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丹麦降水中碘-129和碘-127形态的时间序列。

Time series of 129I and 127I speciation in precipitation from Denmark.

作者信息

Hou Xiaolin, Aldahan Ala, Nielsen Sven P, Possnert Göran

机构信息

Risø National Laboratory for Sustainable Energy, NUK-202, Technical University of Denmark, DK-4000 Roskilde, Denmark.

出版信息

Environ Sci Technol. 2009 Sep 1;43(17):6522-8. doi: 10.1021/es9012678.

Abstract

Environmental 129I mainly released from reprocessing plants at La Hague (France) and Sellafield (U.K.) provides a unique atmospheric and environmental tracer. This study deals with 129I and 127I speciation in precipitation collected in Denmarkduring 2001-2006 that indicates many newfindings. The concentrations of total 129I in precipitation vary from 0.28 to 5.63 x 10(9) atoms 129I L(-1) with an average of (2.34 +/- 1.43) x 10(9) atoms 129I L(-1), and the annual deposition flux of 129I is (1.25 +/- 0.30) x 10(12) atoms m(-2). Increased 129I levels in precipitation and 129I/ 127I ratio are attributed to the releases of 129I from the reprocessing plants at La Hague and Sellafield. Iodide is the major specie of 129I, which accounts for 50-99% of total 129I. The concentrations of total 127I vary from 0.78 to 2.70 microg iodine L(-1) with an average of 1.63 +/- 0.47 microg iodine L(-1), and annual deposition flux of 0.95 +/- 0.26 mg m(-2). Unlike 129I, iodate is the major specie of 127I, which accounts for 43-93% of total 127I. The 291I/ l27I atomic ratios for total iodine vary from 5.04 to 76.5 x 10(-8) with an average of (30.1 +/- 16.8) x 10(-8). These values are 10 times lower for iodate with an average of (2.95 +/- 3.13) x 10(-8). Seasonal variations of 129I/127 ml values and 129I concentrations are associated with highs in spring and lows in summer-autumn periods. Re-emission of 129 from the surface water of the English Channel, Irish Sea, North Sea, and Norwegian Sea, especially from the European continental coast areas, is evidently the major source of 129I in the precipitation, while stable 127I in the precipitation has multiple sources, i.e., marine, as well as terrestrial emission. This work shows that data on speciation of iodine isotopes can provide thorough indications about the sources and geochemical cycle despite the complicated atmospheric chemistry of iodine.

摘要

主要由法国拉阿格和英国塞拉菲尔德的后处理厂释放的环境碘 - 129是一种独特的大气和环境示踪剂。本研究涉及2001年至2006年期间在丹麦收集的降水中碘 - 129和碘 - 127的形态,研究结果有许多新发现。降水中总碘 - 129的浓度在0.28至5.63×10⁹个碘 - 129原子/升之间变化,平均为(2.34±1.43)×10⁹个碘 - 129原子/升,碘 - 129的年沉积通量为(1.25±0.30)×10¹²个原子/平方米。降水中碘 - 129水平和碘 - 129/碘 - 127比值的增加归因于拉阿格和塞拉菲尔德后处理厂释放的碘 - 129。碘化物是碘 - 129的主要形态,占总碘 - 129的50 - 99%。总碘 - 127的浓度在0.78至2.70微克碘/升之间变化,平均为1.63±0.47微克碘/升,年沉积通量为0.95±0.26毫克/平方米。与碘 - 129不同,碘酸盐是碘 - 127的主要形态,占总碘 - 127的43 - 93%。总碘的碘 - 129/碘 - 127原子比值在5.04至76.5×10⁻⁸之间变化,平均为(30.1±16.8)×10⁻⁸。碘酸盐的这些值平均为(2.95±3.13)×10⁻⁸,低10倍。碘 - 129/碘 - 127比值和碘 - 129浓度的季节变化与春季的高值和夏秋季的低值相关。英吉利海峡、爱尔兰海、北海和挪威海表层水,特别是欧洲大陆沿海地区对碘 - 129的再排放显然是降水中碘 - 129的主要来源,而降水中稳定的碘 - 127有多种来源,即海洋来源以及陆地排放源。这项工作表明,尽管碘的大气化学过程复杂,但碘同位素形态的数据仍能提供有关来源和地球化学循环的全面指示。

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