Goldschmidt 2026
References for “175 kyr of B/Ca-Derived [CO32-] from the Central Equatorial Pacific”
Jacobel, Costa and Marchitto
Anderson, R.F., Sachs, J.P., Fleisher, M.Q., Allen, K.A., Yu, J., Koutavas, A., Jaccard, S.L., 2019. Deep‐Sea Oxygen Depletion and Ocean Carbon Sequestration During the Last Ice Age. Global Biogeochemical Cycles 33, 301–317. https://doi.org/10.1029/2018GB006049
Lynch-Stieglitz, J., Polissar, P.J., Jacobel, A.W., Hovan, S.A., Pockalny, R.A., Lyle, M., Murray, R.W., Ravelo, A.C., Bova, S.C., Dunlea, A.G., Ford, H.L., Hertzberg, J.E., Wertman, C.A., Maloney, A.E., Shackford, J.K., Wejnert, K., Xie, R.C., 2015. Glacial-interglacial changes in central tropical Pacific surface seawater property gradients. Paleoceanography 30, 423–438. https://doi.org/10.1002/2014PA002746
Jacobel, A.W., Costa, K.M., Applebaum, L.M., Conde, S., 2025a. New controls on sedimentation and climate in the central equatorial Pacific Ocean. Geochronology 7, 123–138. https://doi.org/10.5194/gchron-7-123-2025
Yu, J., Anderson, R.F., Rohling, E.J., 2014. Deep Ocean Carbonate Chemistry and Glacial-Interglacial Atmospheric CO₂ Changes. Oceanography 27, 16–25. https://doi.org/10.5670/oceanog.2014.04
Suzuki, T., Ishii, M., Aoyama, M., Christian, J.R., Enyo, K., Kwano, T., Key, R.M., Kosugi, N., Kozyr, A., Miller, L.A., Murata, A., Nakano, T., Ono, T., Saino, T., Sasaki, K., Sasano, D., Takatani, Y., Wakita, M., Sabine, C.L., 2013. PACIFICA Data Synthesis Project. ORNL/CDIAC-159, NDP-092. https://doi.org/10.3334/CDIAC/OTG.PACIFICA_NDP092
Schlitzer, R., 2016. Ocean Data View.
Jacobel, A.W., Costa, K.M., Lynch-Stieglitz, J., Marchitto, T.M., 2025b. Deep Pacific carbonate chemistry since the Last Glacial Maximum. Quaternary Science Reviews 370, 109656. https://doi.org/10.1016/j.quascirev.2025.109656
Kerr, J., Rickaby, R., Yu, J., Elderfield, H., Sadekov, A.Y., 2017. The effect of ocean alkalinity and carbon transfer on deep-sea carbonate ion concentration during the past five glacial cycles. Earth and Planetary Science Letters 471, 42–53. https://doi.org/10.1016/j.epsl.2017.04.042
Yu, J., Anderson, R.F., Jin, Z., Rae, J.W.B., Opdyke, B.N., Eggins, S.M., 2013. Responses of the deep ocean carbonate system to carbon reorganization during the Last Glacial-interglacial cycle. Quaternary Science Reviews 76, 39–52. https://doi.org/10.1016/j.quascirev.2013.06.020
Key, R.M., Kozyr, A., Sabine, C.L., Lee, K., Wanninkhof, R., Bullister, J.L., Feely, R.A., Millero, F.J., Mordy, C., Peng, T.H., 2004. A global ocean carbon climatology: Results from Global Data Analysis Project (GLODAP). Global Biogeochemical Cycles 18, DOI: 10.1029-2004GB002247. https://doi.org/10.1029/2004GB002247
Matsumoto, K., Oba, T., Lynch-Stieglitz, J., Yamamoto, H., 2002. Interior hydrography and circulation of the glacial Pacific Ocean. Quaternary Science Reviews 21, 1693–1704. https://doi.org/10.1016/S0277-3791(01)00142-1
Yu, J., Menviel, L., Jin, Z.D., Anderson, R.F., Jian, Z., Piotrowski, A.M., Ma, X., Rohling, E.J., Zhang, F., Marino, G., McManus, J.F., 2020. Last glacial atmospheric CO2 decline due to widespread Pacific deep-water expansion. Nature Geoscience. https://doi.org/10.1038/s41561-020-0610-5