We present a feasibility study for using (236)U as an oceanic circulation tracer based on depth profiles of (236)U and (137)Cs in the Japan/East Sea. The concentration of the predominantly anthropogenic (236)U, measured with Accelerator Mass Spectrometry (AMS), decreased from (13±3)Ã10(6) atom/kg in surface water to (1.6±0.3)Ã10(6) atom/kg close to the sea floor (2800 m). The profile has a smooth trend with depth and concentration values are generally proportional to that of (137)Cs for the same water samples, but with a slightly lower ratio of (137)Cs/(236)U below 2000 m. The cumulative inventory of dissolved (236)U in the water column was estimated to be (13.7±0.9)Ã10(12) atom/m(2), which is similar to the global-fallout level (17.8Ã10(12) atom/m(2)) in Japan. Additional analyses of suspended solids (SS) and bottom sediments yielded negligible amounts of (236)U. Our results suggest that (236)U behaves as a conservative nuclide in seawater, with potential advantages over other tracers of oceanic circulation.
Uranium-236 as a new oceanic tracer: A first depth profile in the Japan Sea and comparison with caesium-137.
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作者:Sakaguchi Aya, Kadokura Akinobu, Steier Peter, Takahashi Yoshio, Shizuma Kiyoshi, Hoshi Masaharu, Nakakuki Tomoeki, Yamamoto Masayoshi
| 期刊: | Earth Planet Sci Lett | 影响因子: | 0.000 |
| 时间: | 2012 | 起止号: | 2012 Jun 1; 333-334(8):165-170 |
| doi: | 10.1016/j.epsl.2012.04.004 | ||
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