30
A. G. RYDER
98 H. Groenzin and O. C. Mullins, Molecular size and structure of asphaltenes from various sources, Energy
& Fuels 14(3), 677-684 (2000).
99 H. Groenzin, O. C. Mullins, S. Eser, J. Mathews, M. G. Yang, and D. Jones, Molecular size of asphaltene
solubility fractions, Energy & Fuels 17(2), 498-503 (2003).
100 L. Buch, H. Groenzin, E. Buenrostro-Gonzalez, S.I. Andersen, C. Lira-Galeana, and O. C. Mullins,
Molecular size of asphaltene fractions obtained from residuum hydrotreatment, Fuel 82(9), 1075-1084
(2003).
101 G. K. Khorasani and J. K. Michelsen, Four-dimensional fluorescence imaging of oil generation:
development of a new fluorescence imaging technique, Org. Geochem. 22(1), 211-223 (1995).
102 J. R. Kershaw and J. C. Fetzer, The room-temperature fluorescence analysis of polycyclic aromaticcompounds in petroleum and related materials, Polycycl. Aromat. Comp. 7(4), 253-268 (1995).
103 H. G. Lohmannsroben and T. Roch, In situ laser-induced fluorescence (LIF) analysis of petroleum
product-contaminated soil samples, J. Environ. Monitor. 2(1), 17-22 (2000).
104 P. E. Kepkay, J. B. C. Bugden, K. Lee, and P. Stoffyn-Egli, Application of ultraviolet fluorescence
spectroscopy to monitor oil–mineral aggregate formation, Spill Sci. Technol. B. 8(1), 101-108
(2002).
105 B. T. Hargrave and G. A. Phillips, Estimates of oil in aquatic sediments by fluorescence spectroscopy,
Environ. Pollut. 8(3), 193-215 (1975).
106 S. S. Al-Lihaibi and L. Al-Omran, Petroleum hydrocarbons in offshore sediments from the gulf,
Mar. Pollut. Bull. 32(1), 65-69 (1996).
107 P. Lianos, J. Lang, J. Sturm, and R. Zana, Fluorescence-probe study of oil-in-water microemulsions. 3.
further investigations involving other surfactants and oil mixtures. J. Phys. Chem. 88(4), 819-822
(1984).
108 M. Picer, Simple spectrofluorometry methods for estimating petroleum hydrocarbons levels in various sea
benthic organisms, Chemosphere 37(4), 607-617 (1998).
109 W. L. Huang and G. A. Otten, Cracking kinetics of crude oil and alkanes determined by diamond anvil
cell-fluorescence spectroscopy pyrolysis: technique development and preliminary results, Org.
Geochem. 32(6), 817-830 (2001).
110 E. Hegazi, A. Hamdan, and J. Mastromarino, New approach for spectral characterization of crude oil
using time-resolved fluorescence spectra, Appl. Spectrosc. 55(2), 202-207 (2001).
111 E. Hegazi and A. Hamdan, Estimation of crude oil grade using time-resolved fluorescence spectra,
Talanta 56(6), 989-995 (2002).
A. G. RYDER
98 H. Groenzin and O. C. Mullins, Molecular size and structure of asphaltenes from various sources, Energy
& Fuels 14(3), 677-684 (2000).
99 H. Groenzin, O. C. Mullins, S. Eser, J. Mathews, M. G. Yang, and D. Jones, Molecular size of asphaltene
solubility fractions, Energy & Fuels 17(2), 498-503 (2003).
100 L. Buch, H. Groenzin, E. Buenrostro-Gonzalez, S.I. Andersen, C. Lira-Galeana, and O. C. Mullins,
Molecular size of asphaltene fractions obtained from residuum hydrotreatment, Fuel 82(9), 1075-1084
(2003).
101 G. K. Khorasani and J. K. Michelsen, Four-dimensional fluorescence imaging of oil generation:
development of a new fluorescence imaging technique, Org. Geochem. 22(1), 211-223 (1995).
102 J. R. Kershaw and J. C. Fetzer, The room-temperature fluorescence analysis of polycyclic aromaticcompounds in petroleum and related materials, Polycycl. Aromat. Comp. 7(4), 253-268 (1995).
103 H. G. Lohmannsroben and T. Roch, In situ laser-induced fluorescence (LIF) analysis of petroleum
product-contaminated soil samples, J. Environ. Monitor. 2(1), 17-22 (2000).
104 P. E. Kepkay, J. B. C. Bugden, K. Lee, and P. Stoffyn-Egli, Application of ultraviolet fluorescence
spectroscopy to monitor oil–mineral aggregate formation, Spill Sci. Technol. B. 8(1), 101-108
(2002).
105 B. T. Hargrave and G. A. Phillips, Estimates of oil in aquatic sediments by fluorescence spectroscopy,
Environ. Pollut. 8(3), 193-215 (1975).
106 S. S. Al-Lihaibi and L. Al-Omran, Petroleum hydrocarbons in offshore sediments from the gulf,
Mar. Pollut. Bull. 32(1), 65-69 (1996).
107 P. Lianos, J. Lang, J. Sturm, and R. Zana, Fluorescence-probe study of oil-in-water microemulsions. 3.
further investigations involving other surfactants and oil mixtures. J. Phys. Chem. 88(4), 819-822
(1984).
108 M. Picer, Simple spectrofluorometry methods for estimating petroleum hydrocarbons levels in various sea
benthic organisms, Chemosphere 37(4), 607-617 (1998).
109 W. L. Huang and G. A. Otten, Cracking kinetics of crude oil and alkanes determined by diamond anvil
cell-fluorescence spectroscopy pyrolysis: technique development and preliminary results, Org.
Geochem. 32(6), 817-830 (2001).
110 E. Hegazi, A. Hamdan, and J. Mastromarino, New approach for spectral characterization of crude oil
using time-resolved fluorescence spectra, Appl. Spectrosc. 55(2), 202-207 (2001).
111 E. Hegazi and A. Hamdan, Estimation of crude oil grade using time-resolved fluorescence spectra,
Talanta 56(6), 989-995 (2002).
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