63
Views
13
CrossRef citations to date
0
Altmetric
Invited Review

Sediments from around the lower younger dryas boundary (se arizona, usa): implications from la‐icp‐ms multi‐element analysis

&
Pages 221-236 | Received 30 Jul 2015, Accepted 06 Apr 2016, Published online: 29 Nov 2016

References

  • Alley, R.B., 2000. The Younger Dryas cold interval as viewed from central Greenland. Quaternary Science Review, 19, 213–226.
  • Anders, E. and Grevesse, N., 1989. Abundances of the elements: meteoritic and solar. Geochimica et Cosmochimica Acta, 53, 197–214.
  • Anderson, D.G., Goodyear, A.C., Kennett, J. and West, A., 2011. Multiple lines of evidence for a possible human decline during the early Younger Dryas. Quaternary International, 242, 570–583.
  • Andronikov, A.V., Andronikov, I.E., Loehn, C.W., Lafuente, B., Ballenger, J.A.M., Crawford, G.T. and Lauretta, D.S., 2016. Implications from chemical, structural and mineralogical studies of magnetic microspherules from around the lower Younger Dryas boundary (New Mexico, USA). Geografiska Annaler: Part A, Physical Geography. doi: 10/1111/geoa.12122
  • Andronikov, A.V., Lauretta, D.S., Connolly, Jr H.C. and Andronikova, I.E., 2013. Determination of trace‐element bulk composition of equilibrated ordinary chondrite meteorite samples by LA‐ICP‐MS using various reference materials. 44th Lunar and Planetary Science Conferences. Lunar and Planetary Institute Contribution, No. 1719, 1603.
  • Artemieva, N. and Morgan, J., 2009. Modeling the formation of the K‐Pg boundary layer. Icarus, 201, 768–780.
  • Ballenger, J.S.M., Holliday, V.T., Kowler, A.L., Reitze, W.T., Prasciunas, M.M., Miller, D.S. and Windingstad, J.D., 2011. Evidence for Younger Dryas global climate oscillation and human response in the American Southwest. Quaternary International, 242, 502–519.
  • Beck, M.W., 1996. On discerning the cause of Late Pleistocene Megafaunal Extinctions. Paleobiology, 22, 91–103.
  • Berger, W.H., 1990. The Younger Dryas cold spell – a quest for causes. Global and Planetary Change, 3, 219–237.
  • Bertran, P., Allenet, G., Ge, T., Naughton, F., Poirier, P. and Sanchez goni, M.F., 2009. Coversand and Pleistocene paleosols in the Landes region, southwestern France. Journal of Quaternary Science, 24, 259–269.
  • Björck, S., 2007. Younger Dryas oscillation, global evidence. In: Scott, A.E. (ed.), Encyclopedia of Quaternary Science. Oxford, Elsevier. 1983–1995.
  • Brauer, A., Haug, G.H., Dulski, P., Sigman, D.M. and Negendank, J.F.W., 2008. An abrupt wind shift in Western Europe at the onset of the Younger Dryas cold period. Nature Geoscience, 1, 520–523.
  • Dale, V.B., Stewart, L.A. and Mckinney, W.A., 1960. Tungsten deposits of Cochise, Pima and Sanata Cruz Counties, Ariz. Bureau of Mines Report of Investigations, 5650, 139 pp.
  • Firestone, R.B., West, A., Kennett, J.P., Bunch, T.E., Revay, Z.S., Schultz, P.H., Belgya, T., Kennett, D.J., Erlandson, J.M., Dickenson, O.J., Goodyear, A.C., Harris, R.S., Howard, G.A., Kloosterman, J.B., Lechler, P., Mayewski, P.A., Montgomery, J., Poreda, R., Darrah, T., Que hee, S.S., Smith, A.R., Stich, A., Topping, W., Wittke, J.H. and Wolbach, W.S., 2007. Evidence for an extraterrestrial impact 12,900 years ago that contributed to the megafaunal extinctions at the Younger Dryas cooling. Proceedings of the National Academy of Science, 104, 16016–16021.
  • Friedrich, M., Kromer, B., Spurk, M., Hofmann, J. and Kaiser, K.F., 2000. Paleo‐environment and radiocarbon calibration as derived from Lateglacial/Early Holocene tree‐ring chronologies. Quaternary International, 61, 27–39.
  • Haack, H. and Scott, E.R.D., 1993. Chemical fractionations in Group IIIAB iron meteorites: Origin by dendritic crystallization of an asteroidal core. Geochimica et Cosmochimica Acta, 57, 3457–3472.
  • Harris‐parks, E., 2016. The micromorphology of Younger Dryas‐aged black mats from Nevada, Arizona, Texas and New Mexico. Quaternary Research. doi: 10.1016/j.yqres.2015.11.005
  • Hartland, A., Fairchild, I.J., Muller, W. and Dominguez‐villar, D., 2014. Preservation of NOM‐metal complexes in a modern hyperalkaline stalagmite: implications for speleothem trace element geochemistry. Geochimica et Cosmochimica Acta, 128, 29–43.
  • Haynes, C.V., Jr, 1995. Geochronology of paleoenvironmental change, Clovis type site, Blackwater Draw, New Mexico. Geoarchaeology, 10, 317–388.
  • Haynes, C.V., Jr, 2007. Nature and origin of the black mat, Stratum F2. In: Haynes, C.V., Jr and Huckell, B.B. (eds.), Murray Springs. A Clovis Site with Multiple Activity Areas in the San Pedro Valley, Arizona Anthropological Papers of the University of Arizona, 71, 240–249.
  • Haynes, C.V., Jr, 2008. Younger Dryas “black mat” and the Rancholabrean termination in North America. Proceedings of the National Academy of Sciences USA, 105, 6520–6525.
  • Haynes, C.V., Jr, Boerner, J., Domanik, K., Lauretta, D., Ballenger, J. and Goreva, J., 2010. The Murray Spring Clovis site, Pleistocene extinction, and the question of extraterrestrial impact. Proceedings of the National Academy of Sciences USA, 107, 4010–4015.
  • Hoek, W.Z. and Bohncke, S.J.P., 2002. Climatic and environmental events over the Last Termination, as recorded in The Netherlands: A review. Netherlands Journal of Geosciences, 81, 123–137.
  • Jochum, K.P., Stoll, B., Herwig, K. and Willbold, M., 2007. Validation of LA‐ICP‐MS trace element analysis of geological glasses using a new solid‐state 193 nm Nd:YAG laser and matrix‐match calibration. Journal of Analytical and Atomic Spectrometry, 22, 112–121.
  • Jochum, K.P., Weis, U., Stoll, B., Kuzmin, D., Yang, Q., Raczek, I., Jacob, D.E., Stracke, A., Birbaum, K., Frick, D.A., Günther, D. and Enzweiler, J., 2011. Determination of reference values for NIST SRM 610–617 glasses following ISO guidelines. Geostandards and Geoanalytical Research, 35, 397–429.
  • Kennett, J.P., Kennett, D.J., Culleton, B.J., Tortosa, J.E.A., Bischoff, J.L., Bunch, T.E., Daniel, I.R., Jr, Erlandson, J.M., Ferraro, D., Firestone, R.B., Goodyear, A.C., Israde‐alcantara, I., Johnson, J.R., Jorda pardo, J.F., Kimbel, D.R., Lecompte, M.A., Lopinot, N.H., Mahaney, W.C., Moore, A.M.T., Ray, J.H., Stafford, T.W., Jr, Tankersley, K.B., Wittke, J.H., Wolbach, W.S. and West, A., 2015. Bayesian chronologic analyses consistent with synchronous age of 12,835‐12,735 Cal B.P. for Younger Dryas boundary on four continents. Proceedings of the National Academy of Sciences USA, 112, E4344–E4353.
  • Lecompte, M.A., Goodyear, A.C., Demitroff, M.N., Batchelor, D., Vogel, E.K., Mooney, C., Rock, B.N. and Seidel, A.W., 2012. Independent evaluation of conflicting microspherule results from different investigations of the Younger Dryas impact hypothesis. Proceedings of the National Academy of Sciences USA, 109, E2960–E2969.
  • Lowe, J.J., Rasmussen, S.O., Björck, S., Hoek, W.Z., Steffensen, J.P., Walker, M.J.C., Yu, Z.C. and INTIMATE group, 2008. Synchronisation of palaeoenvironmental events in the North Atlantic region during the Last Termination: a revised protocol recommended by the INTIMATE group. Quaternary Science Reviews, 27, 6–17.
  • Mahaney, W.C., Kalm, V., Krinsley, D.H., Tricart, P., Schwartz, S., Dohm, J., Kim, K.J., Kapran, B., Milner, M.W., Beukens, R., Boccia, S., Hancock, R.G.V., Hart, K.M. and Kelleher, B., 2010. Evidence from the northwestern Venezuelan Andes for extraterrestrial impact: The black mat enigma. Geomorphology, 116, 48–57.
  • Marlon, J.R., Bartlein, P.J., Walsh, M.K., Harrison, S.P., Brown, K.J., Edwards, M.E., Higuera, P.E., Power, M.J., Anderson, R.S., Briles, C., Brunelle, A., Carcaillet, C., Daniels, M., Hu, F.S., Lavoi, M., Long, C., Minckley, T., Richard, P.J.H., Scott, A.C., Shafer, D.S., Tinner, W., Umbanhowar, C.E., Jr, and Whitlock, C., 2009. Wildfire responses to abrupt climate change in North America. Proceedings of the National Academy of Sciences USA, 106, 2519–2524.
  • Mcmanus, J.F., Francois, R., Gherardi, J.M., Keigwin, L.D. and Brown‐legar, S., 2004. Collapse and rapid resumption of Atlantic meridional circulation linked to deglacial climate changes. Nature, 428, 834–837.
  • Murton, J.B., Bateman, M.D., Dallimore, S.R., Teller, J.T. and Yang, Z., 2010. Identification of Younger Dryas outburst flood path from Lake Agassiz to the Arctic Ocean. Nature, 464, 740–743.
  • Petaev, M.I. and Jacobsen, S.B., 2004.Differentiation of metal‐rich meteoritic parent bodies: I– Measurement of PGEs, Re, Mo, W and Au in meteoritic Fe‐Ni metal. Meteoritics and Planetary Science, 39, 1685–1697.
  • Peteet, D., 1995. Global Younger Dryas? Quaternary International, 28, 93–104.
  • Pigati, J.S., Bright, J.E., Shanahan, T.M. and Mahan, S.M., 2009. Late Pleistocene paleohydrology near the boundary of the Sonoran and Chihuahuan Desert, southeastern Arizona, USA. Quaternary Science Reviews, 28, 286–230.
  • Pigati, J.S., Latorre, C., Rech, J.A., Betancourt, J.L., Martinez, K.E. and Buddahn J.R., 2012. Accumulation of impact markers in desert wetlands and implication for the Younger Dryas impact hypothesis. Proceedings of the National Academy of Sciences USA, 109, 7208–7212.
  • Pinter, N., Scott, A.C., Daulton, T.L., Podoll, A., Koeberl, C., Anderson, R.S. and Ishman, S.E., 2011. The Younger Dryas impact hypothesis: a requiem. Earth Science Reviews, 106, 247–264.
  • Quade, J., Forester, R.M., Pratt, W.L. and Carter C., 1998. Black mats, spring‐fed streams, and Late‐Glacial‐age recharge in the Southern Great Basin. Quaternary Research, 49, 129–148.
  • Rayburn, J.A., Cronin, T.M., Franzi, D.A., Knuepfer, P.L.K. and Willard, D.A., 2011. Timing and duration of North American glacial lake discharges and the Younger Dryas climate reversal. Quaternary Research, 75, 541–551.
  • Sylvester, P.J., 2008. Matrix effects in laser ablation‐ICP‐MS. Mineralogic Association of Canada Short Course, 40, 67–78.
  • Sylvester, P.J. and Eggins, S.M., 1997. Analysis of Re, Au, Pd, Pt and Rh in NIST glass certified reference materials and natural basalt glasses by laser ablation ICP‐MS. Geostandards Newsletter, 21, 215–229.
  • Teller, J.T., Leverington, D.W. and Mann, J.D., 2002. Freshwater outbursts to the ocean from glacial Lake Agassiz and their role in climate change during the last deglaciation. Quaternary Science Reviews, 21, 879–887.
  • Tremaine, P.R., Chen, J.D., Wallace, G.J. and Boivin, W.A., 1981. Solubility of uranium (IV) oxide in alkaline aqueous solutions to 300ºC. Journal of Solution Chemistry, 10, 221–230.
  • Van Der hammen, T. and Van Geel, B., 2008. Charcoal in soils of the Allerød‐Younger Dryas transition were the result of natural fires and not necessarily the effect of an extraterrestrial impact. Netherlands Journal of Geosciences, 87, 359–361.
  • Van Hoesel, A., Hoek, W., Braatbaard, F., Van Der plicht, H., Pennock, J.M. and Drury, M.R., 2012. Nanodiamonds and wildfire evidence in the Usselo horizon postdate the Allerød‐Younger Dryas boundary. Proceedings of the National Academy of Sciences USA, 109, 7648–7653.
  • Webb, P.C., Thompson, M., Potts, P.J. and Wilson, S., 2012. GeoPT31 – an international proficiency test for analytical geochemistry laboratories – report on round 31/July 2012 (modified river sediment. SdAR‐1). International Association of Geoanalysts, unpublished report, 31 p.
  • Wedepohl, K.H., 1995. The composition of the continental crust. Geochimica et Cosmochimica Acta, 59, 1217–1232.
  • West, A., Firestone, R.B., Kennett, J.P. and Becker, L., 2007. Extraterrestrial markers found at Clovis sites across North America. EOS Transactions, 88, abstract PP41A‐02.
  • Wittke, J.H., Weaver, J.C., Bunch, T.E., Kennett, J.P., Kennett, D.J., Moore, A.M.T., Hillman, G.C., Tankersley, K.B., Goodyear, A.C., Moore, C.R., Daniel, I.R., Ray, J.H., Lopinot, N.H., Ferraro, D., Israde‐alcántara, I., Bischoff, J.L., Decarli, P.S., Hermes, R.E., Kloosterman, J.B., Revay, Z., Howard, G.A., Kimbel, D.R., Kletetschka, G., Nabelek, L., Lipo, C.P., Sakai, S., West, A. and Firestone, R.B., 2013. Evidence for deposition of 10 million tonnes of impact spherules across four continents 12,800 y ago. Proceedings of the National Academy of Sciences USA, 110, E2088–E2097.
  • Zhu, W., De Leer, E.W.B., Kennedy, M., Kelderman, P. and Alaerts, G.J., 1997. Study of a PLSR model for REE determination by ICP‐MS. Journal of Analytical and Atomic Spectrometry, 12, 661–665.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.