Ion microprobe assessment of the heterogeneity of Mg/Ca, Sr/Ca and Mn/Ca ratios in <i>Pecten maximus</i> and <i>Mytilus edulis</i> (bivalvia) shell calcite precipitated at constant temperature
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Published:2009-07-20
Issue:7
Volume:6
Page:1209-1227
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ISSN:1726-4189
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Container-title:Biogeosciences
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language:en
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Short-container-title:Biogeosciences
Author:
Freitas P. S.,Clarke L. J.,Kennedy H.,Richardson C. A.
Abstract
Abstract. Small-scale heterogeneity of biogenic carbonate elemental composition can be a significant source of error in the accurate use of element/Ca ratios as geochemical proxies. In this study ion microprobe (SIMS) profiles showed significant small-scale variability of Mg/Ca, Sr/Ca and Mn/Ca ratios in new shell calcite of the marine bivalves Pecten maximus and Mytilus edulis that was precipitated during a constant-temperature culturing experiment. Elevated Mg/Ca, Sr/Ca and Mn/Ca ratios were found to be associated with the deposition of elaborate shell features, i.e. a shell surface stria in P. maximus and surface shell disturbance marks in both species, the latter a common occurrence in bivalve shells. In both species the observed small-scale elemental heterogeneity most likely was not controlled by variable transport of ions to the extra-pallial fluid, but by factors such as the influence of shell organic content and/or crystal size and orientation, the latter reflecting conditions at the shell crystal-solution interface. In the mid and innermost regions of the P. maximus shell the lack of significant small-scale variation of Mg/Ca ratios, which is consistent with growth at constant temperature, suggest a potential application as a palaeotemperature proxy. Cross-growth band element/Ca ratio profiles in the interior of bivalve shells may provide more promising palaeo-environmental tools than sampling from the outer region of bivalve shells.
Publisher
Copernicus GmbH
Subject
Earth-Surface Processes,Ecology, Evolution, Behavior and Systematics
Reference97 articles.
1. Addadi, L., Joester, D., Nudelman, F., and Weiner, S.: Mollusk shell formation: A source of new concepts for understanding biomineralization processes, Chem. Eur. J., 12, 980–987, 2006. 2. Allison, N.: Comparative determination of trace and minor elements in coral aragonite by ion microprobe analysis, with preliminary results from Phuket, southern Thailand, Geochim. Cosmochim. Ac., 60, 3457–3470, 1996. 3. Allison, N. and Austin, W.: The potential of ion microprobe analysis in detecting geochemical variations across individual foraminifera tests, Geochem. Geophy. Geosy., 4, 8403, https://doi.org/8410.1029/2002GC000430, 2003. 4. Allison, N., Finch, A. A., Webster, J. M., and Clague, D. A.: Palaeoenvironmental records from fossil corals: The effects of submarine diagenesis on temperature and climate estimates, Geochim. Cosmochim. Ac., 71, 4693–4703, 2007. 5. Barats, A., Amouroux, D., Pécheyran, C., Chauvaud, L., and Donard, O. F. X.: High-Frequency Archives of Manganese Inputs To Coastal Waters (Bay of Seine, France) Resolved by the LA-ICP-MS Analysis of Calcitic Growth Layers along Scallop Shells (\\textitPecten maximus), Environ. Sci. Technol., 42, 86–92, 2008.
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