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Título

Multi-proxy experimental calibration in cold water corals for high resolution paleoreconstructions

AutorPelejero, Carles CSIC ORCID ; Martínez-Dios, Ariadna CSIC ORCID ; Ko, Stanley; Sherrell, Robert M.; Kozdon, Reinhard; López-Sanz, Àngel CSIC ORCID; Calvo, Eva María CSIC ORCID
Fecha de publicación11-dic-2017
EditorAmerican Geophysical Union
Citación2017 AGU Fall Meeting (2017)
ResumenCold-water corals (CWCs) display an almost cosmopolitan distribution over a wide range of depths. Similar to their tropical counterparts, they can provide continuous, high-resolution records of up to a century or more. Several CWC elemental and isotopic ratios have been suggested as useful proxies, but robust calibrations under controlled conditions in aquaria are needed. Whereas a few such calibrations have been performed for tropical corals, they are still pending for CWCs. This reflects the technical challenges involved in maintaining these slow-growing animals alive during the long-term experiments required to achieve sufficient skeletal growth for geochemical analyses. We will show details of the set up and initial stages of a long-term experiment being run at the ICM (Barcelona), where live specimens (>150) of Desmophyllum dianthus sampled in Comau Fjord (Chile) are kept under controlled and manipulated physical chemistry (temperature, pH, phosphate, barium, cadmium) and feeding conditions. With this set up, we aim to calibrate experimentally several specific elemental ratios including P/Ca, Ba/Ca, Cd/Ca, B/Ca, U/Ca and Mg/Li as proxies of nutrients dynamics, pH, carbonate ion concentration and temperature. For the trace element analysis, we are analyzing coral skeletons using Laser Ablation Inductively Coupled Plasma Mass Spectrometry (LA-ICP-MS), running quantitative analyses on spot sizes of tens of microns, and comparing to micromilling and solution ICPMS. Preliminary data obtained using these techniques will be presented, as well as measurements of calcification rate. Since coral-water corals are potentially vulnerable to ocean acidification, the same experiment is being exploited to assess potential effects of the pH stressor in D. dianthus; main findings to date will be summarized
DescripciónAmerican Geophysical Union Fall Meeting, 11-15 December 2017, New Orleans
Versión del editorhttps://agu.confex.com/agu/fm17/meetingapp.cgi/Paper/252335
URIhttp://hdl.handle.net/10261/179617
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