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Last Update :2022.10.03  

PUBLICATION

Peer-Reviewed Papers

  • Behrens, B.C., Yokoyama, Y., Miyairi, Y., Sproson, A.D., Yamane, M., Jimenez-Espejo, F.J., McKay, R.M., Johnson, K.M., Escutia, C., Dunbar, R.B. (2022) Beryllium isotope variations recorded in the Adelie Basin, East Antarctica reflect Holocene changes in ice dynamics, productivity, and scavenging efficiency. Quaternary Science Advances, 7, 100054. doi:10.1016/j.qsa.2022.100054. [Open Access]
  • Clementi, V.J., Rosenthal, Y., Bova, S.C., Thomas, E.K., Wright, J.D., Mortlock, R.A., Cowling, O.C., Godfrey, L.V., Childress, L.B., and Expedition 379T Scientists(including Sproson, A.D.). (2022) Deep submarine infiltration of altered geothermal groundwater on the south Chilean Margin. Communications Earth & Environment, 3:218. doi:10.1038/s43247-022-00541-3. [Open Access]
  • Sproson, A.D., Pogge von Strandmann, P.A.E., Selby, D., Jarochowska, E., Frýda, J., Hladil, J., Loydell, D.K., Slavík, L., Calner, M., Maier, G., Munnecke, A., and Lenton, T.M. (2022) Osmium and lithium isotope evidence for weathering feedbacks linked to orbitally paced organic carbon burial and Silurian glaciations. Earth and Planetary Science Letters, 577, 117260. doi:10.1016/j.epsl.2021.117260. [Abstract]
  • Sproson, A.D., Yokoyama, Y., Miyairi, Y., Aze, T., and Totten, R.L. (2022) Holocene melting of the West Antarctic Ice Sheet driven by tropical Pacific warming. Nature Communications, 13: 2434. doi:10.1038/s41467-022-30076-2. [Open Access]
  • Saintilan, N.J., Sproson, A.D., Selby, D., Rottier, B., Casanova, V., Creaser, R.A., Kouzmanov, K., Fontboté, L., Piecha, M., Gereke, M., and Zambito IV, J.J. (2021) Osmium isotopic constraints on sulphide formation in the epithermal environment of magmatic-hydrothermal mineral deposits. Chemical Geology, 564, 120053. doi:10.1016/j.chemgeo.2020.120053. [Abstract]
  • Sproson, A.D., Aze, T., Behrens, B., and Yokoyama, Y. (2021) Initial measurement of beryllium‐9 using high‐resolution inductively coupled plasma mass spectrometry allows for more precise applications of the beryllium isotope system within the Earth Sciences. Rapid Communications in Mass Spectrometry, 35(8), e9059. doi:10.1002/rcm.905. [Abstract]
  • Sproson, A.D., Takano, Y., Miyairi, Y., Aze, T., Matsuzaki, H., Ohkouchi, N., and Yokoyama, Y. (2021) Beryllium isotopes in sediments from Lake Maruwan Oike and Lake Skallen, East Antarctica, reveal substantial glacial discharge during the late Holocene. Quaternary Science Reviews, 256, 106841. doi:10.1016/j.quascirev.2021.106841. [Abstract]
  • Zou, J., He, H., Yokoyama, Y., Sproson, A.D., Shirahama, Y., Zhou, Y., Wei, Z., Shi, F., and Geng, S. (2021) Identification of Paleoearthquakes and Coseismic Slips on a Normal Fault Using High-Precision Quantitative Morphology: Application to the Jiaocheng Fault in the Shanxi Rift, China. Lithosphere, 2021(Special 2):2550879. doi:10.2113/2021/2550879. [Open Access]
  • Sproson, A.D. (2020) Pacing of the latest Ordovician and Silurian carbon cycle by a ~4.5 Myr orbital cycle. Palaeogeography, Palaeoclimatology, Palaeoecology, 540, 109543. doi:10.1016/j.palaeo.2019.109543. [Abstract]
  • Sproson, A.D., Selby, D., Suzuki, K., Oda, T., and Kuroda, J. (2020) Anthropogenic Osmium in Macroalgae from Tokyo Bay Reveals Widespread Contamination from Municipal Solid Waste. Environmental Science & Technology, 54(15), 9356-9365. doi:10.1021/acs.est.0c01602. [Abstract]
  • Zou, J., He, H., Yokoyama, Y., Shirahama, Y., Sproson, A.D., Wei, Z., Shi, F., Hao, H., Miyairi, Y., Lü, L., Su, P., and Zhou, C. (2020) Seismic history of a bedrock fault scarp using quantitative morphology together with multiple dating methods: A case study of the Luoyunshan piedmont fault, southwestern Shanxi Rift, China. Tectonophysics, 788, 228473. doi:10.1016/j.tecto.2020.228473. [Abstract]
  • Behrens, B., Miyairi, Y., Sproson, A.D., Yamane, M., and Yokoyama, Y. (2019) Meltwater discharge during the Holocene from the Wilkes subglacial basin revealed by beryllium isotope analysis of marine sediments. Journal of Quaternary Science, 34(8), 603-608. doi:10.1002/jqs.3148. [Abstract]
  • Li, Y., Zhang, S., Hobbs, R., Caiado, C., Sproson, A., Selby, D., and Rooney, A.D.(2019) Monte Carlo sampling for error propagation in linear regression and applications in isochron geochronology. Science Bulletin, 64(3), 189-197. doi:10.1016/j.scib.2018.12.019. [Abstract]
  • Ownsworth, E., Selby, D., Ottley, C.J., Unsworth, E., Raab, A., Feldmann, J., Sproson, A.D., Kuroda, J., Faidutti, C., and Bücker, P. (2019) Tracing the natural and anthropogenic influence on the trace elemental chemistry of estuarine macroalgae and the implications for human consumption. Science of The Total Environment, 685, 259-272. doi:10.1016/j.scitotenv.2019.05.263. [Abstract]
  • Yokoyama, Y., Hirabayashi, S., Goto, K., Okuno, J., Sproson, A.D., Haraguchi, T., Ratnayake, N., and Miyairi, Y. (2019) Holocene Indian Ocean sea level, Antarctic melting history and past Tsunami deposits inferred using sea level reconstructions from the Sri Lankan, Southeastern Indian and Maldivian coasts. Quaternary Science Reviews, 206, 150-161. doi:10.1016/j.quascirev.2018.11.024. [Abstract]
  • Sproson, A.D., Selby, D., Gannoun, A., Burton, K.W., Dellinger, M., and Lloyd, J.M. (2018) Tracing the Impact of Coastal Water Geochemistry on the Re‐Os Systematics of Macroalgae: Insights From the Basaltic Terrain of Iceland. Journal of Geophysical Research: Biogeosciences, 123,(9). 2791-2806. doi:10.1029/2018JG004492. [Open Access]
  • Racionero-Gómez, B., Sproson, A.D., Selby, D., Gannoun, A., Gröcke, D.R., Greenwell, H.C., and Burton, K.W. (2017) Osmium uptake, distribution, and 187Os/188Os and 187Re/188Os compositions in Phaeophyceae macroalgae, Fucus vesiculosus: Implications for determining the 187Os/188Os composition of seawater. Geochimica et Cosmochimica Acta, 199, 48-57. doi:10.1016/j.gca.2016.11.033. [Abstract]
  • Racionero-Gómez, B., Sproson, A.D., Selby, D., Gröcke, D.R., Redden, H., and Greenwell, H.C. (2016) Rhenium uptake and distribution in phaeophyceae macroalgae, Fucus vesiculosus. Royal Society Open Science, 3(5), 160161. doi:10.1098/rsos.160161. [Open Access]

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