Rapid Production of Graphite Without Contamination for Biomedical AMS
- 1 January 1992
- journal article
- Published by Cambridge University Press (CUP) in Radiocarbon
- Vol. 34 (3) , 344-350
- https://doi.org/10.1017/s0033822200063529
Abstract
The application of AMS to the detection of 14C makes possible a new class of sensitive experiments in molecular biology. Such experiments inherently produce large numbers of samples for the determination of biological variability in molecular interactions. The samples vary in 14C concentration over many orders of magnitude. We added TiH2 to aid the reduction of CO2 by zinc in a sealed tube to reproducibly make graphite without sample cross-contamination. The CO2 is transferred from a combustion tube to the reaction tube through a disposable plastic manifold. The sealed tubes are heated to a single-reaction temperature in a muffle furnace. The process is complete within 5 h. Bulk isotopic fractionation in the finished graphite is less than 0.5%.Keywords
This publication has 9 references indexed in Scilit:
- A gaseous ion source for routine AMS radiocarbon datingNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, 1990
- Accelerator mass spectrometry in biomedical dosimetry: relationship between low-level exposure and covalent binding of heterocyclic amine carcinogens to DNA.Proceedings of the National Academy of Sciences, 1990
- Memory Effects in an AMS System: Catastrophe and RecoveryRadiocarbon, 1990
- Accuracy and Precision in Dating Microgram Carbon SamplesRadiocarbon, 1989
- The metabolic disposition of 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine in the induced mouseFood and Chemical Toxicology, 1989
- Preparation of Small Samples for 14C Accelerator Targets by Catalytic Reduction of CORadiocarbon, 1987
- Production of Graphite Targets by Deposition from CO/H2for Precision Accelerator14C MeasurementsRadiocarbon, 1986
- Comparison of quartz and Pyrex tubes for combustion of organic samples for stable carbon isotope analysisAnalytical Chemistry, 1983
- Crystal and molecular structure of Zn[Co(OC)4]2Journal of the American Chemical Society, 1967