REFERENCES

Baker, P.A., and Burns, S.J., 1985. The occurrence and formation of dolomite in organic-rich continental margin sediments. AAPG Bull., 69:1917-1930.

Baker, P.A., and Kastner, M., 1981. Constraints on the formation of sedimentary dolomite. Science, 213:215-216.

Barker, C.E., and Kopp, O.C., 1991. Luminescence Microscopy and Spectroscopy: Qualitative and Quantitative Applications. SEPM Short Course, 25.

Berger, W.H., Wefer, G., Richter, C., Lange, C.B., Giraudeau, J., Hermelin, O., and Shipboard Scientific Party, 1998. The Angola-Benguela upwelling system: paleoceanographic synthesis of shipboard results from Leg 175. In Wefer, G., Berger, W.H., and Richter, C., et al., Proc. ODP, Init. Repts., 175: College Station, TX (Ocean Drilling Program), 505-531.

Berner, R.A., 1984. Sedimentary pyrite formation: an update. Geochim. Cosmochim. Acta, 48:605-615.

————, 1985. Sulfate reduction, organic matter decomposition, and pyrite formation. Philos. Trans. R. Soc. London, 315:25-38.

Burns, S.J., and Baker, P.A., 1987. A geochemical study of dolomite in the Monterey formation, California. J. Sediment. Petrol., 57:128-139.

Claypool, G.E., and Kaplan, I.R., 1974. The origin and distribution of methane in marine sediments. In Kaplan, I.R. (Ed.), Natural Gases in Marine Sediments: New York (Plenum), 99-139.

Compton, J.S., 1988. Degree of supersaturation and precipitation of organogenic dolomite. Geology, 16:318-321.

Compton, J.S., Donald, H.L., Mallinson, D.J., and Hodell, D.A., 1994. Origin of dolomite in the phosphatic Miocene Hawthorn Group of Florida. J. Sediment. Res., 64:638-649.

Compton, J.S., and Siever, R., 1986. Diffusion and mass balance of Mg during early dolomite formation, Monterey Formation. Geochim. Cosmochim. Acta, 50:125-135.

Friedman, I., and Murata, K.J., 1979. Origin of dolomite in Miocene Monterey shale and related formations of the Temblor Range, California. Geochim. Cosmochim. Acta, 43:1357-1365.

Froelich, P.N., Klinkhammer, G.P., Bender, M.L., Luedtke, N.A., Heath, G.R., Cullen, D., Dauphin, P., Hammond, D., Hartman, B., and Maynard, V., 1979. Early oxidation of organic matter in pelagic sediments of the eastern equatorial Atlantic: suboxic diagenesis. Geochim. Cosmochim. Acta, 43:1075-1090.

Garrison, R.E., Kastner, M., and Zenger, D.H., 1984. Dolomites of the Monterey Formation and Other Organic-Rich Units. Soc. Econ. Paleontol. Mineral., Pacific Sect., 41.

Hardie, L.A., 1987. Dolomitization: a critical view of some current views. J. Sediment. Petrol., 57:166-183.

Hay, W.W., Sibuet, J.-C., et al., 1984. Init. Repts. DSDP, 75: Washington (U.S. Govt. Printing Office).

Hesse, R., 1990. Early diagenetic pore water/sediment interaction: modern offshore basins. In McIlreath, I.A., and Morrow, D.W. (Eds.), Diagenesis: Ottawa, ON (Geoscience Canada), 277-316.

Irwin, H., Curtis, C., and Coleman, M., 1977. Isotopic evidence for source of diagenetic carbonates formed during burial of organic-rich sediments. Nature, 269:209-213.

Kastner, M., Elderfield, H., Martin, J.B., Suess, E., Kvenvolden, K.A., and Garrison, R.E., 1990. Diagenesis and interstitial-water chemistry at the Peruvian continental margin—major constituents and strontium isotopes. In Suess, E., von Huene, R., et al., Proc. ODP, Sci. Results, 112: College Station, TX (Ocean Drilling Program), 413-440.

Kelts, K., and McKenzie, J.A., 1982. Diagenetic dolomite formation in Quaternary anoxic diatomaceous muds of Deep Sea Drilling Project Leg 64, Gulf of California. In Curray, J.R., Moore, D.G., et al., Init. Repts. DSDP, 64 (Pt. 2): Washington (U.S. Govt. Printing Office), 553-569.

Kulm, L.D., Suess, E., and Thornburg, T.M., 1984. Dolomites in the organic-rich muds of the Peru forearc basins: analogue to the Monterey Formation. In Garrison, R.E., Kastner, M., and Zenger, D.H. (Eds.), Dolomites in the Monterey Formation and Other Organic-rich Units. Spec. Publ.—Soc. Econ. Paleontol. Mineral., 41:29-48.

Lippmann, F., 1973. Sedimentary Carbonate Minerals: New York (Springer Verlag).

Lyle, M., Koizumi, I., Richter, C., et al., 1997. Proc. ODP, Init. Repts., 167: College Station, TX (Ocean Drilling Program).

Lyons, T.W., and Berner, R.A., 1992. Carbon-sulfur-iron systematics of the uppermost deep-water sediments of the Black Sea. Chem. Geol., 99:1-27.

Machel, H.G., 1985. Cathodoluminescence in calcite and dolomite and its chemical interpretation. Geosci. Can., 12:139-147.

Machel, H.G., and Burton, E.A., 1991. Factors governing the cathodoluminescence in calcite and dolomite, and their implications for studies of carbonate diagenesis. In Barker, C.E., and Kopp, O.C. (Eds.), Luminescence Microscopy and Spectroscopy: Qualitative and Quantitative Applications. SEPM Short Course, 25:37-57.

Machel, H.G., Mason, R.A., Mariano, A.N., and Mucci, A., 1991. Causes and measurements of luminescence in calcite and dolomite. In Barker, C.E., and Kopp, O.C. (Eds.), Luminescence Microscopy and Spectroscopy: Qualitative and Quantitative Applications. SEPM Short Course, 25:9-25.

Mazzullo, S.J., 2000. Organogenic dolomitization in peritidal to deep-sea sediments. J. Sediment. Res., 70:10-23.

McHargue, T.R., and Price, R.C., 1982. Dolomite clay in argillaceous or shale-associated marine carbonates. J. Sediment. Petrol., 52:873-886.

Meyers, P.A., and Shipboard Scientific Party, 1998. Microbial gases in sediments from the southwest African margin. In Wefer, G., Berger, W.H., and Richter, C., et al., Proc. ODP, Init Repts., 175: College Station, TX (Ocean Drilling Program), 555-560.

Middelburg, J.J., de Lange, G.J., and Kreulen, R., 1990. Dolomite formation in anoxic sediments of Kau Bay, Indonesia. Geology, 18:399-402.

Murata, K.J., Friedman, I., and Cremer, M., 1972. Geochemistry of diagenetic dolomites in Marine formations of California and Oregon. U.S. Geol. Surv. Prof. Pap., 724-C.

Murray, R.W., Wigley, R., and Shipboard Scientific Party, 1998. Interstitial water chemistry of deeply buried sediments from the southwest African margin: a preliminary synthesis of results from Leg 175. In Wefer, G., Berger, W.H., and Richter, C., et al., Proc. ODP, Init Repts., 175: College Station, TX (Ocean Drilling Program), 547-553.

Pisciotto, K.A., and Mahoney, J.J., 1981. Isotopic survey of diagenetic carbonates, Deep Sea Drilling Project, Leg 63. In Yeats, R.S., Haq., B.U., et al., Init. Repts. DSDP, 63: Washington (U.S. Govt. Printing Office), 595-609.

Pouchou, J.L., and Pichoir, F., 1985. PAP () procedure for improved quantitative microanalysis. Microbeam Analysis 1985, 104-106.

Pufahl, P.K., Maslin, M.A., Anderson, L., Brüchert, V., Jansen, F., Lin, H., Perez, M., Vidal, L., and Shipboard Scientific Party, 1998. Lithostratigraphic summary for Leg 175: Angola-Benguela upwelling system. In Wefer, G., Berger, W.H., and Richter, C., et al., Proc. ODP, Init Repts., 175: College Station, TX (Ocean Drilling Program), 533-542.

Reeder, R.J., 1990. Carbonates: Mineralogy and Chemistry. Mineral. Soc. Am.

Slaughter, M., and Hill, R.J., 1990. The influence of organic matter in organogenic dolomitization. J. Sediment. Petrol., 61:296-303.

Suess, E., von Huene, R., and the Leg 112 Shipboard Scientists, 1988. Ocean Drilling Program Leg 112, Peru continental margin: Part 2, Sedimentary history and diagenesis in a coastal upwelling environment. Geology, 16:939-943.

Vasconcelos, C., and McKenzie, J.A., 1997. Microbial mediation of modern dolomite precipitation and diagenesis under anoxic conditions (Lagoa Vermelha, Rio de Janeiro, Brazil). J. Sediment. Res., 67:378-390.

Wefer, G., Berger, W.H., Richter, C., and Shipboard Scientific Party, 1998. Facies patterns and authigenic minerals of upwelling deposits off southwest Africa. In Wefer, G., Berger, W.H., and Richter, C., et al., Proc. ODP, Init Repts., 175: College Station, TX (Ocean Drilling Program), 487-504.