RADIOCARBON INVESTIGATION OF THE PEDUNCULATE OAK OF BOTOSANA, ROMANIA
DOI:
https://doi.org/10.24193/subbchem.2018.4.01Keywords:
AMS radiocarbon dating, Quercus robur, dendrochronology, age determinationAbstract
The article discloses the AMS (accelerator mass spectrometry) radiocarbon dating results of the pedunculate oak of Botoşana. Four wood samples were extracted from its trunk. Five segments extracted from these samples were analyzed by AMS radiocarbon. Their radiocarbon dates were found to be between 161 ± 21 BP and 260 ± 20 BP. These values correspond to calibrated ages of 235 – 365 years. The dating results extrapolated to the geometric center of the trunk indicate an age of 645 ± 50 years for the oak of Botoşana.
References
P.H. Raven, G.B. Johnson, J.B. Losos, S.R. Singer, “Biology: Seventh Edition”, McGraw Hill, New York, 2005.
A. le Hardÿ de Beaulieu, T. Lamant, “Le guide illustré des chênes”, Vol. 1-2, Huitième, Paris, 2007.
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.
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, LV, 1, 113.
A. Patrut, K.F. von Reden, V. Savu, D.A. Lowy, R. Mitea, I. Barbul, Studia UBB Chemia, 2011, LVI, 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.
A. Patrut, R.T. Patrut, L. Rakosy, I.A. Ratiu, D.A. Lowy, J. Bodis, K.F. von Reden, Studia UBB Chemia, 2018, LXIII, 3, 41.
J.N. Gibbs, B.J.W. Greig, Forestry, 1997, 70, 399.
P.P. Tans, A.F.M. de Jong, W.G. Mook, Nature, 1979, 280, 826.
M. Worbes, Dendrochronologia, 2002, 20 (1-2), 217.
J. Ruseckas, Ekologija, 2006, 1, 16.
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.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2018 Studia Universitatis Babeș-Bolyai Chemia
This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.