235
References
Aller, R.C., 1990. Bioturbation and manganese cycling in
hemipelagic sediments. Phil. Trans. Roy. Soc.
London, A331, 51-68.
Altabet, M.A., and François, R., 1994. Sedimentary nitrogen
isotopic ratio as a recorder for surface ocean nitrate
utilization. Glob. Biogeochem. Cycles, 8(1), 103-116.
Altabet, M.A., François, R., Murray, D.W., and Prell
W.L.,1995. Climate related variations in denitrification in the Arabian Sea from sediment 15N/14N
ratios. Nature, 373, 506-509.
Altabet, M.A., Murray, D.W., Prell and W.L., 1999.
Climatically linked oscillations in Arabian Sea
denitrification over the 1 m.y.: implications for the
marine N cycle. Paleoceanogr., 14(6), 732-743.
Andersen, T.K., Jensen, M.H. and Sørensen, J., 1984.
Diurnal variation of nitrogen cycling in coastal
marine sediments: 1. Denitrification. Mar. Biol., 83,
171-176.
Anderson, L.A. and Sarmiento, J.L., 1994. Redfield ratios
of remineralization determined by nutrient data
analysis. Glob. Biogeochem. Cycles, 8, 65-80.
Anderson, L.A., Delaney, M.L. and Faul, K.L., 2001.
Carbon to phosphorus ratios in sediments:
Implication for nutrient cycling. Glob. Biogeochem.
Cycles, 15, 65-79.
Antoine, D., André, J.-M., and Morel, A., 1996. Oceanic
primary production; 2. Estimation at global scale
from satellite (coastal zone color scanner)
chlorophyll. Glob. Biogeochem. Cycles, 10(1), 57-69.
Baden, S.P., Loo, L.-O., Pihl, L. and Rosenberg, R.,
1990) Effects of eutrophication on benthic
communities including fish: Swedish west coast.Ambio., 19, 113-122.
Bartlett, K.B., Bartlett, D.S., Harriss, R.C. and Sebacher,
D.I., 1987. Methane emissions along a salt marsh
salinity gradient.- Biogeochemistry, 4, 183-202.
Baturin, G.N., 1982. Phosporites on the sea floor.Developments
in
Sedimentology,
Elsevier,
Amsterdam, 33, 343 pp.
Behrenfeld, M.J. and Falkowski, P.G., 1997. Photosynthetic rates derived from satellite-based chlorophyll concentration. Limnol. Oceanogr., 42(1), 1-20.
Bender, M.L.H. and Heggie, D.T., 1984. Fate of organic
Carbon reaching the deep-sea floor: a status report.
Geochim. Cosmochim. Acta, 48, 977-986.
Berelson, W.M., Hammond, D.E. and Johnson, K.S.,
1987. Benthic fluxes and the cycling of biogenic
silica and carbon in two southern California
borderland basins. Geochim. Cosmochim. Acta, 51,
1345-1363.
Berelson, W.M.; Hammond, D.E., O‘Neill, D., Xu, X.M.,
Chin, C. and Zukin, J., 1990. Benthic fluxes and pore
water studies from sediments of central equa-torial
north
Pacific:
nutrient
diagenesis.
Geochim.
Cosmochim. Acta, 54, 3001-3012.
Berelson, W.M., Hammond, D.E., McManus, J. and
Kilgore, T.E., 1994. Dissolution kinetics of calcium
carbonate in equatorial Pacific sediments. Glob.
Biogeochem. Cycles, 8, 219 - 235.
Berger, W.H., Fischer, K., Lai, C. and Wu, G., 1987.
Ocean productivity and organic carbon flux. I.
Overview and maps of primary production and export
production. Univ. California, San Diego, SIO
Reference 87-30, 67 pp.
Betzer, P.R., Showers, W.J., Laws, E.A., Winn, C.D.,
DiTullio, G.R. and Kroopnick, P.M., 1984. Primary
productivity and particle fluxes on a transect of the
equator at 153°W in the Pacific Ocean. Deep-Sea
Res., 31, 1-11.
Bock, E. and Wagner M., 2001. Oxidation of inorganic
nitrogen compounds as an energy source. In: M.
Dworkin et al. (eds): The prokaryotes: An evolving
electronic
resource
for
the
microbiological
community, 3rd edition, Springer-Verlag, New York.
Brandes, J.A., Devol, A.H., Yoshinari, T. and Jayakumar,
D.A., 1998. Isotopic composition of nitrate in the
central Arabian Sea and eastern tropical North
Pacific: a tracer for mixing and nitrogen cycles.
Limnol. Oceanogr., 43(7): 1680-1689.
Brendel, P.J. and Luther, G.W.III., 1995. Development of
a gold amalgam voltammetric microelectrode for the
determination of dissolved iron, manganese, O 2 , and
S(-II) in pore waters of marine and freshwater
sediments. Environ. Sci. Technol., 29, 751-761.
Broda, E., 1977. Two kinds of lithotrophs missing in
nature. Z. Allg. Mikrobiol., 17, 491-493.
Broecker, W.S. and Peng, T.-H., 1982. Tracers in the
Sea. Palisades, New York.
Burnett, W.C., 1977. Geochemistry and origin of phosphorite deposits from off Peru and Chile. Geol. Soc.
Am. Bull., 88, 813-823.
Burnett, W.C. and Froelich, P.N. (eds), 1988. The origin
of marine phosphate. The results of the R.V.
ROBERT D. CONRAD Cruise 23-06 to the Peru
shelf. Mar. Geol., 80, 181-346.
Burnett, W.C. and Riggs, S.R. (eds), 1990. Phosphate
deposits of the World – Vol. 3 Neogene to modern
phosphorites. Cambridge Univ. Press, 464 pp.
Cai, W.-J. and Sayles, F.L., 1996. Oxygen penetration
depths and fluxes in marine sediments. Mar. Chem.,
52, 123–131.
Cai, W.-J., Reimers, C.E. and Shaw, T., 1995.
Microelectrode studies of organic carbon degradation
and calcite dissolution at a California Continental rise
site. Geochim. Cosmochim. Acta, 59(3), 497-511.
Canfield, D.E., 1989. Sulfate reduction and oxic
respiration in marine sediments: implications for organic carbon preservation in euxinic environments.
Deep-Sea Res., 36, 121-138.
Canfield, D.E., 1993. Organic matter oxidation in marine
sediments.- In: Wollast, R., Chou, L., Mackenzie, F.
(eds.) Interactions of C, N, P, and S in
biogeochemical cycles. NATO ASI Series, pp. 333363, Springer Verlag.
Canfield, D.E., Jorgensen, B.B., Fossing, H., Glud, R.N.,
Gundersen, J.K., Ramsing, N.B., Thamdrup, B.,
Hansen, J.W. and Hall, P.O.J., 1993a. Pathways of
organic carbon oxidation in three continental margin
sediments. Mar. Geol., 113, 27-40.
Canfield, D.E., Thamdrup, B. and Hansen, J.W., 1993b.
The anaerobic degradation of organic matter in
Danish coastal sediments: Iron reduction, manganese
reduction, and sulfate reduction. Geochim. Cosmochim. Acta, 57, 3867-3887.
Chapelle, F.H., 1993. Ground-Water Microbiology and
Geochemistry. Wiley, New York, 424 pp.
Chester, R., 1990. Marine Geochemistry. Unwin Hyman,
London, pp. 698.
Christensen, P.B., Nielsen, L.P., Revsbech, N.P. and
Sørensen, J., 1989. Microzonation of denitrification
activity in stream sediments as studied with a comReferences
References
Aller, R.C., 1990. Bioturbation and manganese cycling in
hemipelagic sediments. Phil. Trans. Roy. Soc.
London, A331, 51-68.
Altabet, M.A., and François, R., 1994. Sedimentary nitrogen
isotopic ratio as a recorder for surface ocean nitrate
utilization. Glob. Biogeochem. Cycles, 8(1), 103-116.
Altabet, M.A., François, R., Murray, D.W., and Prell
W.L.,1995. Climate related variations in denitrification in the Arabian Sea from sediment 15N/14N
ratios. Nature, 373, 506-509.
Altabet, M.A., Murray, D.W., Prell and W.L., 1999.
Climatically linked oscillations in Arabian Sea
denitrification over the 1 m.y.: implications for the
marine N cycle. Paleoceanogr., 14(6), 732-743.
Andersen, T.K., Jensen, M.H. and Sørensen, J., 1984.
Diurnal variation of nitrogen cycling in coastal
marine sediments: 1. Denitrification. Mar. Biol., 83,
171-176.
Anderson, L.A. and Sarmiento, J.L., 1994. Redfield ratios
of remineralization determined by nutrient data
analysis. Glob. Biogeochem. Cycles, 8, 65-80.
Anderson, L.A., Delaney, M.L. and Faul, K.L., 2001.
Carbon to phosphorus ratios in sediments:
Implication for nutrient cycling. Glob. Biogeochem.
Cycles, 15, 65-79.
Antoine, D., André, J.-M., and Morel, A., 1996. Oceanic
primary production; 2. Estimation at global scale
from satellite (coastal zone color scanner)
chlorophyll. Glob. Biogeochem. Cycles, 10(1), 57-69.
Baden, S.P., Loo, L.-O., Pihl, L. and Rosenberg, R.,
1990) Effects of eutrophication on benthic
communities including fish: Swedish west coast.Ambio., 19, 113-122.
Bartlett, K.B., Bartlett, D.S., Harriss, R.C. and Sebacher,
D.I., 1987. Methane emissions along a salt marsh
salinity gradient.- Biogeochemistry, 4, 183-202.
Baturin, G.N., 1982. Phosporites on the sea floor.Developments
in
Sedimentology,
Elsevier,
Amsterdam, 33, 343 pp.
Behrenfeld, M.J. and Falkowski, P.G., 1997. Photosynthetic rates derived from satellite-based chlorophyll concentration. Limnol. Oceanogr., 42(1), 1-20.
Bender, M.L.H. and Heggie, D.T., 1984. Fate of organic
Carbon reaching the deep-sea floor: a status report.
Geochim. Cosmochim. Acta, 48, 977-986.
Berelson, W.M., Hammond, D.E. and Johnson, K.S.,
1987. Benthic fluxes and the cycling of biogenic
silica and carbon in two southern California
borderland basins. Geochim. Cosmochim. Acta, 51,
1345-1363.
Berelson, W.M.; Hammond, D.E., O‘Neill, D., Xu, X.M.,
Chin, C. and Zukin, J., 1990. Benthic fluxes and pore
water studies from sediments of central equa-torial
north
Pacific:
nutrient
diagenesis.
Geochim.
Cosmochim. Acta, 54, 3001-3012.
Berelson, W.M., Hammond, D.E., McManus, J. and
Kilgore, T.E., 1994. Dissolution kinetics of calcium
carbonate in equatorial Pacific sediments. Glob.
Biogeochem. Cycles, 8, 219 - 235.
Berger, W.H., Fischer, K., Lai, C. and Wu, G., 1987.
Ocean productivity and organic carbon flux. I.
Overview and maps of primary production and export
production. Univ. California, San Diego, SIO
Reference 87-30, 67 pp.
Betzer, P.R., Showers, W.J., Laws, E.A., Winn, C.D.,
DiTullio, G.R. and Kroopnick, P.M., 1984. Primary
productivity and particle fluxes on a transect of the
equator at 153°W in the Pacific Ocean. Deep-Sea
Res., 31, 1-11.
Bock, E. and Wagner M., 2001. Oxidation of inorganic
nitrogen compounds as an energy source. In: M.
Dworkin et al. (eds): The prokaryotes: An evolving
electronic
resource
for
the
microbiological
community, 3rd edition, Springer-Verlag, New York.
Brandes, J.A., Devol, A.H., Yoshinari, T. and Jayakumar,
D.A., 1998. Isotopic composition of nitrate in the
central Arabian Sea and eastern tropical North
Pacific: a tracer for mixing and nitrogen cycles.
Limnol. Oceanogr., 43(7): 1680-1689.
Brendel, P.J. and Luther, G.W.III., 1995. Development of
a gold amalgam voltammetric microelectrode for the
determination of dissolved iron, manganese, O 2 , and
S(-II) in pore waters of marine and freshwater
sediments. Environ. Sci. Technol., 29, 751-761.
Broda, E., 1977. Two kinds of lithotrophs missing in
nature. Z. Allg. Mikrobiol., 17, 491-493.
Broecker, W.S. and Peng, T.-H., 1982. Tracers in the
Sea. Palisades, New York.
Burnett, W.C., 1977. Geochemistry and origin of phosphorite deposits from off Peru and Chile. Geol. Soc.
Am. Bull., 88, 813-823.
Burnett, W.C. and Froelich, P.N. (eds), 1988. The origin
of marine phosphate. The results of the R.V.
ROBERT D. CONRAD Cruise 23-06 to the Peru
shelf. Mar. Geol., 80, 181-346.
Burnett, W.C. and Riggs, S.R. (eds), 1990. Phosphate
deposits of the World – Vol. 3 Neogene to modern
phosphorites. Cambridge Univ. Press, 464 pp.
Cai, W.-J. and Sayles, F.L., 1996. Oxygen penetration
depths and fluxes in marine sediments. Mar. Chem.,
52, 123–131.
Cai, W.-J., Reimers, C.E. and Shaw, T., 1995.
Microelectrode studies of organic carbon degradation
and calcite dissolution at a California Continental rise
site. Geochim. Cosmochim. Acta, 59(3), 497-511.
Canfield, D.E., 1989. Sulfate reduction and oxic
respiration in marine sediments: implications for organic carbon preservation in euxinic environments.
Deep-Sea Res., 36, 121-138.
Canfield, D.E., 1993. Organic matter oxidation in marine
sediments.- In: Wollast, R., Chou, L., Mackenzie, F.
(eds.) Interactions of C, N, P, and S in
biogeochemical cycles. NATO ASI Series, pp. 333363, Springer Verlag.
Canfield, D.E., Jorgensen, B.B., Fossing, H., Glud, R.N.,
Gundersen, J.K., Ramsing, N.B., Thamdrup, B.,
Hansen, J.W. and Hall, P.O.J., 1993a. Pathways of
organic carbon oxidation in three continental margin
sediments. Mar. Geol., 113, 27-40.
Canfield, D.E., Thamdrup, B. and Hansen, J.W., 1993b.
The anaerobic degradation of organic matter in
Danish coastal sediments: Iron reduction, manganese
reduction, and sulfate reduction. Geochim. Cosmochim. Acta, 57, 3867-3887.
Chapelle, F.H., 1993. Ground-Water Microbiology and
Geochemistry. Wiley, New York, 424 pp.
Chester, R., 1990. Marine Geochemistry. Unwin Hyman,
London, pp. 698.
Christensen, P.B., Nielsen, L.P., Revsbech, N.P. and
Sørensen, J., 1989. Microzonation of denitrification
activity in stream sediments as studied with a comReferences
