TY - JOUR
T1 - Sea surface temperature reconstruction in the Pacific Ocean using multi-elemental proxy in Porites and Diploastrea corals
T2 - Application to Palau Archipelago
AU - Canesi, Marine
AU - Douville, Eric
AU - Montagna, Paolo
AU - Bordier, Louise
AU - Caquineau, Sandrine
AU - Pons-Branchu, Edwige
AU - Iwankow, Guillaume
AU - Stolarski, Jarosław
AU - Allemand, Denis
AU - Planes, Serge
AU - Moulin, Clémentine
AU - Lombard, Fabien
AU - Bourdin, Guillaume
AU - Troublé, Romain
AU - Agostini, Sylvain
AU - Banaigs, Bernard
AU - Boissin, Emilie
AU - Boss, Emmanuel
AU - Bowler, Chris
AU - de Vargas, Colomban
AU - Flores, J. Michel
AU - Forcioli, Didier
AU - Furla, Paola
AU - Gilson, Eric
AU - Galand, Pierre E.
AU - Pesant, Stéphane
AU - Sunagawa, Shinichi
AU - Thomas, Olivier P.
AU - Thurber, Rebecca Vega
AU - Voolstra, Christian R.
AU - Wincker, Patrick
AU - Zoccola, Didier
AU - Reynaud, Stéphanie
N1 - Publisher Copyright:
© 2023
PY - 2024/2/5
Y1 - 2024/2/5
N2 - Massive reef-building Porites corals are commonly studied to obtain long-term reconstructions of past sea surface temperature (SST) using temperature-sensitive elemental proxies, such as Sr/Ca or Li/Mg ratios. Most recently, a multi-proxy approach combining these two ratios (e.g. D'Olivo et al., 2018) and the Sr[sbnd]U method (DeCarlo et al., 2016) have proved to be more robust to reconstruct paleo-temperatures. To date, no study has been carried out on the application of these new approaches on the Diploastrea heliopora coral, another massive reef-building genus that can potentially provide longer temperature records. Moreover, only a few studies have assessed coral SST calibrations at the scale of the Indo-Pacific basin and compared SST reconstructions obtained from two massive coral genera from the same site. In this study, we investigated the elemental composition of the topmost portion of 34 modern tropical Porites and 6 Diploastrea colonies collected during the Tara Pacific expedition (2016–2018) from various hydrological contexts in the Pacific Ocean. We derived and discussed annual Sr/Ca, Li/Mg, combined Sr/Ca-Li/Mg and Sr/Ca-Li/Ca-Mg/Ca and Sr[sbnd]U vs. SST calibrations as well as potential intra-colonial and genus specific effects and evaluated the use of these basin-wide calibration equations. Overall, multi-ratio and multi-genera SST calibrations perform better than single-ratio calibrations and seem to improve temperature reconstructions. These new SST calibrations were applied to two colonies of Porites and Diploastrea collected from the same site in the North-West of the Palau archipelago located in the western Pacific Ocean to evaluate the applicability of universal calibrations based on different proxies and their combination. Coral-based SST records spanning the last 141 years show decadal changes and recent warming episodes that are related to major El Niño Southern Oscillation events. However, differences in reconstruction remain between both genera in the long-term trends, amplitudes, and absolute temperatures, depending on which genus or temperature proxy is considered.
AB - Massive reef-building Porites corals are commonly studied to obtain long-term reconstructions of past sea surface temperature (SST) using temperature-sensitive elemental proxies, such as Sr/Ca or Li/Mg ratios. Most recently, a multi-proxy approach combining these two ratios (e.g. D'Olivo et al., 2018) and the Sr[sbnd]U method (DeCarlo et al., 2016) have proved to be more robust to reconstruct paleo-temperatures. To date, no study has been carried out on the application of these new approaches on the Diploastrea heliopora coral, another massive reef-building genus that can potentially provide longer temperature records. Moreover, only a few studies have assessed coral SST calibrations at the scale of the Indo-Pacific basin and compared SST reconstructions obtained from two massive coral genera from the same site. In this study, we investigated the elemental composition of the topmost portion of 34 modern tropical Porites and 6 Diploastrea colonies collected during the Tara Pacific expedition (2016–2018) from various hydrological contexts in the Pacific Ocean. We derived and discussed annual Sr/Ca, Li/Mg, combined Sr/Ca-Li/Mg and Sr/Ca-Li/Ca-Mg/Ca and Sr[sbnd]U vs. SST calibrations as well as potential intra-colonial and genus specific effects and evaluated the use of these basin-wide calibration equations. Overall, multi-ratio and multi-genera SST calibrations perform better than single-ratio calibrations and seem to improve temperature reconstructions. These new SST calibrations were applied to two colonies of Porites and Diploastrea collected from the same site in the North-West of the Palau archipelago located in the western Pacific Ocean to evaluate the applicability of universal calibrations based on different proxies and their combination. Coral-based SST records spanning the last 141 years show decadal changes and recent warming episodes that are related to major El Niño Southern Oscillation events. However, differences in reconstruction remain between both genera in the long-term trends, amplitudes, and absolute temperatures, depending on which genus or temperature proxy is considered.
KW - Calibrations
KW - Elemental proxies and SST reconstructions
KW - Massive tropical corals
KW - Pacific Ocean
KW - Sea Surface Temperature
UR - https://www.scopus.com/pages/publications/85180417260
U2 - 10.1016/j.chemgeo.2023.121884
DO - 10.1016/j.chemgeo.2023.121884
M3 - Article
AN - SCOPUS:85180417260
SN - 0009-2541
VL - 645
JO - Chemical Geology
JF - Chemical Geology
M1 - 121884
ER -