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Accumulation of ~(241)Am by suspended matter, diatoms and aquatic weeds of the Yenisei River

机译:叶尼塞河的悬浮物,硅藻和水草积累〜(241)Am

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In this work we experimentally estimated the capacities of the key components of the Yenisei River (Russia): particulate suspended matter (seston), diatom microalgae, and submerged macrophytes for accumulating ~(241)Am from water. In our experiments large particles of seston (>8 μm), comparable in size with diatoms, took up most of americium from water. The accumulation of americium by isolated diatom algae (Asterionella formosa and Diatoma vulgare) was lower than by total seston. The concentration factors (CFs) of ~(241)Am for seston of the Yenisei River in our experiments were (2.8-6.9)·10~5; for diatoms -(1.5-4.2) · 10~4. The CFs for aquatic plant Elodea canadensis were within the same order of magnitude as those for diatoms. Activity concentration and CFs of ~(241)Am were nearly the same in experiments under dark and light conditions. This is indicative of an energy independent mechanism of americium uptake from the water by diatoms and submerged macrophytes.
机译:在这项工作中,我们通过实验估算了叶尼塞河(俄罗斯)的关键组成部分的能力:颗粒悬浮物(seston),硅藻微藻类和淹没的大型植物从水中累积〜(241)Am的能力。在我们的实验中,大小与硅藻相当的大颗粒的硒(> 8μm)从水中吸收了大部分a。分离出的硅藻藻类(福寿菌和硅藻)的a积累量比总硒低。本实验中叶尼塞河水~~(241)Am的浓度因子(CFs)为(2.8-6.9)·10〜5;用于硅藻-(1.5-4.2)·10〜4。加拿大水生Elodea canadensis的CF与硅藻的CF数量级相同。在黑暗和明亮的条件下,〜(241)Am的活性浓度和CFs几乎相同。这表明硅藻和浸没的大型植物从水中摄取a的能量独立机制。

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