335
References
Adler, M., Hensen, C., Kasten, S. and Schulz, H.D., 2000.
Computer simulation of deep-sulfate reduction in
sediments off the Amazon Fan. International Journal
of Earth Sciences (Geol. Rdsch.), 88: 619-629.
Adler, M., Hensen, C., Wenzhöfer, F., Pfeifer, K. and
Schulz, H.D., 2001. Modeling of calcite dissolution by
oxic respiration in supralysoclinal deep-sea sediments. Marine Geology, 177: 167-189.
Andersen, N.R. and Malahoff, A., 1977. The fate of fossil
fuel CO2 in the Oceans. Plenum Press, NY, 749 pp.
Archer, D.E., 1991. Modeling the calcite lysocline. Journal of Geological Research, 96: 17037-17050.
Archer, D. and Maier-Reimer, E., 1994. Effect of deepsea sedimentary calcite preservation on atmospheric
CO2 concentration. Nature, 367: 260-263.
Archer, D.E., 1996a. An atlas of the distribution of calcium carbonate in sediments of the deep sea. Global
Biochemical Cycles, 10: 159-174.
Archer, D.E., 1996b. A data-driven model of the global calcite lysocline. Global Biochemical Cycles, 10: 511-526.
Berelson, W.M., Hammond, D.E. and Cutter, G.A., 1990.
In situ measurements of calcium carbonate dissolution
rates in deep-sea sediments. Geochimica et Cosmochimica Acta, 54: 3013-3020.
Berelson, W.M., Hammond, D.E., McManus, J. and
Kilgore, T.E., 1994. Dissolution kinetics of calcium
carbonate in equatorial Pacific sediments. Global
Biogeochemical Cycles, 8: 219-235.
Berger, W.H., 1976. Biogenic deep-sea sediments: Production, preservation and interpretation. In: Riley,
J.P. and Chester, R. (eds) Chemical Oceanography, 5,
Academic Press, London, pp. 266-388.
Berger, W.H., 1982. Increase of carbon dioxide in the atmosphere during deglaciation: The coral reef hypothesis. Naturwissenschaften, 69, 87.
Broecker, W.S. and Peng, T.-H., 1982. Tracers in the
Sea. Lamont-Doherty Geol. Observation, Eldigo
Press, Palisades, NY, 690 pp.
Broecker, W.S. and Peng, T.-H., 1987. The Role of
CaCO3 compensation in the glacial to interglacial
atmospheric CO2 change. Global Biogeochemical
Cycles, 1: 15-29.
DeBaar, H.J.W. and Suess, E., 1993. Ocean carbon cycle
and climate change - An introduction to the interdisciplinary Union Symposium. Global and Planetery
Change, 8: VII-XI.
Dittert, N., Baumann, K.H., Bickert, T., Henrich, R.,
Huber, R., Kinkel, H., Meggers, H. and Müller, P.,
1999. Carbonate dissolution in the Deep-Sea:
Methods, quantification and paleoceanography application. In: Fischer, G. and Wefer, G. (eds) Use of
proxies in paleoceanography: examples from the
South Atlantic, Springer, Berlin, Heidelberg, 255-284.
Emerson, S.R., Jahnke, R., Bender, M., Froelich, P.,
Klinkhammer, G., Bowser, C. and Setlock, G., 1980.
Early diagenesis in sediments from the eastern
equatorial Pacific. 1. Pore water nutrient and carbonate results. Earth Planet Science Letters, 49: 57-80.
Emerson, S. and Bender, M., 1981. Carbon fluxes at the
sediment-water interface of the deep-sea: calcium
carbonate preservation. Journal of Marine Research,
39: 139-162.
Emerson, S., Grundmanis, V. and Graham, D., 1982. Carbonate chemistry in marine pore waters: MANOP
sites C and S. Earth and Planetary Science Letters,
61: 220-232.
Feely, R.A., Sabine, C.L., Lee, K., Berelson, W., Kleypas,
J., Fabry, V.J. and Millero, F.J., 2004. Impact of
Anthropogenic CO 2 on the CaCO 3 System in the
Oceans. Science, 305: 362-366.
Fischer, G., Wefer, G., Romero, O., Dittert, N., Ratmeyer,
V. and Donner, B., 2004. Transfer of Particles into the
Deep Atlantic and the Global Ocean. In: Wefer, G.,
Mulitza, S. and Ratmeyer, V. (eds) The South Atlantic
in the Late Quaternary. Springer Berlin, Heidelberg,
New York, pp. 21-46.
Freiwald, A., 2002. Reef-forming cold-water corals. In:
Wefer, G., Billet, D., Hebbeln, D., Jørgensen, B.B.,
Schlüter, M., and Van Weering, T. (eds) Ocean margin
systems, Springer, Berlin, Heidelberg, 365-385.
Goyet, C. and Poisson, A., 1989. New determination of
carbonic acid dissociation constants in seawater as a
function of temperature and salinity. Deep-Sea-Research, 36: 1635-1654.
Hales, B. and Emerson, S., 1996. Calcite dissolution in
sediments of the Ontong-Java Plateau: In situ measurements of pore water O2 and pH. Global Biogeochemical Cycles, 10: 527-541.
Hales, B. and Emerson, S., 1997a. Calcite dissolution in
sediments of the Ceara Rise: In situ measurements of
porewater O2, pH, and CO2(aq). Geochimica et
Cosmochimica Acta, 61: 501-514.
Hales, B. and Emerson, S., 1997b. Evidence in support of
first-order dissolution kinetics of calcite in seawater.
Earth and Planetary Science Letters, 148: 317-327.
Hammond, D.E., McManus, J., Berelson, W.M., Kilgore,
T.E. and Pope, R.H., 1996. Early diagenesis of
organic material in equatorial Pacific sediments:
stoichiometry and kinetics. Deep-Sea Research, 43:
1365-1412.
Hay, W.W. and Southam, J.R., 1977. Modulation of marine
sedimentation by continental shelves. In: Andersen,
N.R. and Malahoff, A. (eds) The fate of fossil fuel CO2
in the Oceans. Plenum Press, NY, pp. 564-604.
Hensen, C., Landenberger, H., Zabel, M., Gundersen, J.K.,
Glud, R.N. and Schulz, H.D., 1997. Simulation of
early diagenetic processes in continental slope
sediments in Southwest Africa: The computer model
CoTAM tested. Marine Geology, 144: 191-210.
Hensen, C., Landenberger, H., Zabel, M. and Schulz,
H.D., 1998. Quantification of diffusive benthic fluxes
of nitrate, phosphate and silicate in the Southern
Atlantic Ocean. Global Biogeochemical Cycles, 12:
193-210.
Jahnke, R.A., Craven, D.B. and Gaillard, J.-F., 1994. The
influence of organic matter diagenesis on CaCO3 dissolution at the deep-sea floor. Geochimica et Cosmochimica Acta, 58: 2799-2809.
Jahnke, R.A., 1996. The global ocean flux of particulate
References
References
Adler, M., Hensen, C., Kasten, S. and Schulz, H.D., 2000.
Computer simulation of deep-sulfate reduction in
sediments off the Amazon Fan. International Journal
of Earth Sciences (Geol. Rdsch.), 88: 619-629.
Adler, M., Hensen, C., Wenzhöfer, F., Pfeifer, K. and
Schulz, H.D., 2001. Modeling of calcite dissolution by
oxic respiration in supralysoclinal deep-sea sediments. Marine Geology, 177: 167-189.
Andersen, N.R. and Malahoff, A., 1977. The fate of fossil
fuel CO2 in the Oceans. Plenum Press, NY, 749 pp.
Archer, D.E., 1991. Modeling the calcite lysocline. Journal of Geological Research, 96: 17037-17050.
Archer, D. and Maier-Reimer, E., 1994. Effect of deepsea sedimentary calcite preservation on atmospheric
CO2 concentration. Nature, 367: 260-263.
Archer, D.E., 1996a. An atlas of the distribution of calcium carbonate in sediments of the deep sea. Global
Biochemical Cycles, 10: 159-174.
Archer, D.E., 1996b. A data-driven model of the global calcite lysocline. Global Biochemical Cycles, 10: 511-526.
Berelson, W.M., Hammond, D.E. and Cutter, G.A., 1990.
In situ measurements of calcium carbonate dissolution
rates in deep-sea sediments. Geochimica et Cosmochimica Acta, 54: 3013-3020.
Berelson, W.M., Hammond, D.E., McManus, J. and
Kilgore, T.E., 1994. Dissolution kinetics of calcium
carbonate in equatorial Pacific sediments. Global
Biogeochemical Cycles, 8: 219-235.
Berger, W.H., 1976. Biogenic deep-sea sediments: Production, preservation and interpretation. In: Riley,
J.P. and Chester, R. (eds) Chemical Oceanography, 5,
Academic Press, London, pp. 266-388.
Berger, W.H., 1982. Increase of carbon dioxide in the atmosphere during deglaciation: The coral reef hypothesis. Naturwissenschaften, 69, 87.
Broecker, W.S. and Peng, T.-H., 1982. Tracers in the
Sea. Lamont-Doherty Geol. Observation, Eldigo
Press, Palisades, NY, 690 pp.
Broecker, W.S. and Peng, T.-H., 1987. The Role of
CaCO3 compensation in the glacial to interglacial
atmospheric CO2 change. Global Biogeochemical
Cycles, 1: 15-29.
DeBaar, H.J.W. and Suess, E., 1993. Ocean carbon cycle
and climate change - An introduction to the interdisciplinary Union Symposium. Global and Planetery
Change, 8: VII-XI.
Dittert, N., Baumann, K.H., Bickert, T., Henrich, R.,
Huber, R., Kinkel, H., Meggers, H. and Müller, P.,
1999. Carbonate dissolution in the Deep-Sea:
Methods, quantification and paleoceanography application. In: Fischer, G. and Wefer, G. (eds) Use of
proxies in paleoceanography: examples from the
South Atlantic, Springer, Berlin, Heidelberg, 255-284.
Emerson, S.R., Jahnke, R., Bender, M., Froelich, P.,
Klinkhammer, G., Bowser, C. and Setlock, G., 1980.
Early diagenesis in sediments from the eastern
equatorial Pacific. 1. Pore water nutrient and carbonate results. Earth Planet Science Letters, 49: 57-80.
Emerson, S. and Bender, M., 1981. Carbon fluxes at the
sediment-water interface of the deep-sea: calcium
carbonate preservation. Journal of Marine Research,
39: 139-162.
Emerson, S., Grundmanis, V. and Graham, D., 1982. Carbonate chemistry in marine pore waters: MANOP
sites C and S. Earth and Planetary Science Letters,
61: 220-232.
Feely, R.A., Sabine, C.L., Lee, K., Berelson, W., Kleypas,
J., Fabry, V.J. and Millero, F.J., 2004. Impact of
Anthropogenic CO 2 on the CaCO 3 System in the
Oceans. Science, 305: 362-366.
Fischer, G., Wefer, G., Romero, O., Dittert, N., Ratmeyer,
V. and Donner, B., 2004. Transfer of Particles into the
Deep Atlantic and the Global Ocean. In: Wefer, G.,
Mulitza, S. and Ratmeyer, V. (eds) The South Atlantic
in the Late Quaternary. Springer Berlin, Heidelberg,
New York, pp. 21-46.
Freiwald, A., 2002. Reef-forming cold-water corals. In:
Wefer, G., Billet, D., Hebbeln, D., Jørgensen, B.B.,
Schlüter, M., and Van Weering, T. (eds) Ocean margin
systems, Springer, Berlin, Heidelberg, 365-385.
Goyet, C. and Poisson, A., 1989. New determination of
carbonic acid dissociation constants in seawater as a
function of temperature and salinity. Deep-Sea-Research, 36: 1635-1654.
Hales, B. and Emerson, S., 1996. Calcite dissolution in
sediments of the Ontong-Java Plateau: In situ measurements of pore water O2 and pH. Global Biogeochemical Cycles, 10: 527-541.
Hales, B. and Emerson, S., 1997a. Calcite dissolution in
sediments of the Ceara Rise: In situ measurements of
porewater O2, pH, and CO2(aq). Geochimica et
Cosmochimica Acta, 61: 501-514.
Hales, B. and Emerson, S., 1997b. Evidence in support of
first-order dissolution kinetics of calcite in seawater.
Earth and Planetary Science Letters, 148: 317-327.
Hammond, D.E., McManus, J., Berelson, W.M., Kilgore,
T.E. and Pope, R.H., 1996. Early diagenesis of
organic material in equatorial Pacific sediments:
stoichiometry and kinetics. Deep-Sea Research, 43:
1365-1412.
Hay, W.W. and Southam, J.R., 1977. Modulation of marine
sedimentation by continental shelves. In: Andersen,
N.R. and Malahoff, A. (eds) The fate of fossil fuel CO2
in the Oceans. Plenum Press, NY, pp. 564-604.
Hensen, C., Landenberger, H., Zabel, M., Gundersen, J.K.,
Glud, R.N. and Schulz, H.D., 1997. Simulation of
early diagenetic processes in continental slope
sediments in Southwest Africa: The computer model
CoTAM tested. Marine Geology, 144: 191-210.
Hensen, C., Landenberger, H., Zabel, M. and Schulz,
H.D., 1998. Quantification of diffusive benthic fluxes
of nitrate, phosphate and silicate in the Southern
Atlantic Ocean. Global Biogeochemical Cycles, 12:
193-210.
Jahnke, R.A., Craven, D.B. and Gaillard, J.-F., 1994. The
influence of organic matter diagenesis on CaCO3 dissolution at the deep-sea floor. Geochimica et Cosmochimica Acta, 58: 2799-2809.
Jahnke, R.A., 1996. The global ocean flux of particulate
References
