REFERENCES

Aller, R.C., 1977. The influence of macrobenthos on chemical diagenesis of marine sediments [Ph.D. dissertation]. Yale Univ.

————, 1980. Quantifying solute distribution in the bioturbated zone of marine sediments by defining an average microenvironment. Geochim. Cosmochim. Acta, 44:1955-1965.

————, 1982. Carbonate dissolution in nearshore terrigenous muds: the role of physical reworking. J. Geol., 90:79-95.

Aller, R.C., Mackin, J.E., and Cox, R.T., 1986. Diagenesis of Fe and S in Amazon inner shelf muds: apparent dominance of Fe reduction and implications for the genesis of ironstones. Cont. Shelf Res., 6:263-289.

Austin, J.A., Jr., Schlager, W., Palmer, A.A., et al., 1986. Proc. ODP, Init. Repts., 101: College Station, TX (Ocean Drilling Program).

Baker, P.A., and Bloomer, S.H., 1988. The origin of celestite in deep-sea carbonate sediments. Geochim. Cosmochim. Acta, 52:335-339.

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

Ben-Yaakov, S., 1973. pH buffering of pore waters of recent anoxic marine sediments. Limnol. Oceanogr., 18:86-94.

Berner, R.A., 1966. Chemical diagenesis of some modern carbonate sediments. Am. J. Sci., 264:1-36.

Berner, R.A., 1971. Principles of Chemical Sedimentology: New York (McGraw-Hill).

Berner, R.A., 1980. Early Diagenesis: A Theoretical Approach: Princeton, NJ (Princeton Univ. Press).

Burns, S.J., 1998. Carbon isotopic evidence for coupled sulfate reduction-methane oxidation in Amazon Fan sediments. Geochem. Cosmochim. Acta, 62:797-804.

Busenberg, E., and Plummer, L.N., 1985. Kinetic and thermodynamic factors controlling the distribution of SO42- and Na+ in calcites and selected aragonites. Geochem. Cosmochim. Acta, 49:713-725.

Canfield, D.E., 1989. Reactive iron in marine sediments. Geochem. Cosmochim. Acta, 53:619-632.

Canfield, D.E., and Raiswell, R., 1991. Pyrite formation and fossil preservation. In Allison, P.A., and Briggs, D.E.G. (Eds.), Topics in Geobiology (Vol. 9): Taphonomy: Releasing the Data from the Fossil Record: New York (Plenum Press), 337-387.

Cranston, R.E., and Buckley, D.E., 1990. Redox reactions and carbonate preservation in deep-sea sediments. Mar. Geol., 94:1-8.

Davies, P.J., McKenzie, J.A., Palmer-Julson, A., et al., 1991. Proc. ODP, Init. Repts., 133 (Pts. 1, 2): College Station, TX (Ocean Drilling Program).

Eberli, G.P., Swart, P.K., Malone, M.J., et al., 1997. Proc. ODP, Init. Repts., 166: College Station, TX (Ocean Drilling Program). [HTML version]

Gieskes, J.M., Gamo, T., and Kastner, M., 1993. Major and minor element geochemistry of interstitial waters of Site 808, Nankai Trough: an overview. In Hill, I.A., Taira, A., Firth, J.V., et al., Proc. ODP, Sci. Results, 131: College Station, TX (Ocean Drilling Program), 387-396.

Goldhaber, M.B., and Kaplan, I.R., 1980. Mechanisms of sulfur incorporation and isotope fractionation during early diagenesis in sediments of the Gulf of California. Mar. Chem., 9:95-143.

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.

Kitano, Y., Okumaura, M., and Idogak, M., 1978. Uptake of phosphate ions by calcium carbonate. Geochem. J., 12:29-37.

Mackin, J.E., and Aller, R.C., 1984. Ammonium adsorption in marine sediments. Limnol. Oceanogr., 29:250-257.

Malone, M.J., Baker, P.A., Burns, S.J., and Swart, P.K., 1990. Geochemistry of periplatform carbonate sediments, Leg 115, Site 716 (Maldives Archipelago, Indian Ocean). In Duncan, R.A., Backman, J., Peterson, L.C., et al., Proc. ODP, Sci. Results, 115: College Station, TX (Ocean Drilling Program), 647-659.

Miller, K.G., and Mountain, G.S., 1994. Global sea-level change and the New Jersey margin. In Mountain, G.S., Miller, K.G., Blum, P., et al., Proc. ODP, Init. Repts., 150: College Station, TX (Ocean Drilling Program), 11-20.

Milliman, J.D., 1974. Marine Carbonates (2nd ed.): Berlin (Springer-Verlag).

Schulz, H.D., Dahmke, A., Schinzel, U., Wallmann, K., and Zabel, M., 1994. Early diagenetic processes, fluxes, and reaction rates in sediments of the South Atlantic. Geochim. Cosmochim. Acta, 58:2041-2060.

Sheridan, R.E., 1974. Atlantic continental margin of North America. In Burk, C.C., and Drake, C.L. (Eds.), Geology of Continental Margins: New York (Springer Verlag), 391-407.

Swart, P.K., 1993. The formation of dolomite in sediments from the continental margin of northeastern Queensland. In McKenzie, J.A., Davies, P.J., Palmer-Julson, A., et al., Proc. ODP, Sci. Results, 133: College Station, TX (Ocean Drilling Program), 513-523.

Swart, P.K., and Guzikowski, M., 1988. Interstitial-water chemistry and diagenesis of periplatform sediments from the Bahamas, ODP Leg 101. In Austin, J.A., Jr., Schlager, W., Palmer, A.A., et al., Proc. ODP, Sci. Results, 101: College Station, TX (Ocean Drilling Program), 363-380.

Swart, P.K., Isern, A., Elderfield, H., and McKenzie, J.A., 1993. A summary of interstitial-water geochemistry of Leg 133. In McKenzie, J.A., Davies, P.J., Palmer-Julson, A., et al., Proc. ODP, Sci. Results, 133: College Station, TX (Ocean Drilling Program), 705-721.

Wang, J., and Mooers, C.N.K., 1997. Three-dimensional perspectives of the Florida Current: transport, potential velocity, and related dynamical properties. Dyn. Atmosph. Oceans, 27:135-149.

Wetzel, A., 1981. Ökologische und stratigraphische Bedeutung biogener Gefüge in quartären Sedimenten am NW-afrikanischen Kontinentalrand. "Meteor" Forschungsergeb. Reihe C, 34:1-34.