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Journal Article
G. C. Bond, Mandeville, C., and Hoffmann, S., Were Rhyolitic Glasses in the Vedde Ash and in the North Atlantic's Ash Zone 1 produced by the Same Volcanic Eruption?, Quaternary Science Reviews, vol. 20, pp. 118-1199, 2001.
M. Moros, Kuijpers, A., Snowball, I., Lassen, S., Backstrom, D., Gingele, F., and McManus, J. F., Were glacial iceberg surges in the North Atlantic triggered by global climatic warming?, Marine Geology, vol. 192, no. 4, pp. 393-417, 2002.
M. Moros, Kuijpers, A., Snowball, I., Lassen, S., Backstrom, D., Gingele, F., and McManus, J. F., Were glacial iceberg surges in the North Atlantic triggered by global climatic warming?, Marine Geology, vol. 192, no. 4, pp. 393-417, 2002.
L. C. Iacono, Mateo, M. A., Gracia, E., Guasch, L., Carbonell, R., Serrano, L., Serrano, O., and Danobeitia, J., Very high-resolution seismo-acoustic imaging of seagrass meadows (Mediterranean Sea): Implications for carbon sink estimates, Geophysical Research Letters, vol. 35, no. 18, 2008.
A. A. Andreev, Tarasov, P. E., Klimanov, V. A., Melles, M., Lisitsyna, O. M., and Hubberten, H. - W., Vegetation and climate changes around the Lama Lake, Taymyr Peninsula, Russia during the Late Pleistocene and Holocene, HIgh resolution lake sediment records in climate and Environment variability studies:European lake drilling program, vol. 122, no. 1, pp. 69 - 84, 2004.
X. J. Feng, Montlucon, D. B., and Eglinton, T. I., Variations in the distribution and radiocarbon age of lignin phenols exported by large river systems, Geochimica Et Cosmochimica Acta, vol. 74, no. 12, Supplement, pp. A286-A286, 2010.
D. N. Simkus, Slater, G. F., Lollar, B. Sherwood, Wilkie, K., Kieft, T. L., Magnabosco, C., Lau, M. C. Y., Pullin, M. J., Hendrickson, S. B., K. Wommack, E., Sakowski, E. G., van Heerden, E., Kuloyo, O., Linage, B., Borgonie, G., and Onstott, T. C., Variations in microbial carbon sources and cycling in the deep continental subsurface, Geochimica et Cosmochimica Acta, vol. 173, pp. 264 - 283, 2016.
A. P. McNichol and Druffel, E. R. M., Variability of the delta13C of dissolved inorganic carbon at a site in the North Pacific Ocean, Geochimica et Cosmochimica Acta, vol. 56, pp. 3589-3592, 1992.
J. F. McManus, Healey, S. L., Oppo, D. W., and Curry, W. B., Variability in shallow- and intermediate-water hydrography during the last climate cycle of the Quaternary, EOS, vol. 80, p. F10, 1999.
T. I. Eglinton, BenitezNelson, B. C., Pearson, A., McNichol, A. P., Bauer, J. E., and Druffel, E. R. M., Variability in radiocarbon ages of individual organic compounds from marine sediments, Science, vol. 277, no. 5327, pp. 796-799, 1997.
A. C. Kemp, Wright, A. J., Barnett, R. L., Hawkes, A. D., Charman, D. J., Sameshima, C., King, A. N., Mooney, H. C., Edwards, R. J., Horton, B. P., and van de Plassche, O., Utility of salt-marsh foraminifera, testate amoebae and bulk-sediment δ13C values as sea-level indicators in Newfoundland, Canada, Marine Micropaleontology, vol. 130, pp. 43 - 59, 2017.
C. G. Smith, Culver, S. J., Mallinson, D. J., Riggs, S. R., and Corbett, D. R., Using foraminifera to recognize former flood-tide deltas in the Holocene stratigraphic record: examples from the Outer Banks, North Carolina, Stratigraphy, vol. 6, pp. 61-78, 2009.
L. G. Thompson, Severinghaus, J. P., Yao, T., Davis, M. E., Mosley-Thompson, E., Beaudon, E., M. Sierra-Hernández, R., and Porter, S. E., Use of δ18Oatm in dating a Tibetan ice core record of Holocene/Late Glacial climate, Proceedings of the National Academy of Sciences, vol. 119, p. e2205545119, 2022.
L. Ma, Castro, M. C., Hall, C. M., and Walter, L. M., Unusually high helium fluxes in the shallow Marshall aquifer in southern Michigan: implications for cross-formational flow and salinity sources, Eos Trans. AGU Fall Meeting Supplement, vol. 86, no. 52, 2005.
M. Brenner, Leyden, B. W., Curtis, J. H., Medina-Gonzalez, R. M., and Dahlin, B. H., Un registro de 8,000 anos del paleoclima del noroeste de Yucatan, Mexico, Revista de la Universidad Autonoma de Yucatan, vol. 15, no. 213, pp. 52-65, 2000.
M. Steinitz-Kannan, Riedinger, M. A., Last, W. M., Brenner, M., and Miller, M. C., Un registro de 6,000 anos de manifestaciones intensas del fenomeno de El Nino en sedimentos de lagunas de las Islas Galapagos, Bulletin de l'Institut Francais d'Etudes Andines, vol. 27, no. 3, pp. 581-592, 1998.
S. R. Shah Walter, Gagnon, A. R., Roberts, M. L., McNichol, A. P., Gaylord, M. C. Lardie, and Klein, E., Ultra-Small Graphitization Reactors for Ultra-Microscale C-14 Analysis at the National Ocean Sciences Accelerator Mass Spectrometry (Nosams) Facility, Radiocarbon, vol. 57, no. 1, pp. 109-122, 2015.
G. Ian Ball, Xu, L., McNichol, A. P., and Aluwihare, L. I., A two-dimensional, heart-cutting preparative gas chromatograph facilitates highly resolved single-compound isolations with utility towards compound-specific natural abundance radiocarbon (14C) analyses, Journal of Chromatography A, vol. 1220, pp. 122-131, 2012.
A. McNichol, Rosenheim, B., and Galy, V., Turning up the Heat on Organic Matter to Track Carbon, Eos, vol. 98, 2017.
S. B. Hodgkins, Richardson, C. J., Dommain, R., Wang, H., Glaser, P. H., Verbeke, B., B. Winkler, R., Cobb, A. R., Rich, V. I., Missilmani, M., Flanagan, N., Ho, M., Hoyt, A. M., Harvey, C. F., S. Vining, R., Hough, M. A., Moore, T. R., Richard, P. J. H., De La Cruz, F. B., Toufaily, J., Hamdan, R., Cooper, W. T., and Chanton, J. P., Tropical peatland carbon storage linked to global latitudinal trends in peat recalcitrance, Nature Communications, vol. 9, no. 1, 2018.
S. B. Hodgkins, Richardson, C. J., Dommain, R., Wang, H., Glaser, P. H., Verbeke, B., B. Winkler, R., Cobb, A. R., Rich, V. I., Missilmani, M., Flanagan, N., Ho, M., Hoyt, A. M., Harvey, C. F., S. Vining, R., Hough, M. A., Moore, T. R., Richard, P. J. H., De La Cruz, F. B., Toufaily, J., Hamdan, R., Cooper, W. T., and Chanton, J. P., Tropical peatland carbon storage linked to global latitudinal trends in peat recalcitrance, Nature Communications, vol. 9, no. 1, 2018.
S. E. Loomis, Russell, J. M., Verschuren, D., Morrill, C., De Cort, G., Damsté, J. S. Sinning, Olago, D., Eggermont, H., F. Street-Perrott, A., and Kelly, M. A., The tropical lapse rate steepened during the Last Glacial Maximum, Science Advances, vol. 3, no. 1, p. e1600815, 2017.
A. D. Holt, Kellerman, A. M., Battin, T. I., McKenna, A. M., Hood, E., Andino, P., Crespo-Pérez, V., Peter, H., Schön, M., De Staercke, V., Styllas, M., Tolosano, M., and Spencer, R. G. M., A Tropical Cocktail of Organic Matter Sources: Variability in Supraglacial and Glacier Outflow Dissolved Organic Matter Composition and Age Across the Ecuadorian Andes, Journal of Geophysical Research: Biogeosciences, vol. 128, no. 5, p. e2022JG007188, 2023.
P. J. Lam, Robinson, L. F., Blusztajn, J., Li, C., Cook, M. S., McManus, J. F., and Keigwin, L. D., Transient stratification as the cause of the North Pacific productivity spike during deglaciation, Nature Geoscience, vol. 6, no. 8, pp. 622 - 626, 2013.
S. G. Wakeham and McNichol, A. P., Transfer of organic carbon through marine water columns to sediments - insights from stable and radiocarbon isotopes of lipid biomarkers, Biogeosciences, vol. 11, no. 23, pp. 6895-6914, 2014.

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