269
References
Rijkenberg, M.J.A., Fischer, A.C., Kroon, J.J., Geringa,
L.J.A., Timmermans, K.R., Wolterbeek, H.Th., and
de Baar, H.J.W., 2005. The influence of UV
irradiation on the photoreduction of iron in the
Southern Ocean. Marine Chemistry, 93: 119-129.
Roden, E.E. and Zachara, J.M., 1996. Microbial
reduction of crystalline iron(III) oxides: Influence
of oxides surface area and potential for cell growth.
Environmental Science and Technology, 30: 16181 6 2 8 .
Roden, E.E., and Wetzel, R.G., 2002. Kinetics of
microbial Fe(III) oxide reduction in freshwater
wetland sediments. Limnology Oceanography, 47:
198-211.
Roth, C.B. and Tullock, R.J., 1972. Deprotonation of
nontronite resulting from chemical reduction of
structural ferric iron. Proceedings of the International Clay Conference, Madrid, 89-98.
Rozenson, I. and Heller-Kallai, L., 1976a. Reduction
and oxidation of Fe
3+ in dioctahedral smectites - 1:
Reduction with hydrazine and dithionite. Clays and
Clay Minerals, 24: 271-282
Rozenson, I. and Heller-Kallai, L., 1976b. Reduction
and oxidation of Fe
3+ in dioctahedral smectites - 2:
Reduction with sodium sulphide solutions. Clays and
Clay Minerals, 24: 283-288.
Rue, E.L. and Bruland, K.W., 1995. Complexation of
Fe(III) by natural organic ligands in the Central North
Pacific as determined by a new competitive ligand
equilibration/ adsorptive cathodic stripping voltammetric method. Marine Chemistry, 50: 117-138.
Ruttenberg, K.C., 1992. Development of a sequential
extraction method for different forms of phosphorous in marine sediments. Limnology and Oceanography, 37: 1460-1482.
Schwertmann, U., 1964. Differenzierung der Eisenoxide
des Bodens durch photochemische Extraktion mit
saurer Ammoniumoxalat-Lösung. Zeitschrift zur
Pflanzenernährung und Bodenkunde, 195: 194-202.
Schwertmann, U. Fitzpatrick, R.W., Taylor, R.M. and
Lewis, D.G., 1979. The influence of aluminium on
iron oxides. Part II. Preparation and properties of
Al substituted hematites. Clays and Clay Minerals,
11: 189-200.
Schwertmann, U. and Murad, E., 1983. Effect of pH on
the formation of goethite and hematite from
ferrihydrite. Clays and Clay Minerals, 31:277-284.
Schwertmann, U. and Taylor, R.M., 1989. Iron oxides.
In: Dinauer, R.C. (ed), Minerals in soil
environments, Soil Science Society of America Book
Series, 1, Madison, WI, pp. 379-438.
Schwertmann, U. and Cornell, R.M., 1991. Iron oxides
in the laboratory. VCH Verlagsgesellschaft mbH,
Weinheim, 137 pp.
Singer, A., Stoffers, P., Heller-Kallai, L. and Szafranek,
D., 1984. Nontronite in a deep-sea ore from the
south Pacific. Clays and Clay Minerals, 32: 375-383
Slomp, C.P., Van der Gaast, S.J., Van Raaphorst, W.,
1996a. Phosphorus binding by poorly crystalline
iron oxides in North Sea sediments. Marine Chemistry, 52: 55-73.
Slomp, C.P., Epping, E.H.G., Helder, W. and Van
Raaphorst, W., 1996b, A key role for iron-bound
phosphorus in authigenic apatite formation in North
Atlantic continental platform sediments. Journal of
Marine Research, 54: 1179-1205.
Sørensen, J. and Thorling, L., 1991, Stimulation by
lepidocrocite (γ-FeOOH) of Fe(II)-dependent nitrite
reduction. Geochimica Cosmochimica Acta, 55:
1289-1294.
Stookey, L.L., 1970, Ferrozine - A new spectrophotometric reagent for iron. Analytical Chemistry, 42:
779-781.
Stucki, J.W., 1981, The quantitative assay of minerals
for Fe
2+ and Fe
3+ using 1,10-phenanthroline: II. A
photochemical method. Soil Science Society of
America Journal, 45: 638-641.
Stumm, W. and Morgan, J.J., 1996. Aquatic chemistry,
3rd edition, Wiley & Sons, London, 1022 pp.
Straub, K.L., Benz, M., Schinck, B., Widdel, F., 1996,
Anaerobic, nitrate-dependent microbial oxidation of
ferrous iron. Applied and Environmental Microbiology, 62: 1458-1460.
Sulzberger, B., Suter, D., Siffert, C., Banwart, S., Stumm,
W., 1989. Dissolution of Fe(III) hydroxides in
natural waters: Laboratory assessment on the
kinetics controlled by surface coordination. Marine
Chemistry, 28: 127-144.
Sundby, B., Silverberg, N., 1985. Manganese fluxes in
the benthic boundary layer. Limnology and Oceanography, 30: 372-381.
Sundby, B., Anderson, L.G., Hall, P.O.J., Iverfeldt, Å,
Rutgers van der Loeff, M., Westerlund, S.F.G., 1986.
The effect of oxygen on release and uptake of
cobalt, manganese, iron, and phosphate at the
sediment-water interface. Geochimica Cosmochimica Acta, 50: 1281-1288.
Sundby, B., Gobeil, C., Silcerberg, N., Mucci, A., 1992.
The phosphorus cycle in coastal marine sediments.
Limnology and Oceanography, 37: 1129-1145.
Thamdrup, B., Glud, R.N. and Hansen, J.W., 1994.
Manganese oxidation and in situ manganese fluxes
from a coastal sediment. Geochimica Cosmochimica
Acta, 58: 2563-2570.
Thamdrup, B. and Canfield, D.E., 1996. Pathways of
carbon oxidation in continental margin sediments
off central Chile. Limnology and Oceanography, 41:
1629-1650.
Torrent, J., Barrón, V. and Schwertmann, U., 1992, Fast
and slow phosphate sorption by goethite-rich
natural materials. Clays and Clay Mineralogy, 40:
14-21.
Trick, C.G., Andersen, R.J., Gillam, A. and Harrison,
P.J., 1983. Prorocentrin: An extracellular siderophore produced by the marine dinoflagellate Prorocentrum minimum. Science, 219: 306-308.
Trick, C.G., 1989. Hydroxomate-siderophore production
and utilization by marine eubacteria. Current Microbiology, 18: 375-378.
Uematsu, M., Duce, R.A., Prospero, J.M., Chen, L.,
Merrill, J.T., McDonald, R.L., 1983. Transport of
mineral aerosol from Asia over the North Pacific
References
Rijkenberg, M.J.A., Fischer, A.C., Kroon, J.J., Geringa,
L.J.A., Timmermans, K.R., Wolterbeek, H.Th., and
de Baar, H.J.W., 2005. The influence of UV
irradiation on the photoreduction of iron in the
Southern Ocean. Marine Chemistry, 93: 119-129.
Roden, E.E. and Zachara, J.M., 1996. Microbial
reduction of crystalline iron(III) oxides: Influence
of oxides surface area and potential for cell growth.
Environmental Science and Technology, 30: 16181 6 2 8 .
Roden, E.E., and Wetzel, R.G., 2002. Kinetics of
microbial Fe(III) oxide reduction in freshwater
wetland sediments. Limnology Oceanography, 47:
198-211.
Roth, C.B. and Tullock, R.J., 1972. Deprotonation of
nontronite resulting from chemical reduction of
structural ferric iron. Proceedings of the International Clay Conference, Madrid, 89-98.
Rozenson, I. and Heller-Kallai, L., 1976a. Reduction
and oxidation of Fe
3+ in dioctahedral smectites - 1:
Reduction with hydrazine and dithionite. Clays and
Clay Minerals, 24: 271-282
Rozenson, I. and Heller-Kallai, L., 1976b. Reduction
and oxidation of Fe
3+ in dioctahedral smectites - 2:
Reduction with sodium sulphide solutions. Clays and
Clay Minerals, 24: 283-288.
Rue, E.L. and Bruland, K.W., 1995. Complexation of
Fe(III) by natural organic ligands in the Central North
Pacific as determined by a new competitive ligand
equilibration/ adsorptive cathodic stripping voltammetric method. Marine Chemistry, 50: 117-138.
Ruttenberg, K.C., 1992. Development of a sequential
extraction method for different forms of phosphorous in marine sediments. Limnology and Oceanography, 37: 1460-1482.
Schwertmann, U., 1964. Differenzierung der Eisenoxide
des Bodens durch photochemische Extraktion mit
saurer Ammoniumoxalat-Lösung. Zeitschrift zur
Pflanzenernährung und Bodenkunde, 195: 194-202.
Schwertmann, U. Fitzpatrick, R.W., Taylor, R.M. and
Lewis, D.G., 1979. The influence of aluminium on
iron oxides. Part II. Preparation and properties of
Al substituted hematites. Clays and Clay Minerals,
11: 189-200.
Schwertmann, U. and Murad, E., 1983. Effect of pH on
the formation of goethite and hematite from
ferrihydrite. Clays and Clay Minerals, 31:277-284.
Schwertmann, U. and Taylor, R.M., 1989. Iron oxides.
In: Dinauer, R.C. (ed), Minerals in soil
environments, Soil Science Society of America Book
Series, 1, Madison, WI, pp. 379-438.
Schwertmann, U. and Cornell, R.M., 1991. Iron oxides
in the laboratory. VCH Verlagsgesellschaft mbH,
Weinheim, 137 pp.
Singer, A., Stoffers, P., Heller-Kallai, L. and Szafranek,
D., 1984. Nontronite in a deep-sea ore from the
south Pacific. Clays and Clay Minerals, 32: 375-383
Slomp, C.P., Van der Gaast, S.J., Van Raaphorst, W.,
1996a. Phosphorus binding by poorly crystalline
iron oxides in North Sea sediments. Marine Chemistry, 52: 55-73.
Slomp, C.P., Epping, E.H.G., Helder, W. and Van
Raaphorst, W., 1996b, A key role for iron-bound
phosphorus in authigenic apatite formation in North
Atlantic continental platform sediments. Journal of
Marine Research, 54: 1179-1205.
Sørensen, J. and Thorling, L., 1991, Stimulation by
lepidocrocite (γ-FeOOH) of Fe(II)-dependent nitrite
reduction. Geochimica Cosmochimica Acta, 55:
1289-1294.
Stookey, L.L., 1970, Ferrozine - A new spectrophotometric reagent for iron. Analytical Chemistry, 42:
779-781.
Stucki, J.W., 1981, The quantitative assay of minerals
for Fe
2+ and Fe
3+ using 1,10-phenanthroline: II. A
photochemical method. Soil Science Society of
America Journal, 45: 638-641.
Stumm, W. and Morgan, J.J., 1996. Aquatic chemistry,
3rd edition, Wiley & Sons, London, 1022 pp.
Straub, K.L., Benz, M., Schinck, B., Widdel, F., 1996,
Anaerobic, nitrate-dependent microbial oxidation of
ferrous iron. Applied and Environmental Microbiology, 62: 1458-1460.
Sulzberger, B., Suter, D., Siffert, C., Banwart, S., Stumm,
W., 1989. Dissolution of Fe(III) hydroxides in
natural waters: Laboratory assessment on the
kinetics controlled by surface coordination. Marine
Chemistry, 28: 127-144.
Sundby, B., Silverberg, N., 1985. Manganese fluxes in
the benthic boundary layer. Limnology and Oceanography, 30: 372-381.
Sundby, B., Anderson, L.G., Hall, P.O.J., Iverfeldt, Å,
Rutgers van der Loeff, M., Westerlund, S.F.G., 1986.
The effect of oxygen on release and uptake of
cobalt, manganese, iron, and phosphate at the
sediment-water interface. Geochimica Cosmochimica Acta, 50: 1281-1288.
Sundby, B., Gobeil, C., Silcerberg, N., Mucci, A., 1992.
The phosphorus cycle in coastal marine sediments.
Limnology and Oceanography, 37: 1129-1145.
Thamdrup, B., Glud, R.N. and Hansen, J.W., 1994.
Manganese oxidation and in situ manganese fluxes
from a coastal sediment. Geochimica Cosmochimica
Acta, 58: 2563-2570.
Thamdrup, B. and Canfield, D.E., 1996. Pathways of
carbon oxidation in continental margin sediments
off central Chile. Limnology and Oceanography, 41:
1629-1650.
Torrent, J., Barrón, V. and Schwertmann, U., 1992, Fast
and slow phosphate sorption by goethite-rich
natural materials. Clays and Clay Mineralogy, 40:
14-21.
Trick, C.G., Andersen, R.J., Gillam, A. and Harrison,
P.J., 1983. Prorocentrin: An extracellular siderophore produced by the marine dinoflagellate Prorocentrum minimum. Science, 219: 306-308.
Trick, C.G., 1989. Hydroxomate-siderophore production
and utilization by marine eubacteria. Current Microbiology, 18: 375-378.
Uematsu, M., Duce, R.A., Prospero, J.M., Chen, L.,
Merrill, J.T., McDonald, R.L., 1983. Transport of
mineral aerosol from Asia over the North Pacific
