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对比邻近的深水和浅水温水水库中的铯动态。

Contrasting cesium dynamics in neighboring deep and shallow warm-water reservoirs.

机构信息

Department of Biology, Texas Christian University, Ft. Worth, TX 76129, USA.

出版信息

J Environ Radioact. 2010 Sep;101(9):659-69. doi: 10.1016/j.jenvrad.2010.02.010. Epub 2010 Jun 14.

Abstract

To measure the long term retention and seasonal dynamics of an initial 4 kg addition of (133)Cs into an 11.4-ha, 157,000 m(3) reservoir (Pond 4, near Aiken, South Carolina, USA), the concentrations and inventories of (133)Cs in the water column were measured at periodical intervals for 522 days following the 1 August, 1999 release. After rapid declines in concentrations and inventories during the first 90 days, the (133)Cs concentrations in the water column declined at an average proportional rate of 0.004 d(-1). However, there were periods of less rapid and more rapid rates of declines, and these were correlated with periods of increasing and decreasing K concentrations in the water column. The decline rates were less and the K concentrations greater in the winter than in the summer. In the deeper, neighboring monomictic reservoirs of Par Pond and Pond B, a yearly cycle of increasing and decreasing (137)Cs concentrations in the water column is driven by anoxic remobilization of Cs from the sediments into a persistent summer hypolimnion. In Pond 4, whose mean depth of 1.6 m is too shallow to support a persistent anoxic hypolimnion, the pattern of yearly dynamics for K and Cs appear to be related to the accumulation and release of these elements from the extensive, seasonal macrophyte communities. The contrasting results between Pond 4 and Pond B suggest that a full appreciation of the relative importance of 1) anoxic remobilization and 2) accumulation and release by macrophytes in these systems remains to be established.

摘要

为了测量初始 4 公斤的 (133)Cs 在一个 11.4 公顷、157000 立方米的水库(美国南卡罗来纳州艾肯附近的 4 号池塘)中的长期保留和季节性动态,在 1999 年 8 月 1 日释放后,每隔一段时间测量了 522 天,以测量水柱中 (133)Cs 的浓度和库存。在最初的 90 天内,浓度和库存迅速下降之后,水柱中的 (133)Cs 浓度以平均比例 0.004 d(-1)下降。然而,存在浓度下降速度较慢和较快的时期,这些时期与水柱中 K 浓度增加和减少的时期相关。冬季的下降速度较慢,K 浓度较高。在邻近的 Par 池塘和 Pond B 中,更深的单变水库中,由于沉积物中的 Cs 缺氧再移动到持久的夏季下湖,水柱中的 (137)Cs 浓度呈年循环变化。在 4 号池塘中,其 1.6 米的平均深度太浅,无法维持持久的缺氧下湖,K 和 Cs 的年动态模式似乎与这些元素从广泛的季节性大型植物社区的积累和释放有关。4 号池塘和 Pond B 之间的对比结果表明,仍需充分了解 1)缺氧再移动和 2)这些系统中大型植物的积累和释放的相对重要性。

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