265
References
References
Aller, R.C., 1980. Diagenetic processes near the
sediment-water interface of Long Island Sound. 2. Fe
and Mn. Advances in Geophysics, 22: 351-415.
Aller, R.C. and DeMaster, D.J., 1984. Estimates of
particle flux and reworking at the deep-sea floor
using
234 Th/
238 U disequilibrium. Earth and Planetary
Science Letters, 67: 308-318.
Aller, R.C., 1990. Bioturbation and manganese cycling
in hemipelagic sediments. Philosophical Transactions of the Royal Society of London A, 331: 516 8 .
Aller, R.C., 1994. The sedimentary Mn cycle in Long
Island Sound: Its role as intermediate oxidant and
the influence of bioturbation, O 2 , and C org flux on
diagenetic reaction balances. Journal of Marine
Research, 52 (2): 259-295.
Balzer, W., 1982. On the distribution of iron and
manganese at the sediment/water interface: thermodynamic vs. kinetic control. Geochimica Cosmochimica Acta, 46: 1153-1161.
Bell, P.E., Mills, A.L. and Herman, J.S., 1987.
Biogeochemical conditions favoring magnetite
formation during anaerobic iron reduction. Applied
and Environmental Microbiology, 53: 2610-2616.
Berger, W.H., Smetacek. V.S. and Wefer, G., 1989.
Ocean productivity and paleoproductivity - An
overview. In: Berger, W.H., Smetacek, V.S. and
Wefer, G. (eds), Productivity of the oceans: present
and past. John Wiley and Sons, Chichester, 1-34.
Berner, R.A., 1970. Sedimentary pyrite formation.
American Journal of Science, 268: 1-23.
Berner, R.A., 1971. Principles of chemical sedimentology. McGraw-Hill, New York., 240 pp.
Beyer, M.E., Bond, A.M. and McLaughlin, R.J.W., 1975.
Simultaneous
polarographic
determination
of
ferrous, ferric and total iron in standard rocks.
Analytical Chemistry, 47 (3): 479-482.
Biber, M.V., Dos Santos Afonso, M. and Stumm, W.,
1994. The coordination chemistry of weathering:
IV: Inhibitation of the dissolution of oxides
minerals. Geochimica Cosmochimica Acta, 58 (9):
1999-2010.
Bischoff, J.L., 1972. A ferroan nontronite from the Red
Sea geothermal system. Clays and Clay Minerals, 20:
217-223.
Blank, M., Leinen, M. and Prospero J.M., 1985. Major
Asian aeolian inputs indicated by the mineralogy of
aerosols and sediments in the western North Pacific.
Nature, 314: 84-86.
Blesa, M.A., Marinovich, H.A., Baumgartner, E.C., and
Marota, A.J.G., 1987. Mechanism of dissolution of
magnetite by oxalic acid - ferrous ion solution.
Inorganic Chemistry, 26: 3713-3717.
Böhm, J., 1925. Über Aluminium- und Eisenoxide I.
Zeitschrift der Anorganischen Chemie, 149: 203218.
Bonneville, S., Van Cappellen, P., and Behrends, T.,
2004. Microbial reduction of iron(III) oxyhydroxides: effects of mineral solubility and availability. Chemical Geology, 212: 255-268.
Borer, P.M., Sulzberger, B., Reichard, P., and Kraemer,
S.M., 2005. Effect of siderophores on the lightinduced dissolution of colloidal iron(III) (hydr)oxides. Marine Chemistry, 93: 179-193.
Broecker, W.S., Spencer, D.W., Craig, H., 1982.
GEOSECS Pacific Expedition: Hydrographic Data.
U.S. Goverment Printing Office, Washington, DC, 3:
137 pp.
Bruland, K.W., Rue, E.L., Smith, G.J., and DiTullio,
G.R., 2005. Iron, macronutrients and diatom blooms
in the Peru upwelling regime: brown and blue waters
of Peru. Marine Chemistry, 93: 81-103.
Buresh, R.J. and Moraghan, J.T., 1976. Chemical
reduction of nitrate by ferrous iron. Journal of
Environmental Quality, 5: 320-325.
Canfield, D.E., Raiswell, R., Westrich, J.T., Reaves,
C.M. and Berner, R.A., 1986. The use of chromium
reduction in the analysis of reduced inorganic sulfur
in sediments and shales. Chemical Geology, 54: 149155.
Canfield, D.E., 1988. Sulfate reduction and the diagenesis of iron in anoxic marine sediments. Ph.D.
thesis. Yale Univ., 248 pp.
Canfield, D.E., 1989. Reactive iron in marine sediments. Geochimica Cosmochimica Acta, 51: 619632.
Canfield, D.E., Raiswell, R. and Botrell, S., 1992. The
reactivity of sedimentary iron minerals towards
sulfide. American Journal of Science, 292: 659-683.
Canfield, D.E., 1993. Organic matter oxidation in
marine sediments. In: Wollast, R., Mackenzie, F.T.
and Chou, L. (eds) Interactions of C, N, P and S
biogeochemical cycles and global change. NATO ASI
Series, 4, Springer, Berlin, Heidelberg, NY, pp. 333363.
Canfield, D.E., Thamdrup, B. and Hansen, J.W., 1993a.
The anaerobic degradation of organic matter in
Danish coastal sediments: Iron reduction, manganese
reduction, and sulfate reduction. Geochimica
Cosmochimica Acta, 57: 3867-3883.
Canfield, D.E., Jørgensen, B.B., Fossing, H., Glud, R.,
Gundersen, J., Ramsing, N.B., Thamdrup, B.,
Hansen, J.W., Nielsen, L.P. and Hall, P.O.J., 1993b.
Pathways of organic carbon oxidation in three
continental margin sediments. Marine Geology, 113:
27-40.
Canfield, D.E., 1997. The geochemistry of river
particles from the continental USA: Major
elements. Geochimica Cosmochimica Acta, 61:
3349-3365.
Carlson, T.N. and Prospero, J.M., 1972. The large-scale
movement of Saharan air outbreaks over the
northern equatorial Atlantic. Journal of Applied
Meteorology, 11: 283-297.
Carothers, W.W., Adami, L.H. and Rosenbauer, R.J.,
1988. Experimental oxygen isotope fractionation
between siderite-water and phosphoric acid liberated
CO 2 -siderite. Geochimica Cosmochimica Acta, 52:
2445-2450
References
References
Aller, R.C., 1980. Diagenetic processes near the
sediment-water interface of Long Island Sound. 2. Fe
and Mn. Advances in Geophysics, 22: 351-415.
Aller, R.C. and DeMaster, D.J., 1984. Estimates of
particle flux and reworking at the deep-sea floor
using
234 Th/
238 U disequilibrium. Earth and Planetary
Science Letters, 67: 308-318.
Aller, R.C., 1990. Bioturbation and manganese cycling
in hemipelagic sediments. Philosophical Transactions of the Royal Society of London A, 331: 516 8 .
Aller, R.C., 1994. The sedimentary Mn cycle in Long
Island Sound: Its role as intermediate oxidant and
the influence of bioturbation, O 2 , and C org flux on
diagenetic reaction balances. Journal of Marine
Research, 52 (2): 259-295.
Balzer, W., 1982. On the distribution of iron and
manganese at the sediment/water interface: thermodynamic vs. kinetic control. Geochimica Cosmochimica Acta, 46: 1153-1161.
Bell, P.E., Mills, A.L. and Herman, J.S., 1987.
Biogeochemical conditions favoring magnetite
formation during anaerobic iron reduction. Applied
and Environmental Microbiology, 53: 2610-2616.
Berger, W.H., Smetacek. V.S. and Wefer, G., 1989.
Ocean productivity and paleoproductivity - An
overview. In: Berger, W.H., Smetacek, V.S. and
Wefer, G. (eds), Productivity of the oceans: present
and past. John Wiley and Sons, Chichester, 1-34.
Berner, R.A., 1970. Sedimentary pyrite formation.
American Journal of Science, 268: 1-23.
Berner, R.A., 1971. Principles of chemical sedimentology. McGraw-Hill, New York., 240 pp.
Beyer, M.E., Bond, A.M. and McLaughlin, R.J.W., 1975.
Simultaneous
polarographic
determination
of
ferrous, ferric and total iron in standard rocks.
Analytical Chemistry, 47 (3): 479-482.
Biber, M.V., Dos Santos Afonso, M. and Stumm, W.,
1994. The coordination chemistry of weathering:
IV: Inhibitation of the dissolution of oxides
minerals. Geochimica Cosmochimica Acta, 58 (9):
1999-2010.
Bischoff, J.L., 1972. A ferroan nontronite from the Red
Sea geothermal system. Clays and Clay Minerals, 20:
217-223.
Blank, M., Leinen, M. and Prospero J.M., 1985. Major
Asian aeolian inputs indicated by the mineralogy of
aerosols and sediments in the western North Pacific.
Nature, 314: 84-86.
Blesa, M.A., Marinovich, H.A., Baumgartner, E.C., and
Marota, A.J.G., 1987. Mechanism of dissolution of
magnetite by oxalic acid - ferrous ion solution.
Inorganic Chemistry, 26: 3713-3717.
Böhm, J., 1925. Über Aluminium- und Eisenoxide I.
Zeitschrift der Anorganischen Chemie, 149: 203218.
Bonneville, S., Van Cappellen, P., and Behrends, T.,
2004. Microbial reduction of iron(III) oxyhydroxides: effects of mineral solubility and availability. Chemical Geology, 212: 255-268.
Borer, P.M., Sulzberger, B., Reichard, P., and Kraemer,
S.M., 2005. Effect of siderophores on the lightinduced dissolution of colloidal iron(III) (hydr)oxides. Marine Chemistry, 93: 179-193.
Broecker, W.S., Spencer, D.W., Craig, H., 1982.
GEOSECS Pacific Expedition: Hydrographic Data.
U.S. Goverment Printing Office, Washington, DC, 3:
137 pp.
Bruland, K.W., Rue, E.L., Smith, G.J., and DiTullio,
G.R., 2005. Iron, macronutrients and diatom blooms
in the Peru upwelling regime: brown and blue waters
of Peru. Marine Chemistry, 93: 81-103.
Buresh, R.J. and Moraghan, J.T., 1976. Chemical
reduction of nitrate by ferrous iron. Journal of
Environmental Quality, 5: 320-325.
Canfield, D.E., Raiswell, R., Westrich, J.T., Reaves,
C.M. and Berner, R.A., 1986. The use of chromium
reduction in the analysis of reduced inorganic sulfur
in sediments and shales. Chemical Geology, 54: 149155.
Canfield, D.E., 1988. Sulfate reduction and the diagenesis of iron in anoxic marine sediments. Ph.D.
thesis. Yale Univ., 248 pp.
Canfield, D.E., 1989. Reactive iron in marine sediments. Geochimica Cosmochimica Acta, 51: 619632.
Canfield, D.E., Raiswell, R. and Botrell, S., 1992. The
reactivity of sedimentary iron minerals towards
sulfide. American Journal of Science, 292: 659-683.
Canfield, D.E., 1993. Organic matter oxidation in
marine sediments. In: Wollast, R., Mackenzie, F.T.
and Chou, L. (eds) Interactions of C, N, P and S
biogeochemical cycles and global change. NATO ASI
Series, 4, Springer, Berlin, Heidelberg, NY, pp. 333363.
Canfield, D.E., Thamdrup, B. and Hansen, J.W., 1993a.
The anaerobic degradation of organic matter in
Danish coastal sediments: Iron reduction, manganese
reduction, and sulfate reduction. Geochimica
Cosmochimica Acta, 57: 3867-3883.
Canfield, D.E., Jørgensen, B.B., Fossing, H., Glud, R.,
Gundersen, J., Ramsing, N.B., Thamdrup, B.,
Hansen, J.W., Nielsen, L.P. and Hall, P.O.J., 1993b.
Pathways of organic carbon oxidation in three
continental margin sediments. Marine Geology, 113:
27-40.
Canfield, D.E., 1997. The geochemistry of river
particles from the continental USA: Major
elements. Geochimica Cosmochimica Acta, 61:
3349-3365.
Carlson, T.N. and Prospero, J.M., 1972. The large-scale
movement of Saharan air outbreaks over the
northern equatorial Atlantic. Journal of Applied
Meteorology, 11: 283-297.
Carothers, W.W., Adami, L.H. and Rosenbauer, R.J.,
1988. Experimental oxygen isotope fractionation
between siderite-water and phosphoric acid liberated
CO 2 -siderite. Geochimica Cosmochimica Acta, 52:
2445-2450
