By D M Brink; G R Satchler

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1987). The calibration of the 14C age used the methods of Bronk Ramsey (2001) and Reimer et al. (2004). 3 Data evaluation The results of the laboratory analyses were evaluated by analyzing soil depth functions and chronofunctions. In this study, three kinds of usually considered functions (Bockheim 1980, Schaetzl et al. 1994) including linear (Y = a + bX), logarithmic (Y = a + b lnX), and third order polynomial (Y = a + bX+ cX2 + dX3) were used to fit the relationships between soil properties (Y) and soil ages (X).

Dating of Old Lime Based Mixtures with the “Pure Lime Lumps” Technique 25 To avoid this problem it is necessary to analyse the sample used for the dating before submission to the laboratory were the radiocarbon counting is carried out. Re-precipitated calcium carbonate in lime mixtures can be recognised under the microscope with the cathodoluminescence technique (Gliozzo & Memmi Turbanti, 2006) or by other more common techniques such as X ray diffraction (XRD) and infrared spectroscopy (FT-IR).

109-115 Norman, D. (1961). A history of building materials, Phoenix House, London Oates, JAH. (1998). , & Dauchot-Dehon, M. (1986). Isotopic fractionation of carbon during CO2 absorption by mortar. Radiocarbon, 28, 2A, pp. , Lastrico, C. & Guastella, R. (2009). Radiocarbon dating of lumps from aerial lime mortars and plasters: methodological issues and results from the S. Nicolò of Capodimonte Church (Camogli, Genoa – Italy). Radiocarbon, 51, 2, pp. A. (2010). , & Calcagnile, L. (2012). Identification, extraction and preparation of reliable lime samples for the 14C dating of plasters and mortars with the method of “pure lime lumps”, Proceeding of the 6th International Symposium on Radiocarbon and Archaeometry, Cyprus, April 2011 Rattazzi, A.