Copper incorporation in foraminiferal calcite: results from culturing experiments
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Alve, E.: Benthic foraminifera in sediment across cores reflecting heavy metal pollution in Sørfjord, western Norway, J. Foraminifer. Res., 21(1), 1–19, 1991.
Alve, E. and Olsgard, F.: Benthic foraminiferal colonization in experiments with copper contaminated sediment, J. Foraminifer. Res., 29(3), 186–195, 1999.
Armynot du Châtelet, E., Debenay, J.-P., and Soulard, R.: Foraminiferal proxies for pollution monitoring in moderately polluted harbors, Environ. Pollut., 127, 27–40, 2004.
Arnold, Z. M.: \\textitDiscorinopsis aguayoi (Bermudez) and \\textitDiscorinopsis vadecens Cushman and Bronnimann: A study of variation in cultures of living foraminifera, Contr. Cushman Found. Foraminifer. Res., 5(1), 4–13, 1954.
Bender, M. L., Lorens, R. B., and Williams, D. F.: Sodium, magnesium, and strontium in the tests of planktonic foraminifera, Micropaleontol., 21, 448–459, 1975.
Bentov, S. and Erez, J.: Impact of biomineralization processes on the Mg content of foraminiferal shells: A biological perspective, Geochem. Geophys. Geosyst., 7(1), Q01P08, https://doi.org/10.1029/2005GC001015, 2006.
Bernhard, J. M., Blanks, J. K., Hintz, C. J., and Chandler, G. T.: Use of fluorescent calcite marker calcein to label foraminiferal tests, J. Foraminifer. Res., 34(2), 96–101, 2004.
Berner, R. A.: The role of magnesium in the crystal growth of calcite and aragonite from seawater, Geochim. Cosmochim. Acta, 39(4), 489–504, 1975.
Bijma, J., Honisch, B., and Zeebe, R. E.: Impact of the ocean carbonate chemistry on living foraminiferal shell weight: Comment on "Carbonate ion concentration in glacial-age deep waters of the Caribbean Sea" by W. S. Broecker and E. Clark., Geochem. Geophys. Geosyst., 3(11), 1064, https://doi.org/10.1029/2002GC000388, 2002.
Borrego, J., López-González, N., and Carro, B.: Geochemical signature as paleoenvironmental markers in Holocene sediments of the Tinto River estuary (Southwestern Spain), Est. Coast. Shelf Sci., 61, 631–641, 2004.
Boyle, E. A.: Cadmium, zinc, copper, and barium in foraminifera tests, Earth Planet. Sci. Lett., 53, 11–35, 1981.
Boyle, E. A.: Cadmium: chemical tracer of deepwater paleoceanography, Paleoceanography, 3, 471–489, 1988.
Brandt, L. E., Sunda, W. G., and Guillard, R. R. L.: Reduction of marine phytoplankton reproduction rates by copper and cadmium, J. Exp. Mar. Biol. Ecol., 96, 225–250, 1986.
Bresler, V. and Yanko, V.: Chemical ecology: A new approach to the study of living benthic epiphytic foraminifera, J. Foraminifer. Res., 25(3), 267–279, 1995.
Bruland, K. W., Donat, J. R., and Hutchins, D. A.: Interactive influences of bioactive trace metals on biological production in oceanic waters, Limnol. Oceanogr., 36(1), 1555–1577, 1991.
Bryan, G. W. and Langston, W. J.: Bioavailability, accumulation and effects of heavy metals in sediments with special reference to estuaries: A review, Environ. Pollut., 76(2), 89–131, 1992.
Chang, S. I. and Reinfelder, J. R.: Bioaccumulation, subcellular distribution, and trophic transfer of copper in a coastal marine diatom, Environ. Sci. Technol., 34, 4931–4935, 2000.
Delaney, M. L., Bé, A. W. H., and Boyle, E. A.: Li, Sr, Mg, and Na in foraminiferal calcite shells from laboratory culture, sediment traps, and sediment cores, Geochim. Cosmochim. Acta, 49(6), 1327–1341, 1985.
Duckworth, D. L.: Magnesium concentration in the tests of the planktonic foraminifer \\textitGloborotalia truncatulinoides, J. Foram. Res., 7(4), 304–312, 1977.
Elberling, B., Knudsen, K. L., Kristensen, P. H., and Asmund, G.: Applying foraminiferal stratigraphy as a biomarker for heavy metal contamination and mining impact in a fiord in west Greenland, Mar. Environ. Res., 55, 235–256, 2003.
Elderfield, H., Bertram, C. J., and Erez, J.: A biomineralization model for the incorporation of trace elements into foraminiferal calcite, Earth Planet. Sci. Lett., 142, 409–423, 1996.
Ellison, R. L., Broome, R., and Oglivie, R.: Foraminiferal response to trace metal contamination in the Patapsco River and Baltimore harbour, Maryland, Mar. Pollut. Bull., 17(9), 419–423, 1986.
Elzinga, E. J. and Reeder, R. J.: X-ray absorption spectroscopy study of Cu$^2+$ and Zn$^2+$ adsorption complexes at the calcite surface: Implications for site-specific metal incorporation preferences during calcite crystal growth, Geochim. Cosmochim. Acta, 66(22), 3943–3954, 2002.
Eriksen, R. S., Mackey, D. J., Van Dam, R., and Nowak, B.: Copper speciation and toxicity in Macquarie Harbour, Tasmania: an investigation using a copper ion selective electrode, Mare Chem., 74, 99–113, 2001.
Ernst, S. R., Morvan, J., Geslin, E., Le Bihan, A., and Jorissen, F. J.: Benthic foraminiferal response to experimentally induced \\textitErika oil pollution, Mar. Micropal., 61, 76–93, 2006.
Ferraro, L., Sprovieri, M., Alberico, I., Lirer, F., Prevedello, L., and Marsella, E.: Benthic foraminifera and heavy metals distribution: A case study from the Naples harbour (Tyrrhenean Sea, Southern Italy), Environ. Pollut., 142, 274–287, 2006.
Franklin, M. L. and Morse, J. W.: The interaction of copper with the surface of calcite, Ocean Sci. Eng., 7, 147–174, 1982.
Gaffey, S. J. and Brönnimann, C. E.: Effects of bleaching on organic and mineral phases in biogenic carbonates, Journal of Sediment. Petrol., 63, 752–754, 1993.
Geslin, E., Debenay, J.-P., Duleba, W., and Bonetti, C.: Morphological abnormalities of foraminiferal tests in Brazilian environments: comparison between polluted and non-polluted areas, Mar. Micropaleontol., 45, 151–168, 2002.
Hallock, P., Lidz, B. H., Cockey-Burkhard, E. M., and Donnelly, K. B.: Foraminifera as bioindicators in coral reef assessment and monitoring: the FORAM index, Environ. Monit. and Assess., 83(1–3), 221–238, 2003.
Havach, S. M., Thomas Chandler, G., Wilson-Finelli, A., and Shaw, T. J.: Experimental determination of trace element partition coefficients in cultured benthic foraminifera, Geochim. Cosmochim. Acta, 65(8), 1277–1283, 2001.
Hayward, B. W., Holzmann, M., Grenfell, H. R., Pawlowski, J., and Triggs, C. M.: Morphological distinction of molecular types in \\textitAmmonia – towards a taxonomic revision of the world's most commonly misidentified foraminifera, Mar. Micropaleontol., 50, 237–271, 2004.
Hemleben, C. H., Anderson, O. R., Berthold, W., and Spindler, M.: Calcification and chamber formation in Foraminifera- a brief overview, in: Biomineralization in lower plants and animals, Systematics Association Special Volume 30, edited by: Leadbeater, B. S. C. and Riding, R., Clarendon Press, Oxford (for the Systematics Association), p 237–249, 1986.
Hintz, C. J., Chandler, G. T., Bernhard, J. M., McCorkle, D. C., Havach, S. M., Blanks, J. K., and Shaw, T. J.: A physicochemically constrained seawater culturing system for production of benthic foraminifera, Limnol. Oceanogr-Meth., 2, 160–170, 2004.
Hintz, C. J., Shaw, T. J., Chandler, G. T., Bernhard, J. M., McCorkle, D. C., and Blanks, J. K.: Trace/ minor element:calcium ratios in cultured benthic foraminifera. Part I: Inter-species and inter-individual variability, Geochim. Cosmochim. Acta, 70(8), 1952–1963, 2006a.
Hintz, C. J., Shaw, T. J., Bernhard, J. M., Chandler, G. T., McCorkle, D. C., and Blanks, J. K.: Trace/ minor element:calcium ratios in cultured benthic foraminifera. Part II: Ontogenetic variation, Geochim. Cosmochim. Acta, 70(8), 1964–1976, 2006b.
Huerta-Diaz, M. A. and Morse, J. W.: Pyritization of trace metals in anoxic marine sediments, Geochim. Cosmochim. Acta, 56(7), 2681–2702, 1992.
Kitano, Y., Okumura, M., and Idogaki, M.: Abnormal behaviors of copper (II) and zinc ions in parent solution at the early stage of calcite formation, Geochem. J., 14, 167–175, 1980.
Koide, M., Lee, D. S., and Goldberg, E. D.: Metal and transuranic records in mussel shells, byssal threads and tissues, Estuar. Coast. Shelf Sci., 15, 679–695, 1982.
Lea, D. W. and Boyle, E. A.: Ba content of benthic foraminifera controlled by bottom water composition, Nature, 338, 751–753, 1989.
Lea, D. W. and Boyle, E. A.: Ba in planktonic foraminifera, Geochim. Cosmochim. Acta, 55, 3321–3331, 1991.
Lea, D. W., Mashiotta, T. A., and Spero, H. J.: Controls on magnesium and strontium uptake in planktonic foraminifera determined by live culturing, Geochim. Cosmochim. Acta, 63(16), 2369–2379, 1999.
Le Cadre, V. and Debenay, J.-P.: Morphological and cytological responses of \\textitAmmonia (foraminifera) to copper contamination: Implications for the use of foraminifera as bioindicators of pollution, Environ. Pollut., 143, 304–317, 2006.
Lewis, E. and Wallace, D. W. R.: Program Developed for CO2 System Calculations, ORNL/CDIAC-105, Carbon Dioxide Information Analysis Center, Oak Ridge National Laboratory, U.S. Department of Energy, Oak Ridge, Tennessee, 1998.
Lu, Y. F. and Allen, H. E.: Characterization of copper complexation with natural dissolved organic matter (DOM) – link to acidic moieties of DOM and competition by Ca and Mg, Water Res., 36, 5083–5101, 2002.
Mackey, D. J. and Zirino, A.: Comments on trace metal speciation in seawater or do "onions" grow in the sea?, Anal. Chim. Acta, 284, 635–647, 1994.
Mason, P. R. D. and Kraan, W. J.: Attenuation of spectral interferences of during laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) using an rf only collision and reaction cell, J. Anal. At. Spectrom., 17, 858–867, 2002.
Marchitto, T. M.: Lack of a significant temperature influence on the incorporation of Cd into benthic foraminiferal tests, Geochem. Geophys. Geosyst., 5(10), Q10D11, https://doi.org/10.1029/2004GC000753, 2004.
Maréchal-Abram, N., Debenay, J.-P., Kitazato, H., and Wada, H.: Cadmium partition coefficients of cultured benthic foraminifera \\textitAmmona beccarii, Geochem. J., 38(3), 271–283, 2004.
Morse, J. W. and Bender, M. L.: Partition coefficients in calcite: examination of factors influencing the validity of experimental results and their application to natural systems, Chem. Geol., 82, 265–277, 1990.
Mucci, A.: The solubility of calcite and aragonite in seawater at various salinities, temperatures, and one atmosphere total pressure, Am. J. Sci., 283, 780–799, 1983.
Mucci, A. and Morse, J. W.: The incorporation of Mg$^2+$ and Sr$^2+$ into calcite overgrowths: influences of growth rate and solution composition, Geochim. Cosmochim. Acta, 47(2), 217–233, 1983.
Nassrallah-Abouka\\"ıs, N., Boughriet, A., Fischer, J. C., Wartel, M., Langelin, H. R., and Abouka\\"ıs, A.: Electron paramagnetic resonance (EPR) study of Cu$^2+$ and Mn$^2+$ ions interacting as probes with calciumcarbonate during the transformation of vaterite into cubic calcite, J. Chem. Soc. Lond. Faraday Trans., 92, 3211–3216, 1996.
Nassrallah-Abouka\\"ıs, N., Boughriet, A., Laureyns, J., Abouka\\"ıs, A., Fischer, J. C., Langelin, H. R., and Wartel, M.: Transformations of vaterite into cubic calcite in the presence of Cu(II)species, Chem. Mater., 10, 238–243, 1998.
Nelson, A. and Donkin, P.: Process of bioaccumulation: The importance of chemical speciation, Mar. Pol. Bull., 16(4), 164–169, 1985.
Nürnberg, D., Bijma, J., and Hemleben, C.: Assessing the reliability of magnesium in foraminiferal calcite as a proxy for water mass temperatures, Geochim. Cosmochim. Acta, 60(5), 803–814, 1996.
Parkhurst, D. L. and Appelo, C. A. J.: User's guide to PHREEQC (Version 2) – A computer program for speciation, batch-reaction, one-dimensional transport, and inverse geochemical calculations: U.S. Geological Survey Water-Resources Investigations Report, 99-4259, 1999.
Papadopoulos, P. and Rowell, D. L.: The reactions of copper and zinc 5 with calcium carbonate surfaces, J. Soil Sci., 40, 39–48, 1989.
Pearce, N. J. G., Perkins, W. T., Westgate, J. A., Gorton, M. P., Jackson, S. E., Neil, C. R., and Chenery, S. P.: A compilation of new and published major and trace element data for NIST SRM 610 and NIST SRM 612 glass reference materials, Geost. Newslett., 21(1), 115–144, 1997.
Petersen, W., Willer, E., and Willamowski, C.: Remobilization of trace elements from polluted anoxic sediments after resuspension in oxic waters, Water Air Soil Poll., 99(1–4), 515–522, 1997.
Pickering, W. F.: Extraction of copper, lead, zinc and cadmium ions sorbed on calcium carbonate, Water, Air, Soil Pollut., 20, 299–309, 1983.
Rashid, M. A. and Leonard, J. D.: Modifications in the solubility and precipitation behavior of various metals as a result of their interaction with sedimentary humic acid, Chem. Geol., 22(2), 89–97, 1973.
Rathburn, A. E. and DeDeckker, P.: Magnesium and strontium compositions of recent benthic foraminifera from the Coral Sea, Australia and Prydz Bay, Antarctica, Mar. Micropaleontol., 32, 231–248, 1997.
Reichart, G. J., Jorissen, F. J., Anschutz, P., and Mason, P. R. D.: Single foraminiferal test chemistry, Geology, 31(4), 335–358, 2003.
Rosenthal, Y., Boyle, E. A., and Slowley, N.: Temperature control on the incorporation of magnesium, strontium, fluorine, and cadmium into benthic foraminiferal shells from Little Bahama Bank: prospects for thermocline paleoceanography, Geochim. Cosmochim. Acta, 61(17), 3633–3643, 1997.
Ruiz, F., González-Regalado, M. L., Borrego, J., Abad, M., and Pendón, J. G.: Ostracoda and foraminifera as short-term tracers of environmental changes in very polluted areas: the Odiel estuary (SW Spain), Environ. Pollut., 129, 49–61, 2004.
Sáinz, A. and Ruiz, F.: Influence of the very polluted inputs of the Tinto-Odiel system on the adjacent littoral sediments of southwestern Spain: A statistical approach, Chemosphere, 62, 1612–1622, 2006.
Samir, A. M. and El-Din, A. B.: Benthic foraminiferal assemblages and morphological abnormalities as pollution proxies in two Egyptian basins, Mar. Micropaleontol., 41, 193–227, 2001.
Saxby, J. D.: Diagenesis of metal-organic complexes in sediments: formation of metal sulphides from cystine complexes, Chem. Geol., 12(4), 241–248, 1973.
Segev, E. and Erez, J.: Effect of Mg/Ca ratio in seawater on shell composition in shallow benthic foraminifera, Geochem. Geophys. Geosyst., 7(2), Q02P09, https://doi.org/10.1029/2005GC000969, 2006.
Shannon, R. D.: Revised effective ionic radii and systematic studies of interatomic distances in halides and chalcogenides, Acta Crystallogr. A, 32, 751–767, 1976.
Sunda, W. G. and Huntsman, S. A.: Regulation of copper concentration in the oceanic nutricline by phytoplankton uptake and regeneration cycles, Limnol. Oceanogr., 40(1), 132–137, 1995.
Toyofuku, T., Kitazato, H., Kawahata, H., Tsuchiya, M., and Nohara, M.: Evaluation of Mg/Ca thermometry in foraminifera: Comparison of experimental results and measurements in nature, Paleoceanography, 15(4), 456–464, 2000.
Toyofuku, T. and Kitazato, H.: Micromapping of Mg/Ca values in cultured specimens of the high magnesium benthic foraminifera, Geochem. Geophys. Geosyst., 6(11), Q11P05, https://doi.org/10.1029/2005GC000961, 2005.
Ueno, K., Imamura, T., and Cheng, K. L.: Handbook of organic analytical reagents, 2nd ed. CRC Publishers, 1992.
Wells, A. F.: Structural inorganic chemistry, 5th ed, Clarendon, 1984.
Zeebe, R. E. and Sanyal, A.: Comparison of potential strategies of planktonic foraminifera for house building: Mg$^2+$ or H$^+$ removal?, Geochim. Cosmochim. Acta, 66(7), 1159–1169, 2002.
Zeebe, R. E. and Wolf-Gladrow, D.: CO2 in seawater: Equilibrium, kinetics and isotopes, Elsevier Oceanographic Series, Amsterdam, 2001.