- Iodine-129
Iodine-129 (129I) is a
radioisotope ofiodine .Formation and decay
129I is primarily formed from the
fission ofuranium andplutonium innuclear reactors . Significant amounts were released into theatmosphere as a result ofnuclear weapons testing in the1950's and1960's .It is also naturally produced in small quantities, due to the spontaneous fission of
natural uranium , bycosmic ray spallation of trace levels ofxenon in the atmosphere, and some bycosmic ray muon s strikingtellurium -130. [R.Edwards. Iodine-129: Its Occurrence in Nature and Its Utility as a Tracer. Science, Vol 137 (1962) pp.851-853] [ [http://www.don-lindsay-archive.org/creation/isotope_list.html Radioactives Missing From The Earth ] ]129I decays with a
half-life of 15.7 million years, with low-energy beta and gamma emissions, to 129Xe.Fission Product
129I is one of the 7 long-lived fission products that are produced in significant amounts. Its yield is 0.6576% per fission (
U-235 ). Larger proportions of other iodine isotopes like 131I are produced, but because these all have short half-lives, iodine in cooledspent nuclear fuel consists of about 5/6 129I and 1/6 the only stable iodine isotope 127I. Because 129I is long-lived and relatively mobile in the environment, it is of particular importance in long-term management of spent nuclear fuel. In adeep geological repository for unreprocessed used fuel, 129I is likely to be the radionuclide of most potential impact at long times.Since 129I has a modest
neutron absorption cross-section , and is relatively undiluted by other isotopes of the same element, it is being studied for disposal bynuclear transmutation by re-irradiation withneutron s [J.A. Rawlins et al. Partitioning and transmutation of long-lived fission products. Proceedings International High-Level Radioactive Waste Management Conference. Las Vegas, USA (1992).] or by high-powered lasers. [J. Magill et al. Laser transmutation of iodine-129. Applied Physics B: Lasers and Optics. Vol. 77(4) (2003).]Applications
Groundwater age dating
129I is not deliberately produced for any practical purposes. However, its long half-life and its relative mobility in the environment have made it useful for a variety of dating applications. These include identifying very old waters based on the amount of natural 129I or its 129Xe decay product, [ [http://www.exn.ca/Templates/printstory.asp?PageName=Discovery&story_id=2000060856 EXN.ca | Discovery Channel Canada's Web site ] ] as well as identifying younger groundwaters by the increased anthropogenic 129I levels since the 1960's. [https://e-reports-ext.llnl.gov/pdf/234761.pdf]
Meteorite age dating
In 1960 physicist John H. Reynolds discovered that certain
meteorite s contained an isotopic anomaly in the form of an overabundance of xenon-129. He inferred that this must be adecay product of long-decayed radioactiveiodine-129 . This isotope is produced in quantity in nature only in supernova explosions. As the half-life of 129I is comparatively short in astronomical terms, this demonstrated that only a short time had passed between the supernova and the time the meteorites had solidified and trapped the 129I. These two events (supernova and solidification of gas cloud) were inferred to have happened during the early history of theSolar System , as the 129I isotope was likely generated before the Solar System was formed, but not long before, and seeded the solar gas cloud isotopes with isotopes from a second source. This supernova source may also have caused collapse of the solar gas cloud. [cite book
first=Donald D. | last=Clayton | year=1983
title=Principles of Stellar Evolution and Nucleosynthesis
pages=p. 75 | edition=2nd edition
publisher=University of Chicago Press | id=ISBN 0226109534 ] [cite web
author=Bolt, B. A.; Packard, R. E.; Price, P. B. | year=2007
url=http://content.cdlib.org/xtf/view?docId=hb1r29n709&doc.view=content&chunk.id=div00061&toc.depth=1&brand=oac&anchor.id=0
title=John H. Reynolds, Physics: Berkeley
publisher=The University of California, Berkeley
accessdate=2007-10-01 ]References
ee also
* [http://www.ead.anl.gov/pub/doc/Iodine.pdf ANL factsheet]
* [http://www.sciencedirect.com/science?_ob=ArticleURL&_udi=B6VB2-4GY89XK-2&_user=10&_rdoc=1&_fmt=&_orig=search&_sort=d&view=c&_acct=C000050221&_version=1&_urlVersion=0&_userid=10&md5=20f37155ddf96bac7abb869bc2833ce0 Monitoring iodine-129 in air and milk samples collected near the Hanford Site: an investigation of historical iodine monitoring data]
* [http://www.sciencedirect.com/science?_ob=ArticleURL&_udi=B6VB2-4BVRSDR-C&_user=10&_rdoc=1&_fmt=&_orig=search&_sort=d&view=c&_acct=C000050221&_version=1&_urlVersion=0&_userid=10&md5=ffcbd0cf3ab5390439af001ee9e50dad Studies with natural and anthropogenic iodine isotopes: iodine distribution and cycling in the global environment]
* [http://www.physics.utoronto.ca/~isotrace/isowhe.html Some Publications using 129I Data from IsoTrace, 1997-2002]
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