Oddy Tests: Adding the Analytical Dimension

Author:

Beiner Gail Gali12,Lavi Miriam3,Seri Hadas4,Rossin Anna5,Lev Ovadia5,Gun Jenny5,Rabinovich Rivka136

Affiliation:

1. National Natural History Collections, The Hebrew University of Jerusalem, Jerusalem 91904, Israel gali.beiner@mail.huji.ac.il

2. Palaeontology Lab, Berman Building, Edmond J. Safra Campus, The Hebrew University of Jerusalem, Jerusalem 91904, Israel

3. Conservation Laboratory, Institute of Archaeology, The Hebrew University of Jerusalem, Jerusalem 91905, Israel

4. Conservation Laboratory, The Israel Museum, 11 Rupin Rd., Jerusalem, Israel

5. Laboratory of Environmental Chemistry, The Institute of Chemistry, The Hebrew University of Jerusalem, Jerusalem 9171002, Israel

6. Institute of Earth Sciences, The Hebrew University of Jerusalem, Jerusalem 91904, Israel

Abstract

Abstract The so-called “Oddy test” has gained popularity in art and archaeology collections because it is inexpensive to use, and the results are relatively easy to analyze. However, the method is also subjective and does not identify the pollutants. Here we present a modification to the traditional test that addresses these drawbacks and aims at providing solutions. Activated carbon was used to adsorb the volatile emissions generated within the standard Oddy test setup. Gas chromatography–mass spectrometry (GC-MS) analysis of the volatile organic compounds (VOCs) desorbed from the activated carbon detected pollutants within a considerably shorter time frame than the traditional Oddy test and provided both qualitative and quantitative data. GC-MS analysis of volatiles off-gassed during the Oddy test provided information about the VOCs from local brands of materials commonly used for conservation and storage of objects in collections. The use of GC-MS analysis of volatiles improves the Oddy test in a fast, sensitive, and quantitative manner.

Publisher

Society for the Preservation of Natural History Collections (SPNHC)

Subject

General Medicine

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