4
Organic Matter: The Driving Force for Early Diagenesis
168
Baldauf, J. and Lyle, M. (eds), Proceedings of the Ocean
Drilling Program, Sci. Res., 146, ODP, College Station (TX),
pp. 125-138.
Stein, R. and Macdonald, R.W. (eds) 2005. The organic carbon
cycle in the Arctic Ocean. Springer-Verlag, Berlin, 363 pp.
Suess, E. and Thiede, J. (eds) 1983. Coastal upwelling: Its
sediment record. Part A: Responses of the sedimentary
regime to present coastal upwelling. Plenum Press, NY,
604 pp.
Summerhayes, C.P., 1981. Organic facies of middle Cretaceous
black shales in deep North Atlantic. Bull. Am. Assoc. Petrol.
Geol., 65: 2364-2380.
Summerhayes, C.P., Prell, P.I. and Emeis, K.C. (eds) 1992.
Upwelling systems: Evolution since the early Miocene.
Geol. Soc. Spec. Publ., 64, Blackwell, Oxford, 519 pp.
Takahasi, T., Broecker, W.S. and Langer, S., 1985. Redfield
ratio based on chemical data from isopycnal surfaces. J.
Geophys. Res., 90: 6907-6924.
Taylor, G.H., Teichmüller, M., Davis, A., Diessel, C.F.K., Littke,
R. and Robert, P. (eds) 1998. Organic petrology: A new
handbook incorporating some revised parts of Stach’s textbook
of coal petrology. Gebrüder Borntraeger, Berlin, 704 pp.
Tegelaar, E.W., Derenne, S., Largeau, C. and de Leeuw, J.W.,
1989. A reappraisal of kerogen formation. Geochim.
Cosmochim. Acta, 53: 3103-3107.
ten Haven, H.L., Peakman, T.M. and Rullkötter, J., 1992.
Early diagenetic transformation of higher plant
triterpenoids in deep sea sediments from Baffin Bay.
Geochim. Cosmochim. Acta, 56: 2001-2024.
Thiede, J. and Suess, E. (eds) 1983. Coastal upwelling: Its sediment
record. Part B: Sedimentary records of ancient coastal
upwelling. Plenum Press, NY, 610 pp.
Tissot, B.P. and Welte, D.H., 1984. Petroleum formation and
occurrence. Springer-Verlag, Heidelberg, 699 pp.
Tyson, R.V., 1987. The genesis and palynofacies characteristics
of marine petroleum source rocks. In: Brooks, J. and Fleet,
A.J. (eds), Marine petroleum source rocks. Geol. Soc. Spec.
Publ., 26, Blackwell, Oxford, pp. 47-67.
Tyson, R.V. and Pearson, T.H. (eds) 1991. Modern and ancient
continental shelf anoxia. Geol. Soc. Spec. Publ., 58,
Blackwell, Oxford, 470 pp.
van Bergen, P.F., Blokker, P., Collinson, M.E., Sinninghe Damsté,
J.S. and de Leeuw, J.W., 2004. Structural biomacromolecules
in plants: What can be learnt from the fossil record. In:
Hemsley, A.R. and Poole, I. (eds), Evolution of plant
physiology. Elsevier, Amsterdam, pp. 133-154.
van Krevelen, D.W., 1961. Coal typology – chemistry – physics
– constitution. Elsevier, Amsterdam, 513 pp.
Vetö, I., Hetényi, M., Demény, A. and Hertelendi, E., 1994. Hydrogen
index as reflecting intensity of sulphide diagenesis in nonbioturbated, shaly sediments. Org. Geochem., 22: 299-310.
Volkman, J.K. and Maxwell, J.R., 1986. Acyclic isoprenoids as
biological markers. In: Johns, R.B. (ed), Biological markers
in the sedimentary record. Elsevier, Amsterdam, pp. 1-42.
Volkman, J.K., Barrett, S.M., Blackburn, S.I., Mansour, M.P., Sikes,
E. and Gelin, F., 1998. Microalgal biomarkers: A review of
recent research developments. Org. Geochem., 29: 1163-1179.
Volkman, J.K., 2005. Sterols and other triterpenoids: Source
specificity and evolution of biosynthetic pathways. Org.
Geochem. 36: 139-159.
von Engelhardt, W., 1973. Sedimentpetrologie, Teil III: Die
Bildung von Sedimenten und Sedimentgesteinen (in German).
Schweizerbarth, Stuttgart, 378 pp.
von Rad, U., Ryan, W.B.F. et al. (eds) 1979. Initial Reports
DSDP 47, US Government Printing Office, Washington,
D.C., 835 pp.
Wakeham, S.G. and Lee, C., 1989. Organic geochemistry of
particulate matter in the ocean: The role of particles in
oceanic sedimentary cycles. Org Geochem., 14: 83-96.
Wakeham, S.G., Lewis, C.M., Hopmans, E.C., Schouten, S. and
Sinninghe Damsté, J.S., 2003. Archaea mediate anaerobic
oxidation of methane in deep euxinic waters of the Black
Sea. Geochim. Cosmochim. Acta, 67: 1359-1374.
Wellsbury, P., Mather, I.D. and Parkes, R.J., 2002.
Geomicrobiology of deep, low organic carbon sediments in
the Woodlark Basin, Pacific Ocean. FEMS Microbiol. Ecol.,
42: 59-70.
Welte, D.H., Horsfield, B. and Baker, D.R. (eds) 1997. Petroleum
and basin evolution. Springer-Verlag, Heidelberg, 535 pp.
Wenger, L.M. and Baker, D.R., 1986. Variations in organic
geochemistry of anoxic-oxic black shale-carbonate
sequences in the Pennsylvanian of the Midcontinent, U.S.A.
Org. Geochem., 10: 85-92.
Westerhausen, L., Poynter, J., Eglinton, G., Erlenkeuser, H.
and Sarnthein, M., 1993. Marine and terrigenous origin of
organic matter in modern sediments of the equatorial East
Atlantic: The δ
13
C and molecular record. Deep-Sea Res. I,
40: 1087-1121.
Willsch, H., Clegg, H., Horsfield, B., Radke, M. and Wilkes, H.,
1997. Liquid chromatographic separation of sediment, rock,
and coal extracts and crude oils into compound classes.
Anal. Chem., 69: 4203-4209.
Wuchter, C., Schouten, S., Coolen, M.J.L. and Sinninghe
Damsté, J.S., 2004. Temperature-dependent variation in
the distribution of tetraether membrane lipids of marine
Crenarchaeota: Implications for TEX 86 paleothermometry. Paleoceanography, 19: PA4028, doi:10.1029/
2004PA001041.
Organic Matter: The Driving Force for Early Diagenesis
168
Baldauf, J. and Lyle, M. (eds), Proceedings of the Ocean
Drilling Program, Sci. Res., 146, ODP, College Station (TX),
pp. 125-138.
Stein, R. and Macdonald, R.W. (eds) 2005. The organic carbon
cycle in the Arctic Ocean. Springer-Verlag, Berlin, 363 pp.
Suess, E. and Thiede, J. (eds) 1983. Coastal upwelling: Its
sediment record. Part A: Responses of the sedimentary
regime to present coastal upwelling. Plenum Press, NY,
604 pp.
Summerhayes, C.P., 1981. Organic facies of middle Cretaceous
black shales in deep North Atlantic. Bull. Am. Assoc. Petrol.
Geol., 65: 2364-2380.
Summerhayes, C.P., Prell, P.I. and Emeis, K.C. (eds) 1992.
Upwelling systems: Evolution since the early Miocene.
Geol. Soc. Spec. Publ., 64, Blackwell, Oxford, 519 pp.
Takahasi, T., Broecker, W.S. and Langer, S., 1985. Redfield
ratio based on chemical data from isopycnal surfaces. J.
Geophys. Res., 90: 6907-6924.
Taylor, G.H., Teichmüller, M., Davis, A., Diessel, C.F.K., Littke,
R. and Robert, P. (eds) 1998. Organic petrology: A new
handbook incorporating some revised parts of Stach’s textbook
of coal petrology. Gebrüder Borntraeger, Berlin, 704 pp.
Tegelaar, E.W., Derenne, S., Largeau, C. and de Leeuw, J.W.,
1989. A reappraisal of kerogen formation. Geochim.
Cosmochim. Acta, 53: 3103-3107.
ten Haven, H.L., Peakman, T.M. and Rullkötter, J., 1992.
Early diagenetic transformation of higher plant
triterpenoids in deep sea sediments from Baffin Bay.
Geochim. Cosmochim. Acta, 56: 2001-2024.
Thiede, J. and Suess, E. (eds) 1983. Coastal upwelling: Its sediment
record. Part B: Sedimentary records of ancient coastal
upwelling. Plenum Press, NY, 610 pp.
Tissot, B.P. and Welte, D.H., 1984. Petroleum formation and
occurrence. Springer-Verlag, Heidelberg, 699 pp.
Tyson, R.V., 1987. The genesis and palynofacies characteristics
of marine petroleum source rocks. In: Brooks, J. and Fleet,
A.J. (eds), Marine petroleum source rocks. Geol. Soc. Spec.
Publ., 26, Blackwell, Oxford, pp. 47-67.
Tyson, R.V. and Pearson, T.H. (eds) 1991. Modern and ancient
continental shelf anoxia. Geol. Soc. Spec. Publ., 58,
Blackwell, Oxford, 470 pp.
van Bergen, P.F., Blokker, P., Collinson, M.E., Sinninghe Damsté,
J.S. and de Leeuw, J.W., 2004. Structural biomacromolecules
in plants: What can be learnt from the fossil record. In:
Hemsley, A.R. and Poole, I. (eds), Evolution of plant
physiology. Elsevier, Amsterdam, pp. 133-154.
van Krevelen, D.W., 1961. Coal typology – chemistry – physics
– constitution. Elsevier, Amsterdam, 513 pp.
Vetö, I., Hetényi, M., Demény, A. and Hertelendi, E., 1994. Hydrogen
index as reflecting intensity of sulphide diagenesis in nonbioturbated, shaly sediments. Org. Geochem., 22: 299-310.
Volkman, J.K. and Maxwell, J.R., 1986. Acyclic isoprenoids as
biological markers. In: Johns, R.B. (ed), Biological markers
in the sedimentary record. Elsevier, Amsterdam, pp. 1-42.
Volkman, J.K., Barrett, S.M., Blackburn, S.I., Mansour, M.P., Sikes,
E. and Gelin, F., 1998. Microalgal biomarkers: A review of
recent research developments. Org. Geochem., 29: 1163-1179.
Volkman, J.K., 2005. Sterols and other triterpenoids: Source
specificity and evolution of biosynthetic pathways. Org.
Geochem. 36: 139-159.
von Engelhardt, W., 1973. Sedimentpetrologie, Teil III: Die
Bildung von Sedimenten und Sedimentgesteinen (in German).
Schweizerbarth, Stuttgart, 378 pp.
von Rad, U., Ryan, W.B.F. et al. (eds) 1979. Initial Reports
DSDP 47, US Government Printing Office, Washington,
D.C., 835 pp.
Wakeham, S.G. and Lee, C., 1989. Organic geochemistry of
particulate matter in the ocean: The role of particles in
oceanic sedimentary cycles. Org Geochem., 14: 83-96.
Wakeham, S.G., Lewis, C.M., Hopmans, E.C., Schouten, S. and
Sinninghe Damsté, J.S., 2003. Archaea mediate anaerobic
oxidation of methane in deep euxinic waters of the Black
Sea. Geochim. Cosmochim. Acta, 67: 1359-1374.
Wellsbury, P., Mather, I.D. and Parkes, R.J., 2002.
Geomicrobiology of deep, low organic carbon sediments in
the Woodlark Basin, Pacific Ocean. FEMS Microbiol. Ecol.,
42: 59-70.
Welte, D.H., Horsfield, B. and Baker, D.R. (eds) 1997. Petroleum
and basin evolution. Springer-Verlag, Heidelberg, 535 pp.
Wenger, L.M. and Baker, D.R., 1986. Variations in organic
geochemistry of anoxic-oxic black shale-carbonate
sequences in the Pennsylvanian of the Midcontinent, U.S.A.
Org. Geochem., 10: 85-92.
Westerhausen, L., Poynter, J., Eglinton, G., Erlenkeuser, H.
and Sarnthein, M., 1993. Marine and terrigenous origin of
organic matter in modern sediments of the equatorial East
Atlantic: The δ
13
C and molecular record. Deep-Sea Res. I,
40: 1087-1121.
Willsch, H., Clegg, H., Horsfield, B., Radke, M. and Wilkes, H.,
1997. Liquid chromatographic separation of sediment, rock,
and coal extracts and crude oils into compound classes.
Anal. Chem., 69: 4203-4209.
Wuchter, C., Schouten, S., Coolen, M.J.L. and Sinninghe
Damsté, J.S., 2004. Temperature-dependent variation in
the distribution of tetraether membrane lipids of marine
Crenarchaeota: Implications for TEX 86 paleothermometry. Paleoceanography, 19: PA4028, doi:10.1029/
2004PA001041.
