163
References
Aptian porcellanite from the west-central Pacific. Org.
Geochem., 35: 181-188.
B r ü c h e r t , V. , 1 9 9 8 . E a r l y d i a g e n e s i s o f s u l f u r i n
estuarine sediments: The role of sedimentary humic
and fulvic acids. Geochim. Cosmochim. Acta, 62:
1 5 6 7 - 1 5 8 6 .
Calvert, S.E., 1987. Oceanic controls on the accumulation
of organic matter in marine sediments. In: Brooks, J.
and Fleet, A.J. (eds), Marine petroleum source rocks.
Geol. Soc. Spec. Publ., 26, Blackwell, Oxford, pp. 137151.
Canuel, E.A. and Martens, C.S., 1996. Reactivity of recently
deposited organic matter: Degradation of lipid compounds
near the sediment-water interface. Geochim. Cosmochim.
Acta, 60: 1793-1806.
Collins, M.J., Bishop, A.N. and Farrimond, P., 1995. Sorption
by mineral surfaces: Rebirth of the classical condensation
pathway for kerogen formation? Geochim. Cosmochim.
Acta, 59: 2387-2391.
Coolen, M.J.L., Muyzer, G., Rijpstra, W.I.C., Schouten, S.,
Volkman, J.K. and Sinninghe Damsté, J.S., 2004.
Combined DNA and lipid analyses of sediments reveal
changes in Holocene haptophyte and diatom populations
in an Antarctic lake. Earth Planet. Sci. Lett., 223: 225239.
Corbet, B., Albrecht, A. and Ourisson, G., 1980. Photochemical
or photomimetic fossil triterpenoids in sediments and
petroleum. J. Am. Chem. Soc., 78: 183-188.
Cornford, C., Rullkötter, J. and Welte, D., 1979. Organic
geochemistry of DSDP Leg 47a, Site 397, eastern North
Atlantic: Organic petrography and extractable
hydrocarbons. In: von Rad, U., Ryan, W.B.F. et al. (eds),
Initial Reports DSDP, 47, US Government Printing Office,
Washington, DC, pp. 511-522.
Cowie, G.L. and Hedges, J.I., 1984. Determination of neutral
sugars in plankton, sediments, and wood by capillary gas
chromatography of equilibrated isomeric mixtures. Anal.
Chem., 56: 497-504.
Cranwell, P.A., 1973. Chain-length distribution of n-alkanes
from lake sediments in relation to postglacial environments.
Freshw. Biol., 3: 259-265.
de Leeuw, J.W., Cox, H.C., van Graas, G., van de Meer, F.W.,
Peakman, T.M., Baas, J.M.A. and van de Graaf, B., 1989.
Limited double bond isomerisation and selective
hydrogenation of sterenes during early diagenesis. Geochim.
Cosmochim. Acta, 53: 903-909.
de Leeuw, J.W. and Sinninghe Damsté, J.S., 1990. Organic
sulphur compounds and other biomarkers as indicators of
palaeosalinity: A critical evaluation. In: Orr, W.L. and
White, C.M. (eds), Geochemistry of sulphur in fossil fuels,
ACS symposium series, 429, American Chemical Society,
Washington, DC, pp. 417-443.
de Leeuw, J.W. and Largeau, C., 1993. A review of
macromolecular organic compounds that comprise living
organisms and their role in kerogen, coal and petroleum
formation. In: Engel, M.H. and Macko, S.A. (eds), Organic
geochemistry. Principles and applications. Plenum Press,
NY, pp 23-72.
de Leeuw, J.W., 2004. Mass Spectra of Geochemicals,
Petrochemicals and Biomarkers. Wiley, CD-ROM.
Degens, E.T. and Ittekot, V., 1987. The carbon cycle - tracking
the path of organic particles from sea to sediment. , In:
Brooks, J. and Fleet, A. (eds), Marine petroleum source
rocks. Geol. Soc. Spec. Publ. No. 26, Blackwell, Oxford,
pp. 121-135.
Demaison, G.J., 1991. Anoxia vs productivity: What controls
the formation of organic-carbon-rich sediments and
sedimentary rocks? Discussion. Bull. Am. Assoc. Petrol.
Geol., 75: 499.
Demaison, G.J. and Moore, G.T., 1980. Anoxic environments
and oil source bed genesis. Bull. Am. Assoc. Petrol. Geol.,
64: 1179-1209.
D’Hondt., S., Rutherford., S. and Spivack, A.J., 2002. Metabolic
activity of subsurface life in deep-sea sediments. Science,
295: 2067-2070.
Dumitrescu, M. and Brassell, S.C., 2005. Biogeochemical
assessment of sources of organic matter and
paleoproductivity during the Early Aptian Oceanic Anoxic
Event at Shatsky Rise, ODP Leg 198. Org. Geochem., 36:
1002-1022.
Durand, B., 1980. Kerogen. Insoluble organic matter from
sedimentary rocks. Editions Technip, Paris, 519 pp.
Eglinton, G, and Hamilton, R.J., 1967. Leaf epicuticular waxes.
Science, 156: 1322-1335.
Eglinton, T.I., Benitez-Nelson, B.C., Pearson, A.,
McNichol, A.P., Bauer, J.E. and Druffel, E.R.M., 1997.
Variability in radiocarbon ages of individual organic
compounds from marine sediments. Science, 277: 796799.
Elvert, M., Boetius, A., Knittel, K. and Jørgensen, B.B., 2003.
Characterization of specific membrane fatty acids as
chemotaxonomic markers for sulfate-reducing bacteria
involved in anaerobic oxidation of methane. Geomicrobiol.
J., 20: 403-419.
Emeis, K.-C., Robertson, A.H.F., Richter, C. et al. (eds) 1996.
Proceedings of the Ocean Drilling Program. Initial Reports,
160, ODP, College Station (TX), 972 pp.
Emerson, S. and Hedges, J.I., 1988. Processes controlling the
organic carbon content of open ocean sediments.
Paleoceanography, 3: 621-634.
Espitalié, J., LaPorte, J.L., Madec, M., Marquis, F., Leplat,
P., Paulet, J. and Boutefeu, A., 1977. Méthode rapide de
caractérisation des roches mères, de leur potentiel
pétrolier et de leur degré d’évolution. Rev. Inst. Fr. Pét.,
32: 23-42.
Espitalié, J., Deroo, G. and Marquis, F., 1985. La pyrolyse
Rock-Eval et ses applications. Rev. Inst. Fr. Pét., 40: 755784.
Fogel, M.L. and Cifuentes, L.A., 1993. Isotope fractionation
during primary production. In: Engel, M.H. and Macko,
S.A. (eds), Organic geochemistry. Principles and
applications. Plenum Press, NY, pp 73-98.
Freeman, K.H., Boreham, C.J., Summons, R.E. and Hayes, J.M.,
1994. The effect of aromatization on the isotopic
compositions of hydrocarbons during early diagenesis. Org.
Geochem., 21: 1037-1049.
Froelich, P.N., Klinkhammer, G.P., Bender, M.L., Luedtke, N.A.,
Heath, G.R., Cullen, D., Dauphin, P., Hammond, D.,
Hartmann, B. and Maynard, V., 1979. Early oxidation of
organic matter in pelagic sediments of eastern equatorial
Atlantic: Suboxic diagenesis. Geochim. Cosmochim. Acta,
43: 1075-1090.
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