6. Benthic Respiration in Aquatic Sediments
Hammond, D.; Helder, W.; Hinga, K.; Holby, 0.;
Jahnke, R; Khripounoff, A.; Lieberman, S.; Nuppenau, V.; Pfannkuche, 0.; Reimers, C.; Rowe, G.;
Sahami, A; Sayles, E; Schurter, M.; Smallman, D.;
Wehrli, B.; De Wilde, P. Benthic chamber and profiling landers in oceanography: A review of design, technical solutions and functioning. Prog. Oceanogr.
35:253-294; 1995.
Thamdrup, B. Bacterial manganese and iron reduction in
aquatic sediments. Adv. Microb. Ecol. 16:41-84;
2000.
Thamdrup, B.; Canfield, D.E. Pathways of carbon oxidation in continental margin sediments off central
Chile. Limnol. Oceanogr. 41:1629-1650; 1996.
Thamdrup, B.; Canfield, D.E.; Ferdelman, T.G.; Glud,
R.N.; Gundersen, J.K. A biogeochemical survey of the
anoxic basin Golfo Dulce, Costa Rica. Rev. BioI.
Tropical 44(suppl. 3):19-33; 1996.
Thamdrup, B.; Fossing, H.; JlIlrgensen, B.B. Manganese,
iron, and sulfur cycling in a coastal marine sediment,
Aarhus Bay, Denmark. Geochim. Cosmochim. Acta
58:5115-5129; 1994a.
Thamdrup, B.; Glud, RN.; Hansen, J.W. Manganese oxidation and in situ fluxes from a coastal sediment.
Geochim. Cosmochim. Acta 58:2563-2570; 1994b.
Urban, N.R.; Brezonik, P.L.; Baker, L.A; Sherman, L.A
Sulfate reduction and diffusion in sediments of Little
Rock Lake, Wisconsin. Limnol. Oceanogr. 39:797815; 1994.
Vedel, A.; Andersen, B.B.; Riisgard, H.U. Field investigations of pumping activity of the facultatively filterfeeding polychaete Nereis diversicolor using an improved infrared phototransducer system. Mar. Ecol.
Prog. Ser. 103:91-101; 1994.
103
Wallmann, K.; Hennies, K.; Konig, I.; Petersen, W.;
Knauth, H.D. A new procedure for the determination
of "reactive" ferric iron and ferrous iron minerals in
sediments. Limnol. Oceanogr. 38:1803-1812; 1993.
Wang, Y.; Van Cappellen, P. A multicomponent reactive
transport model for early diagenesis: Application to
redox cycling in coastal marine sediments. Geochim.
Cosmochim. Acta 60:2993-3014; 1996.
Westrich, IT. The consequences and controls of bacterial
sulfate reduction in marine sediments. Ph.D. thesis,
Yale University; 1983.
Wheatcroft, R.A; Martin, W.R. Spatial variation in shortterm e3~) sediment bioturbation intensity along an
organic-carbon gradient. J. Mar. Res. 54:763-792;
1996.
Widdel, E; Hansen, T.A The dissimilatory sulfate- and
sulfur-reducing bacteria. In: Balows, H. et al., eds. The
Procaryotes. Berlin: Springer-Verlag; 1991:583-624.
Wieder, R.K.; Lang, G.E. Cycling of inorganic and organic sulfur in peat from Big Run Bog, West Virginia.
Biogeochemistry 5:221-242; 1988.
Wollast, R The coastal organic carbon cycle: Fluxes,
sources, and sinks. In: Mantoura, REC.; Martin,
J.-M.; Wollast, R, eds. Ocean Marine Processes in
Global Change. New York: Wiley; 1991:365-381.
Yao, W.; Millero, FJ. The rate of sulfide oxidation by
oMnOz in seawater. Geochim. Cosmochim. Acta
57:3359-3365.
Zhabina, N.N.; Volkov, 1.1. A method of determination
of various sulfur compounds in sea sediments and
rocks. In: Krumbein, W.E., ed. Environmental Biogeochemistry and Geomicrobiology. Ann Arbor, MI: Ann
Arbor Science; 1978:735-746.
Hammond, D.; Helder, W.; Hinga, K.; Holby, 0.;
Jahnke, R; Khripounoff, A.; Lieberman, S.; Nuppenau, V.; Pfannkuche, 0.; Reimers, C.; Rowe, G.;
Sahami, A; Sayles, E; Schurter, M.; Smallman, D.;
Wehrli, B.; De Wilde, P. Benthic chamber and profiling landers in oceanography: A review of design, technical solutions and functioning. Prog. Oceanogr.
35:253-294; 1995.
Thamdrup, B. Bacterial manganese and iron reduction in
aquatic sediments. Adv. Microb. Ecol. 16:41-84;
2000.
Thamdrup, B.; Canfield, D.E. Pathways of carbon oxidation in continental margin sediments off central
Chile. Limnol. Oceanogr. 41:1629-1650; 1996.
Thamdrup, B.; Canfield, D.E.; Ferdelman, T.G.; Glud,
R.N.; Gundersen, J.K. A biogeochemical survey of the
anoxic basin Golfo Dulce, Costa Rica. Rev. BioI.
Tropical 44(suppl. 3):19-33; 1996.
Thamdrup, B.; Fossing, H.; JlIlrgensen, B.B. Manganese,
iron, and sulfur cycling in a coastal marine sediment,
Aarhus Bay, Denmark. Geochim. Cosmochim. Acta
58:5115-5129; 1994a.
Thamdrup, B.; Glud, RN.; Hansen, J.W. Manganese oxidation and in situ fluxes from a coastal sediment.
Geochim. Cosmochim. Acta 58:2563-2570; 1994b.
Urban, N.R.; Brezonik, P.L.; Baker, L.A; Sherman, L.A
Sulfate reduction and diffusion in sediments of Little
Rock Lake, Wisconsin. Limnol. Oceanogr. 39:797815; 1994.
Vedel, A.; Andersen, B.B.; Riisgard, H.U. Field investigations of pumping activity of the facultatively filterfeeding polychaete Nereis diversicolor using an improved infrared phototransducer system. Mar. Ecol.
Prog. Ser. 103:91-101; 1994.
103
Wallmann, K.; Hennies, K.; Konig, I.; Petersen, W.;
Knauth, H.D. A new procedure for the determination
of "reactive" ferric iron and ferrous iron minerals in
sediments. Limnol. Oceanogr. 38:1803-1812; 1993.
Wang, Y.; Van Cappellen, P. A multicomponent reactive
transport model for early diagenesis: Application to
redox cycling in coastal marine sediments. Geochim.
Cosmochim. Acta 60:2993-3014; 1996.
Westrich, IT. The consequences and controls of bacterial
sulfate reduction in marine sediments. Ph.D. thesis,
Yale University; 1983.
Wheatcroft, R.A; Martin, W.R. Spatial variation in shortterm e3~) sediment bioturbation intensity along an
organic-carbon gradient. J. Mar. Res. 54:763-792;
1996.
Widdel, E; Hansen, T.A The dissimilatory sulfate- and
sulfur-reducing bacteria. In: Balows, H. et al., eds. The
Procaryotes. Berlin: Springer-Verlag; 1991:583-624.
Wieder, R.K.; Lang, G.E. Cycling of inorganic and organic sulfur in peat from Big Run Bog, West Virginia.
Biogeochemistry 5:221-242; 1988.
Wollast, R The coastal organic carbon cycle: Fluxes,
sources, and sinks. In: Mantoura, REC.; Martin,
J.-M.; Wollast, R, eds. Ocean Marine Processes in
Global Change. New York: Wiley; 1991:365-381.
Yao, W.; Millero, FJ. The rate of sulfide oxidation by
oMnOz in seawater. Geochim. Cosmochim. Acta
57:3359-3365.
Zhabina, N.N.; Volkov, 1.1. A method of determination
of various sulfur compounds in sea sediments and
rocks. In: Krumbein, W.E., ed. Environmental Biogeochemistry and Geomicrobiology. Ann Arbor, MI: Ann
Arbor Science; 1978:735-746.
