Hostname: page-component-586b7cd67f-rcrh6 Total loading time: 0 Render date: 2024-11-25T10:23:23.509Z Has data issue: false hasContentIssue false

Report of the AMS Sample Preparation Workshop Saturday 13 August 1994

Published online by Cambridge University Press:  18 July 2016

John S. Vogel*
Affiliation:
Center for Accelerator Mass Spectrometry, Box 808, L-397, Lawrence Livermore National Laboratory, University of California, Livermore, California 94550 USA
Rights & Permissions [Opens in a new window]

Abstract

Image of the first page of this content. For PDF version, please use the ‘Save PDF’ preceeding this image.'
Type
VI. Notes, Comments and Reports
Copyright
Copyright © the Department of Geosciences, The University of Arizona 

References

Bonani, G., Beer, J., Hoffman, H., Synal, H. A., Suter, M., Wölfi, W., Pfleiderer, C., Kromer, B., Junghans, C. and Münnich, K. O. 1987 Fractionation, precision and accuracy in 14C and 13C measurements. Nuclear Instruments and Methods in Physics Research B29: 8790.Google Scholar
Jull, A. J. T., Donahue, D. J., Hatheway, A. L., Linnick, T. W. and Toolin, L. J. 1986 Production of graphite targets by deposition from CO/H2 for precision accelerator 14C measurements. In Stuiver, M. and Kra, R. S., eds., Proceedings of the 12th International 14C Conference. Radiocarbon 28(2A): 191197.Google Scholar
Jull, A. J. T., Donahue, D. J. and Toolin, L. J. 1990 Discussion: Recovery from tracer contamination in AMS sample preparation. Radiocarbon 32(1): 8485.Google Scholar
Kirner, D., Taylor, R. E. and Southon, J. R. 1995 Reduction in backgrounds of microsamples for AMS radiocarbon dating. Radiocarbon , this issue.Google Scholar
Kitigawa, H., Masuzawa, T., Nakamura, T. and Matsumoto, E. 1993 A batch preparation method for graphite targets with low background for AMS 14C measurements. Radiocarbon 35(2): 295300.Google Scholar
McNichol, A. P., Gagnon, A. R., Jones, G. A. and Osborne, E. A. 1992 Illumination of a black box: Analysis of gas composition during graphite target preparation. In Long, A. and Kra, R. S., eds., Proceedings of the 14th International 14C Conference. Radiocarbon 34(3): 321329.Google Scholar
Richardson, F. and Hall, V. A. 1994 Pollen concentrate preparation from highly organic Holocene peat and lake deposits for AMS dating. Radiocarbon 36(3): 407412.CrossRefGoogle Scholar
Verkouteren, R. M. (ms.) Batch production of microchemical AMS targets. Paper presented at the 15th International 14C Conference, Glasgow, Scotland, 15–19 August 1994.Google Scholar
Vogel, J. S. 1992 Rapid production of graphite without contamination for biomedical AMS. In Long, A. L. and Kra, R. S., eds., Proceedings of the 14th International 14C Conference. Radiocarbon 34(3): 344350.Google Scholar
Vogel, J. S., Nelson, D. E. and Southon, J. R. 1987 14C background levels in an accelerator mass spectrometry system. Radiocarbon 29(3): 323333.Google Scholar
Vogel, J. S., Southon, J. R. and Nelson, D. E. 1987 Catalyst and binder effects in the use of filamentous graphite for AMS. Nuclear Instruments and Methods in Physics Research B29: 5056.CrossRefGoogle Scholar
Wilson, A. T. 1992 A simple technique for converting CO2 to AMS target graphite. In Long, A. and Kra, R. S., eds., Proceedings of the 14th International 14C Conference. Radiocarbon 34(3): 318320.Google Scholar