Benzo[e]pyrene

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Lee's RI, non-polar column, temperature ramp

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Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Data compiled by: NIST Mass Spectrometry Data Center, William E. Wallace, director

Column type CapillaryCapillaryCapillaryCapillaryCapillary
Active phase PE-55 % Phenyl methyl siloxane5 % Phenyl methyl siloxaneHP-5HP-5
Column length (m) 20.  30.60.
Carrier gas    HeliumHe
Substrate      
Column diameter (mm) 0.18  0.250.25
Phase thickness (μm) 0.18  0.250.25
Tstart (C) 50.50.80.50.35.
Tend (C) 345.250.300.310.300.
Heat rate (K/min) 8.2.8.6.3.
Initial hold (min) 1.5 2.1.5 
Final hold (min)   10.10. 
I 453.3450.73451.80453.12452.7
ReferenceJamoussi, Kanzari, et al., 2007Skrbic and Onjia, 2006Skrbic and Onjia, 2006Pedersen, Durant, et al., 2005Marynowski, Pieta, et al., 2004
Comment MSDC-RI MSDC-RI MSDC-RI MSDC-RI MSDC-RI
Column type CapillaryCapillaryCapillaryCapillaryCapillary
Active phase DB-5MSHP-5SE-54DB-5SPB-5
Column length (m) 30.30.30.25.30.
Carrier gas    He 
Substrate      
Column diameter (mm) 0.250.250.250.30.25
Phase thickness (μm) 0.50.25   
Tstart (C) 40.50.50.60.40.
Tend (C) 310.280.300.270.300.
Heat rate (K/min) 4.4.4.5.4.
Initial hold (min) 1.2. 2.2.
Final hold (min)  20.   
I 452.22451.28452.36451.53454.1
ReferenceChen, Keeran, et al., 2002Piao, Chu, et al., 1999Chen, 1996Williams and Horne, 1995Knobloch and Engewald, 1993
Comment MSDC-RI MSDC-RI MSDC-RI MSDC-RI MSDC-RI
Column type CapillaryCapillaryCapillaryCapillaryCapillary
Active phase CP Sil 8 CBHP-5SE-52SE-54DB-5
Column length (m) 25.25.25.25.30.
Carrier gas HeHeHeHeHe
Substrate      
Column diameter (mm) 0.250.20.320.320.25
Phase thickness (μm) 0.130.110.1250.1250.2
Tstart (C) 60.60.60.60.60.
Tend (C) 280.280.280.280.280.
Heat rate (K/min) 6.6.6.6.6.
Initial hold (min)      
Final hold (min)      
I 449.4452.4452.7453.1451.1
ReferenceAceves and Grimalt, 1992Aceves and Grimalt, 1992Aceves and Grimalt, 1992Aceves and Grimalt, 1992Aceves and Grimalt, 1992
Comment MSDC-RI MSDC-RI MSDC-RI MSDC-RI MSDC-RI
Column type CapillaryCapillaryCapillaryCapillaryPacked
Active phase SE-54DB-5DB-5DB-5Methyl Silicone
Column length (m) 20.30.30.30. 
Carrier gas He  He 
Substrate      
Column diameter (mm) 0.220.320.250.25 
Phase thickness (μm) 0.200.250.25  
Tstart (C) 50.80.40.90.100.
Tend (C) 300.290.280.325.275.
Heat rate (K/min) 4.3.4.4.2.
Initial hold (min)  1.2.  
Final hold (min)   5.  
I 452.86451.24452.70452.85449.8
ReferenceGuillén, Blanco, et al., 1989Sye, Lin, et al., 1988Wise, Benner, et al., 1988Tong, Centen, et al., 1985Shlyakhov, 1984
Comment MSDC-RI MSDC-RI MSDC-RI MSDC-RI MSDC-RI
Column type CapillaryCapillary
Active phase SE-52SE-52
Column length (m) 20.12.
Carrier gas H2He
Substrate   
Column diameter (mm) 0.300.3
Phase thickness (μm) 0.250.34
Tstart (C) 40.50.
Tend (C) 265.250.
Heat rate (K/min) 4.2.
Initial hold (min) 2. 
Final hold (min)   
I 452.29450.73
ReferenceVassilaros, Kong, et al., 1982Lee, Vassilaros, et al., 1979
Comment MSDC-RI MSDC-RI

References

Go To: Top, Lee's RI, non-polar column, temperature ramp, Notes

Data compilation copyright by the U.S. Secretary of Commerce on behalf of the U.S.A. All rights reserved.

Jamoussi, Kanzari, et al., 2007
Jamoussi, B.; Kanzari, F.; Hassine, B.B.; Abderrabba, A., Using Bezier curves for the calculation of retention indices of polycyclic aromatic hydrocarbons in the so-called Lee's scale in temperature-programmed gas chromatography with mass spectrometry detection, J. Chromatogr. Sci., 2007, 45, 1, 22-27, https://doi.org/10.1093/chromsci/45.1.22 . [all data]

Skrbic and Onjia, 2006
Skrbic, B.; Onjia, A., Prediction of Lee Retention Indices of Polycyclic Aromatic Hydrocarbons by Artificial Neural Networks, J. Chromatorg. A, 2006, 1108, 2, 279-284, https://doi.org/10.1016/j.chroma.2006.01.080 . [all data]

Pedersen, Durant, et al., 2005
Pedersen, D.U.; Durant, J.L.; Taghizadeh, K.; Hemond, H.F.; Lafleur, A.L.; Cass, G.R., Human cell mutagenes in respirable airborne particles from the Northeastern United States. 2. Quantification of mutagenes and other organic compounds., Environ. Sci. Technol., 2005, 39, 24, 9547-9560, https://doi.org/10.1021/es050886c . [all data]

Marynowski, Pieta, et al., 2004
Marynowski, L.; Pieta, M.; Janeczek, J., Composition and source of polycyclic aromatic compounds in deposited dust from selected sites around the Upper Silesia, Poland, Geol. Q., 2004, 48, 2, 169-180. [all data]

Chen, Keeran, et al., 2002
Chen, P.H.; Keeran, W.S.; Van Ausdale, W.A.; Schindler, D.R.; Roberts, D.W., Application of Lee retention indices to the confirmation of tentatively identified compounds from GC/MS analysis of environmental samples, Technical paper, Analytical Services Division, Environmental ScienceEngineering, Inc, PO Box 1703, Gainesville, FL 32602, 2002, 11. [all data]

Piao, Chu, et al., 1999
Piao, M.; Chu, S.; Zheng, M.; Xu, X., Characterization of the combustion products of polyethylene, Chemosphere, 1999, 39, 9, 1497-1512, https://doi.org/10.1016/S0045-6535(99)00054-5 . [all data]

Chen, 1996
Chen, J., GC and GC/MS methods for the analysis of polycyclic aromatic hydrocarbon (PAH) in sediment of the grand canal of China, Toxicol. Environ. Chem., 1996, 54, 1-4, 69-73, https://doi.org/10.1080/02772249609358297 . [all data]

Williams and Horne, 1995
Williams, P.T.; Horne, P.A., Analysis of aromatic hydrocarbons in pyrolytic oil derived from biomass, J. Anal. Appl. Pyrolysis, 1995, 31, 15-37, https://doi.org/10.1016/0165-2370(94)00814-H . [all data]

Knobloch and Engewald, 1993
Knobloch, T.; Engewald, W., Identification of some polar polycyclic compounds in emissions from brown-coal-fired residential stoves, J. Hi. Res. Chromatogr., 1993, 16, 4, 239-242, https://doi.org/10.1002/jhrc.1240160407 . [all data]

Aceves and Grimalt, 1992
Aceves, M.; Grimalt, J.O., Gas chromatographic screening of organic compounds in urban aerosols. Selectivity effects in semi-polar columns, J. Chromatogr., 1992, 607, 2, 261-270, https://doi.org/10.1016/0021-9673(92)87084-L . [all data]

Guillén, Blanco, et al., 1989
Guillén, M.D.; Blanco, J.; Bermejo, J.; Blanco, C.G., Temperature programmed retention indices of some PAHs on Capillary columns coated with OV-1701 and SE-54, J. Hi. Res. Chromatogr., 1989, 12, 8, 552-554, https://doi.org/10.1002/jhrc.1240120816 . [all data]

Sye, Lin, et al., 1988
Sye, W.-F.; Lin, C.-L.; Yen, D.-P.; Tsai, C.-S., Polycyclic aromatic-hydrocarbons formation from luel and additives combustion, J. Chinese Chem. Soc., 1988, 35, 1, 1-11. [all data]

Wise, Benner, et al., 1988
Wise, S.A.; Benner, B.A.; Byrd, G.D.; Chesler, S.N.; Rebbert, R.E.; Schantz, M.M., Determination of polycyclic aromatic hydrocarbons in a coal tar standard reference material, Anal. Chem., 1988, 60, 9, 887-894, https://doi.org/10.1021/ac00160a012 . [all data]

Tong, Centen, et al., 1985
Tong, H.Y.; Centen, J.D.; Karasek, F.W.; Jellum, E.; Helland, P., Identification of Trace Organic Compounds in Dimethyl Sulphoxide Solution Using High-Performance Liquid Chromatography and Gas Chromatography-Mass Spectrometry, J. Chromatogr., 1985, 324, 373-383, https://doi.org/10.1016/S0021-9673(01)81336-4 . [all data]

Shlyakhov, 1984
Shlyakhov, A.F., Gas chromatography in organic geochemistry, Nedra, Moscow, 1984, 221. [all data]

Vassilaros, Kong, et al., 1982
Vassilaros, D.L.; Kong, R.C.; Later, D.W.; Lee, M.L., Linear retention index system for polycyclic aromatic compounds. Critical evaluation and additional indices, J. Chromatogr., 1982, 252, 1-20, https://doi.org/10.1016/S0021-9673(01)88394-1 . [all data]

Lee, Vassilaros, et al., 1979
Lee, M.L.; Vassilaros, D.L.; White, C.M.; Novotny, M., Retention Indices for Programmed-Temperature Capillary-Column Gas Chromatography of Polycyclic Aromatic Hydrocarbons, Anal. Chem., 1979, 51, 6, 768-773, https://doi.org/10.1021/ac50042a043 . [all data]


Notes

Go To: Top, Lee's RI, non-polar column, temperature ramp, References