RADIOCARBON DATING OF THE OLD ASH OF AITON, ROMANIA
DOI:
https://doi.org/10.24193/subbchem.2018.3.03Keywords:
AMS radiocarbon dating, Fraxinus excelsior, dendrochronology, age determinationAbstract
The article reports the AMS (accelerator mass spectrometry) radiocarbon investigation results of the old common ash of Aiton. Five wood samples were collected from the trunk of the tree. The deepest ends of the samples were analysed by AMS radiocarbon. We found radiocarbon dates between 165 ± 20 BP and 240 ± 18 BP, which correspond to calibrated ages of 230 – 360 years. These results, combined with a ring counting estimate, indicate an age of 330 ± 30 years for the ash of Aiton. By this value, the ash of Aiton becomes the oldest known common ash with accurate dating results.
References
D. Dobrowolska, S. Hein, A. Oosterbaan, S. Wagner, J. Clark, J.P. Skovsgaard, Forestry, 2011, 84(2), 133.
P.A. Thomas, Journal of Ecology, 2016, 104, 1158.
K. Giagli, J. Baar, M. Fajstavr, V. Gryc, H. Vavrcik, BioResources, 2018, 13(1), 804.
A. Patrut, K.F. von Reden, D.A. Lowy, A.H. Alberts, J.W. Pohlman, R. Wittmann, D. Gerlach, L. Xu, C. Mitchell, Tree Physiology, 2007, 27, 1569.
A. Patrut, K.F. von Reden, R. Van Pelt, D.H. Mayne, D.A. Lowy, D. Margineanu, Annals of Forest Science, 2011, 68, 993.
A. Patrut, S. Woodborne, K.F. von Reden, G. Hall, M. Hofmeyr, D. Lowy, R.T. Patrut, PLoS ONE, 2015, 10(1), e0117193, doi: 10.1371/journal.pone.0117193.
A. Patrut, L. Rakosy, R.T. Patrut, I.A. Ratiu, E. Forizs, D.A. Lowy, D. Margineanu, K.F. von Reden, Studia UBB Chemia, 2016, LXI, 4, 7-20.
A. Patrut, S. Woodborne, K.F. von Reden, G. Hall, R.T. Patrut, L. Rakosy, P. Danthu, J-M. Leong Pock-Tsy, D.A. Lowy, D. Margineanu, Radiocarbon, 2017, 59(2), 435.
A. Patrut, S. Woodborne, R.T. Patrut, L. Rakosy, D.A. Lowy, G. Hall, K.F. von Reden, Nature Plants, 2018, 4, 423.
A. Patrut, K.F. von Reden, D.A. Lowy, S. Pasca, L. Kekedy-Nagy, I. Sovago, Studia UBB Chemia, 2010, 55, 1, 113.
A. Patrut, K.F. von Reden, V. Savu, D.A. Lowy, R. Mitea, I. Barbul, Studia UBB Chemia, 2011, 56, 1, 145.
A. Patrut, K.F. von Reden, D.A. Lowy, R.T. Patrut, D.L. Vaida, D. Margineanu, Nuclear Instruments and Methods in Physics Research Section B, 2013, 294, 616.
P.P. Tans, A.F.M. de Jong, W.G. Mook, Nature, 1979, 280, 826.
M. Worbes, Dendrochronologia, 2002, 20 (1-2), 217-231.
A. Patrut, S. Woodborne, R.T. Patrut, L. Rakosy, G. Hall, I.A. Ratiu, K.F. von Reden, Studia UBB Chemia, 2017, LXII, 2, 347.
C. Bronk Ramsey, Radiocarbon, 2009, 51, 337.
P.J. Reimer, E. Bard, A. Bayliss, J.W. Beck, P.G. Blackwell, C. Bronk Ramsey, C.E. Buck, H. Cheng, R. Lawrence Edwards, M. Friedrich, P.M. Grootes, T.P. Guilderson, H. Haflidason, I. Hajdas, C. Hatte, T.J. Heaton, D.L. Hoffman, A.G. Hogg, K.A. Hughen, K.F. Kaiser, B. Kromer, S.W. Manning, M. Niu, R.W. Reimer, D.A. Richards, E.M. Scott, J.R. Southon, R.A. Staff, C.S.M. Turney, J. van der Plicht, Radiocarbon, 2013, 55(4), 1869.
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