Y. Gui, X. Y. Li and G. C. Qi, 2021.Compound-Specific Chlorine Isotope Analysis of Organochlorine Pesticides by Gas Chromatography-Negative Chemical Ionization Mass Spectrometry.Journal of Analytical Methods in Chemistry, 2021, | |||||||||
LGC/O2Si Standards | Standard | α | Yes | -4.91 | 2.26 | GC-qMS | 10.1155/2021/8874679 | Zhang, J., S. H. Liu, J. Y. Gui, X. Y. Li and G. C. Qi, 2021.Compound-Specific Chlorine Isotope Analysis of Organochlorine Pesticides by Gas Chromatography-Negative Chemical Ionization Mass Spectrometry.Journal of Analytical Methods in Chemistry, 2021, | |||||||||
Riedel de Haën | Standard | b | Yes | 100 | -26.7 | 0.3 | -47 | 3 | GC-IRMS | 10.1016/j.aca.2006.06.054 | Vetter, W., W. Armbruster, T. R. Betson, J. Schleucher, T. Kapp and K. Lehnert, 2006.Baseline isotopic data of polyhalogenated compounds.Analytica Chimica Acta, 577, 250-256. | ||||||
Environment Canada | Standard | b | Yes | 100 | -26.6 | 0.3 | GC-IRMS | 10.1002/rcm.7146 | Chartrand, M., E. Passeport, C. Rose, G. Lacrampe-Couloume, T. F. Bidleman, L. M. Jantunen and B. S. Lollar, 2014.Compound specific isotope analysis of hexachlorocyclohexane isomers: a method for source fingerprinting and field investigation of in situ biodegradation.Rapid Communications in Mass Spectrometry, 29, 505-514. | ||||||||
Sigma Aldrich | Standard | b | Yes | na | -26.5 | 0.07 | EA-IRMS | 10.1021/es801284m | Badea, S.L., et al, Stable Isotope Fractionation of γ-Hexachlorocyclohexane (Lindane) during Reductive Dechlorination by Two Strains of Sulfate-Reducing Bacteria, Environ. Sci. Technol. 2009, 43, 3155–3161 | ||||||||
Sigma Aldrich | Standard | b | Yes | na | -26.8 | 0.2 | GC-C-IRMS | 10.1021/es801284m | Badea, S.L., et al, Stable Isotope Fractionation of γ-Hexachlorocyclohexane (Lindane) during Reductive Dechlorination by Two Strains of Sulfate-Reducing Bacteria, Environ. Sci. Technol. 2009, 43, 3155–3161 | ||||||||
Sigma Aldrich | Standard | b | Yes | 97-99 | -26.5 | 0.5 | EA-IRMS | 10.1016/j.watres.2014.12.033 | Bashir S., et al, Evaluating degradation of hexachlorcyclohexane (HCH) isomers within a contaminated aquifer using compound-specific stable carbon isotope analysis (CSIA), water r e s e arch 7 1 ( 2 0 1 5 ) 1 8 7e1 9 6 | ||||||||
Sigma Aldrich | Standard | b | Yes | 97-99 | -26.2 | 0.3 | GC-IRMS | 10.1016/j.watres.2014.12.033 | Bashir S., et al, Evaluating degradation of hexachlorcyclohexane (HCH) isomers within a contaminated aquifer using compound-specific stable carbon isotope analysis (CSIA), water r e s e arch 7 1 ( 2 0 1 5 ) 1 8 7e1 9 6 | ||||||||
Sigma Aldrich | Standard | b | Yes | 97-99 | -26.3 | 0.3 | GC-IRMS (arbitrary limits) | 10.1016/j.watres.2014.12.033 | Bashir S., et al, Evaluating degradation of hexachlorcyclohexane (HCH) isomers within a contaminated aquifer using compound-specific stable carbon isotope analysis (CSIA), water r e s e arch 7 1 ( 2 0 1 5 ) 1 8 7e1 9 6 | ||||||||
Sigma Aldrich | Standard | b | Yes | 98.2 | -26.4 | 0.1 | EA-IRMS | 10.1016/j.chroma.2014.06.014 | Ivdra, Natalija, et al., Validation of user- and environmentally friendly extraction andclean-up methods for compound-specific stable carbon isotopeanalysis of organochlorine pesticides and their metabolites in soils, Journal of Chromatography A, 1355 (2014) 36–45 | ||||||||
Sigma Aldrich | Standard | b | Yes | 98.2 | -25.7 | 0.1 | GC-C-IRMS (optimum conditions) | 10.1016/j.chroma.2014.06.014 | Ivdra, Natalija, et al., Validation of user- and environmentally friendly extraction andclean-up methods for compound-specific stable carbon isotopeanalysis of organochlorine pesticides and their metabolites in soils, Journal of Chromatography A, 1355 (2014) 36–45 | ||||||||
Sigma Aldrich | Standard | b | Yes | 98.2 | -25.4 | 0.4 | GC-C-IRMS | 10.1016/j.chroma.2014.06.014 | Ivdra, Natalija, et al., Validation of user- and environmentally friendly extraction andclean-up methods for compound-specific stable carbon isotopeanalysis of organochlorine pesticides and their metabolites in soils, Journal of Chromatography A, 1355 (2014) 36–45 | ||||||||
Sigma Aldrich | Standard | b | Yes | 99.5 | -28.8 | 0.2 | GC-C-IRMS | 10.1016/j.aca.2019.03.030 | Wu, Langping, et al, A concept for studying the transformation reaction of hexachlorocyclohexanes in food webs using multi-element compound-specific isotope analysis, Analytica Chimica Acta 1064 (2019) 56e64 | ||||||||
Sigma Aldrich | Standard | b | Yes | 99.5 | -112 | 5 | GC-Cr-HTC-IRMS | 10.1016/j.aca.2019.03.030 | Wu, Langping, et al, A concept for studying the transformation reaction of hexachlorocyclohexanes in food webs using multi-element compound-specific isotope analysis, Analytica Chimica Acta 1064 (2019) 56e64 | ||||||||
Sigma Aldrich | Standard | b | Yes | 99.5 | -2.64 | 0.13 | GC-MC-ICPMS | 10.1016/j.aca.2019.03.030 | Wu, Langping, et al, A concept for studying the transformation reaction of hexachlorocyclohexanes in food webs using multi-element compound-specific isotope analysis, Analytica Chimica Acta 1064 (2019) 56e64 | ||||||||
Greyhound | Standard | b | Yes | Lot/Batch Nr 463-151C | 98 | -34.1 | -6.69 | -45.8 | 0.9 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | |||||
Sigma Aldrich | Standard | b | Yes | Lot/Batch Nr SZBA105XV | 98 | -26.3 | -2.63 | -62 | 1 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | |||||
Sigma Aldrich | Standard | b | Yes | Lot/Batch Nr SZE6219X | 99 | -26.5 | -59 | 2 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | ||||||
Dr. Ehrenstorfer | Standard | b | Yes | Lot/Batch Nr C14072000 | 99 | -29.6 | 0.54 | 1 | 5 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | |||||
Supelco | Standard | b | Yes | 0.39 | 2.99 | GC-qMS | 10.1155/2021/8874679 | Zhang, J., S. H. Liu, J. Y. Gui, X. Y. Li and G. C. Qi, 2021.Compound-Specific Chlorine Isotope Analysis of Organochlorine Pesticides by Gas Chromatography-Negative Chemical Ionization Mass Spectrometry.Journal of Analytical Methods in Chemistry, 2021, | |||||||||
LGC/O2Si Standards | Standard | b | Yes | -1.78 | 2.98 | GC-qMS | 10.1155/2021/8874679 | Zhang, J., S. H. Liu, J. Y. Gui, X. Y. Li and G. C. Qi, 2021.Compound-Specific Chlorine Isotope Analysis of Organochlorine Pesticides by Gas Chromatography-Negative Chemical Ionization Mass Spectrometry.Journal of Analytical Methods in Chemistry, 2021, | |||||||||
Riedel de Haën | Standard | d | Yes | 100 | -26.6 | 0.3 | -69 | 2 | GC-IRMS | 10.1016/j.aca.2006.06.054 | Vetter, W., W. Armbruster, T. R. Betson, J. Schleucher, T. Kapp and K. Lehnert, 2006.Baseline isotopic data of polyhalogenated compounds.Analytica Chimica Acta, 577, 250-256. | ||||||
Environment Canada | Standard | d | Yes | 100 | -26.9 | 0.1 | GC-IRMS | 10.1002/rcm.7146 | Chartrand, M., E. Passeport, C. Rose, G. Lacrampe-Couloume, T. F. Bidleman, L. M. Jantunen and B. S. Lollar, 2014.Compound specific isotope analysis of hexachlorocyclohexane isomers: a method for source fingerprinting and field investigation of in situ biodegradation.Rapid Communications in Mass Spectrometry, 29, 505-514. | ||||||||
Sigma Aldrich | Standard | d | Yes | -26.8 | 0.03 | EA-IRMS | 10.1021/es801284m | Badea, S.L., et al, Stable Isotope Fractionation of γ-Hexachlorocyclohexane (Lindane) during Reductive Dechlorination by Two Strains of Sulfate-Reducing Bacteria, Environ. Sci. Technol. 2009, 43, 3155–3161 | |||||||||
Sigma Aldrich | Standard | d | Yes | -27.5 | 0.3 | GC-C-IRMS | 10.1021/es801284m | Badea, S.L., et al, Stable Isotope Fractionation of γ-Hexachlorocyclohexane (Lindane) during Reductive Dechlorination by Two Strains of Sulfate-Reducing Bacteria, Environ. Sci. Technol. 2009, 43, 3155–3161 | |||||||||
Sigma Aldrich | Standard | d | Yes | 97-99 | -26.8 | 0.5 | EA-IRMS | 10.1016/j.watres.2014.12.033 | Bashir S., et al, Evaluating degradation of hexachlorcyclohexane (HCH) isomers within a contaminated aquifer using compound-specific stable carbon isotope analysis (CSIA), water r e s e arch 7 1 ( 2 0 1 5 ) 1 8 7e1 9 6 | ||||||||
Sigma Aldrich | Standard | d | Yes | 97-99 | -26.2 | 0.3 | GC-IRMS | 10.1016/j.watres.2014.12.033 | Bashir S., et al, Evaluating degradation of hexachlorcyclohexane (HCH) isomers within a contaminated aquifer using compound-specific stable carbon isotope analysis (CSIA), water r e s e arch 7 1 ( 2 0 1 5 ) 1 8 7e1 9 6 | ||||||||
Sigma Aldrich | Standard | d | Yes | 97-99 | -26.2 | 0.3 | GC-IRMS (arbitrary limits) | 10.1016/j.watres.2014.12.033 | Bashir S., et al, Evaluating degradation of hexachlorcyclohexane (HCH) isomers within a contaminated aquifer using compound-specific stable carbon isotope analysis (CSIA), water r e s e arch 7 1 ( 2 0 1 5 ) 1 8 7e1 9 6 | ||||||||
Sigma Aldrich | Standard | d | Yes | 99.5 | -26.9 | 0.2 | EA-IRMS | 10.1016/j.chroma.2014.06.014 | Ivdra, Natalija, et al., Validation of user- and environmentally friendly extraction andclean-up methods for compound-specific stable carbon isotopeanalysis of organochlorine pesticides and their metabolites in soils, Journal of Chromatography A, 1355 (2014) 36–45 | ||||||||
Sigma Aldrich | Standard | d | Yes | 99.5 | -26.2 | 0.1 | GC-C-IRMS (optimum conditions) | 10.1016/j.chroma.2014.06.014 | Ivdra, Natalija, et al., Validation of user- and environmentally friendly extraction andclean-up methods for compound-specific stable carbon isotopeanalysis of organochlorine pesticides and their metabolites in soils, Journal of Chromatography A, 1355 (2014) 36–45 | ||||||||
Sigma Aldrich | Standard | d | Yes | 99.5 | -26.1 | 0.4 | GC-C-IRMS | 10.1016/j.chroma.2014.06.014 | Ivdra, Natalija, et al., Validation of user- and environmentally friendly extraction andclean-up methods for compound-specific stable carbon isotopeanalysis of organochlorine pesticides and their metabolites in soils, Journal of Chromatography A, 1355 (2014) 36–45 | ||||||||
Sigma Aldrich | Standard | d | Yes | 99.5 | -28.8 | 0.2 | GC-C-IRMS | 10.1016/j.aca.2019.03.030 | Wu, Langping, et al, A concept for studying the transformation reaction of hexachlorocyclohexanes in food webs using multi-element compound-specific isotope analysis, Analytica Chimica Acta 1064 (2019) 56e64 | ||||||||
Sigma Aldrich | Standard | d | Yes | 99.5 | -105 | 6 | GC-HTC-IRMS | 10.1016/j.aca.2019.03.030 | Wu, Langping, et al, A concept for studying the transformation reaction of hexachlorocyclohexanes in food webs using multi-element compound-specific isotope analysis, Analytica Chimica Acta 1064 (2019) 56e64 | ||||||||
Sigma Aldrich | Standard | d | Yes | 99.5 | -0.34 | 0.28 | GC-MC-ICPMS | 10.1016/j.aca.2019.03.030 | Wu, Langping, et al, A concept for studying the transformation reaction of hexachlorocyclohexanes in food webs using multi-element compound-specific isotope analysis, Analytica Chimica Acta 1064 (2019) 56e64 | ||||||||
Greyhound | Standard | d | Yes | Lot/Batch Nr 462-76B | 99 | -34.9 | -47 | 0 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | ||||||
Sigma Aldrich | Standard | d | Yes | Lot/Batch Nr LB80865V | 100 | -35.8 | 0.07 | -21 | 0.7 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | |||||
Sigma Aldrich | Standard | d | Yes | Lot/Batch Nr SZBA075XV | 100 | -26.8 | -0.94 | -75 | 3 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | |||||
Sigma Aldrich | Standard | d | Yes | Lot/Batch Nr SZBA075XV | 100 | -26.8 | -80.4 | 0.9 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | ||||||
Sigma Aldrich | Standard | d | Yes | Lot/Batch Nr SZBD099XV | 99 | -26.6 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | ||||||||
Dr. Ehrenstorfer | Standard | d | Yes | Lot/Batch Nr C14074000 | 100 | -35.9 | 0.22 | -36 | 1 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | |||||
Supelco | Standard | d | Yes | 1.89 | 3.44 | GC-qMS | 10.1155/2021/8874679 | Zhang, J., S. H. Liu, J. Y. Gui, X. Y. Li and G. C. Qi, 2021.Compound-Specific Chlorine Isotope Analysis of Organochlorine Pesticides by Gas Chromatography-Negative Chemical Ionization Mass Spectrometry.Journal of Analytical Methods in Chemistry, 2021, | |||||||||
LGC/O2Si Standards | Standard | d | Yes | 4.41 | 5.08 | GC-qMS | 10.1155/2021/8874679 | Zhang, J., S. H. Liu, J. Y. Gui, X. Y. Li and G. C. Qi, 2021.Compound-Specific Chlorine Isotope Analysis of Organochlorine Pesticides by Gas Chromatography-Negative Chemical Ionization Mass Spectrometry.Journal of Analytical Methods in Chemistry, 2021, | |||||||||
Riedel de Haën | Standard | g | Yes | 100 | -25.9 | 0.3 | -70 | 6 | GC-IRMS | 10.1016/j.aca.2006.06.054 | Vetter, W., W. Armbruster, T. R. Betson, J. Schleucher, T. Kapp and K. Lehnert, 2006.Baseline isotopic data of polyhalogenated compounds.Analytica Chimica Acta, 577, 250-256. | ||||||
Sigma Aldrich | Standard | g | Yes | 100 | -25.6 | 0.3 | -109 | 3 | GC-IRMS | 10.1016/j.aca.2006.06.054 | Vetter, W., W. Armbruster, T. R. Betson, J. Schleucher, T. Kapp and K. Lehnert, 2006.Baseline isotopic data of polyhalogenated compounds.Analytica Chimica Acta, 577, 250-256. | ||||||
Environment Canada | Standard | g | Yes | 100 | -26.4 | 0.1 | GC-IRMS | 10.1002/rcm.7146 | Chartrand, M., E. Passeport, C. Rose, G. Lacrampe-Couloume, T. F. Bidleman, L. M. Jantunen and B. S. Lollar, 2014.Compound specific isotope analysis of hexachlorocyclohexane isomers: a method for source fingerprinting and field investigation of in situ biodegradation.Rapid Communications in Mass Spectrometry, 29, 505-514. | ||||||||
Applied | g | Yes | 100 | -25.4 | 0.5 | GC-IRMS | 10.1002/rcm.7146 | Chartrand, M., E. Passeport, C. Rose, G. Lacrampe-Couloume, T. F. Bidleman, L. M. Jantunen and B. S. Lollar, 2014.Compound specific isotope analysis of hexachlorocyclohexane isomers: a method for source fingerprinting and field investigation of in situ biodegradation.Rapid Communications in Mass Spectrometry, 29, 505-514. | |||||||||
Sigma Aldrich | Standard | g | Yes | Lindane | 97 | -26.9 | 0.01 | EA-IRMS | 10.1021/es801284m | Badea, S.L., et al, Stable Isotope Fractionation of γ-Hexachlorocyclohexane (Lindane) during Reductive Dechlorination by Two Strains of Sulfate-Reducing Bacteria, Environ. Sci. Technol. 2009, 43, 3155–3161 | |||||||
Sigma Aldrich | Standard | g | Yes | Lindane | 97 | -27.3 | 0.4 | GC-C-IRMS | 10.1021/es801284m | Badea, S.L., et al, Stable Isotope Fractionation of γ-Hexachlorocyclohexane (Lindane) during Reductive Dechlorination by Two Strains of Sulfate-Reducing Bacteria, Environ. Sci. Technol. 2009, 43, 3155–3161 | |||||||
Sigma Aldrich | Standard | g | Yes | Lindane | 97-99 | -27 | 0.5 | EA-IRMS | 10.1016/j.watres.2014.12.033 | Bashir S., et al, Evaluating degradation of hexachlorcyclohexane (HCH) isomers within a contaminated aquifer using compound-specific stable carbon isotope analysis (CSIA), water r e s e arch 7 1 ( 2 0 1 5 ) 1 8 7e1 9 6 | |||||||
Sigma Aldrich | Standard | g | Yes | Lindane | 97-99 | -27.8 | 0.1 | GC-IRMS | 10.1016/j.watres.2014.12.033 | Bashir S., et al, Evaluating degradation of hexachlorcyclohexane (HCH) isomers within a contaminated aquifer using compound-specific stable carbon isotope analysis (CSIA), water r e s e arch 7 1 ( 2 0 1 5 ) 1 8 7e1 9 6 | |||||||
Sigma Aldrich | Standard | g | Yes | Lindane | 97-99 | -27.7 | 0.3 | GC-IRMS (arbitrary limits)) | 10.1016/j.watres.2014.12.033 | Bashir S., et al, Evaluating degradation of hexachlorcyclohexane (HCH) isomers within a contaminated aquifer using compound-specific stable carbon isotope analysis (CSIA), water r e s e arch 7 1 ( 2 0 1 5 ) 1 8 7e1 9 6 | |||||||
Sigma Aldrich | Standard | g | Yes | Lindane | 97 | -27.6 | 0.5 | GC−C-IRMS | 10.1021/es402197s | Bashir, S., et al, Enantioselective Carbon Stable Isotope Fractionation of Hexachlorocyclohexane during Aerobic Biodegradation by Sphingobium spp., Environ. Sci. Technol. 2013, 47, 11432−11439 | |||||||
Sigma Aldrich | Standard | g | Yes | Lindane | 99.1 | -26.4 | 0.1 | EA-IRMS | 10.1016/j.chroma.2014.06.014 | Ivdra, Natalija, et al., Validation of user- and environmentally friendly extraction andclean-up methods for compound-specific stable carbon isotopeanalysis of organochlorine pesticides and their metabolites in soils, Journal of Chromatography A, 1355 (2014) 36–45 | |||||||
Sigma Aldrich | Standard | g | Yes | Lindane | 99.1 | -25.7 | 0.1 | GC-C-IRMS (optimal conditions) | 10.1016/j.chroma.2014.06.014 | Ivdra, Natalija, et al., Validation of user- and environmentally friendly extraction andclean-up methods for compound-specific stable carbon isotopeanalysis of organochlorine pesticides and their metabolites in soils, Journal of Chromatography A, 1355 (2014) 36–45 | |||||||
Sigma Aldrich | Standard | g | Yes | Lindane | 99.1 | -25.4 | 0.3 | GC-C-IRMS | 10.1016/j.chroma.2014.06.014 | Ivdra, Natalija, et al., Validation of user- and environmentally friendly extraction andclean-up methods for compound-specific stable carbon isotopeanalysis of organochlorine pesticides and their metabolites in soils, Journal of Chromatography A, 1355 (2014) 36–45 | |||||||
VEB Fahlberg-List | Standard | g | Yes | Lindane | 99 | -29.8 | 0.3 | -82.4 | 0.2 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | |||||
Ugine Kuhlmann | Standard | g | Yes | Lindane | 96 | -29 | 0.3 | -1.43 | -74.1 | 0.2 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | ||||
HiMEDIA | Standard | g | Yes | Lindane | 100 | -26.9 | 0.3 | -0.17 | 0.1 | -75 | 3 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | |||
Greyhound | Standard | g | Yes | Lot/Batch Nr. 463-156A | Lindane | 100 | -27.2 | 0.3 | -102.3 | 0.6 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | ||||
Dr. Ehrenstorfer | Standard | g | Yes | Lot/Batch Nr. C14073000 | Lindane | 98 | -27.7 | 0.3 | -82.9 | 0.5 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | ||||
Aladdin Chemistry | Standard | g | Yes | Lindane | 98 | -25.8 | 0.3 | -0.7 | 0.1 | -132.6 | 0.2 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | |||
Sigma Aldrich | Standard | g | Yes | Lot/Batch Nr. MKBB3685V | Lindane | 97 | -26.7 | 0.3 | -0.63 | 0.1 | -103.1 | 0.2 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | ||
Sigma Aldrich | Standard | g | Yes | Lot/Batch Nr. SZB7038XV | Lindane | 100 | -25.9 | 0.3 | -0.29 | 0.1 | -52.6 | 0.2 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | ||
Sigma Aldrich | Standard | g | Yes | Lot/Batch Nr. LB95924V | Lindane | 99 | -26.2 | 0.3 | -118.8 | 0.5 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | ||||
Sigma Aldrich | Standard | g | Yes | Lot/Batch Nr. LB82216V | Lindane | 99 | -27.3 | 0.3 | -100 | 2 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | ||||
Chemical Services | Standard | g | Yes | Lot/Batch Nr. 463-156A | Lindane | 100 | -27.8 | 0.3 | -82 | 2 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | ||||
Dr. Ehrenstorfer | Standard | g | Yes | Lot/Batch Nr. C14073000 | Lindane | 99 | -28.8 | 0.3 | -0.85 | 0.1 | -62 | 2 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | ||
Bitterfeld-Wolfen | Standard | g | Yes | Lindane | 100 | -31 | 0.3 | -113.9 | 0.9 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | |||||
Unknown | Standard | g | Yes | Lindane | 96 | -25.8 | 0.3 | -0.54 | 0.1 | -119 | 1 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | |||
Unknown | Standard | g | Yes | Lindane | 97 | -28.8 | 0.3 | 0.15 | 0.1 | -63 | 2 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | |||
Unknown | Standard | g | Yes | Lindane | 97 | -25.5 | 0.3 | -65.3 | 0.8 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | |||||
Inquinosa | Standard | g | Yes | Cl2 from Aragonesas, Batch 255 | Lindane | 96 | -25.5 | 0.3 | -1.46 | 0.1 | -62.4 | 0.8 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | ||
Inquinosa | Standard | g | Yes | Cl2 from Aragonesas, Batch 254 | Lindane | 96 | -25.5 | 0.3 | -1.55 | 0.1 | -62.8 | 0.9 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | ||
Inquinosa | Standard | g | Yes | Cl2 from Aragonesas, Batch 253 | Lindane | 97 | -25.3 | 0.3 | -0.27 | 0.1 | -130.7 | 0 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | ||
Japa | Standard | g | Yes | Lindane | 98 | -28 | 0.3 | -73.5 | 0.1 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | |||||
Celamerk | Standard | g | Yes | Lindane | 98 | -26.5 | 0.3 | -65.1 | 0.9 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | |||||
Unknown | Standard | g | Yes | Lindane | 98 | -25.7 | 0.3 | -120 | 2 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | |||||
Unknown | Standard | g | Yes | Lindane | 97 | -25.6 | 0.3 | -56.3 | 0.1 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | |||||
Ciron | Standard | g | Yes | Lindane | 97 | -26.6 | 0.3 | -0.8 | 0.1 | -64.6 | 0.6 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | |||
Rhône Poulenc | Standard | g | Yes | Lindane | 100 | -28.7 | 0.3 | -0.64 | 0.1 | -15 | 1 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | |||
Maryland Heights | Standard | g | Yes | Lindane | 100 | -29.6 | 0.3 | -1.6 | 0.1 | -73.3 | 0.2 | 4 Methods | 10.1021/acs.est.6b03039 | Ivdra, N., et al., Carbon, Hydrogen and Chlorine Stable Isotope Fingerprinting for Forensic Investigations of Hexachlorocyclohexanes. Environmental Science & Technology, 2017. 51(1): p. 446-454. | |||
Supelco | Standard | g | Yes | 0.4 | 2.09 | GC-qMS | 10.1155/2021/8874679 | Zhang, J., S. H. Liu, J. Y. Gui, X. Y. Li and G. C. Qi, 2021.Compound-Specific Chlorine Isotope Analysis of Organochlorine Pesticides by Gas Chromatography-Negative Chemical Ionization Mass Spectrometry.Journal of Analytical Methods in Chemistry, 2021, | |||||||||
LGC/O2Si Standards | Standard | g | Yes | -5.58 | 2.72 | GC-qMS | 10.1155/2021/8874679 | Zhang, J., S. H. Liu, J. Y. Gui, X. Y. Li and G. C. Qi, 2021.Compound-Specific Chlorine Isotope Analysis of Organochlorine Pesticides by Gas Chromatography-Negative Chemical Ionization Mass Spectrometry.Journal of Analytical Methods in Chemistry, 2021, | |||||||||
Supelco | Standard | g | Yes | -26.31 | -1.09 | IRMS after conversion | 10.1016/S0146-6380(02)00004-9 | Drenzek, N. J., C. H. Tarr, T. I. Eglinton, L. J. Heraty, N. C. Sturchio, V. J. Shiner and C. M. Reddy, 2002.Stable chlorine and carbon isotopic compositions of selected semi-volatile organochlorine compounds.Organic Geochemistry, 33, 437-444. |