Ecological Half-Life of 137Cs in Fish

IF 1.7 Q3 ECOLOGY Ecologies Pub Date : 2023-07-11 DOI:10.3390/ecologies4030030
N. Zarubina, V. Semak, O. S. Burdo, Liliia P. Ponomarenko
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Abstract

In this study, the long-term (i.e., over a 27-year period) dynamics of 137Cs content are presented for seven species of fish in both the cooling pond (CP) of the Chornobyl Nuclear Power Plant and the Kaniv Reservoir (KR). The decline of 137Cs specific activity in fish exhibits various patterns. For certain years in the KR, fish belonging to different ecological groups experienced an increase rather than a decrease in specific activity levels of 137Cs. From 2012 to 2014, the concentration of 137Cs in all studied species in the KR ranged from 4 to 23 Bq/kg. In the CP during 2012–2013, fish still showed high contamination levels, ranging from 770 to 8300 Bq/kg. The ecological half-life (Teco) was determined for all the studied fish species. For most fish species (i.e., P. fluviatilis, B. bjoerkna, A. brama, S. lucioperca, A. aspius), the shortest 137Cs Teco values were obtained in the CP, being a highly radiocaesium-contaminated waterbody. In contrast, two fish species (R. rutilus and S. glanis) in the CP exhibited a considerably slower rate of 137Cs removal from their bodies compared to even the relatively cleaner KR. Moreover, the 137Cs Teco in R. rutilus and S. glanis was nearly twice as long as that observed in other species within the CP. We assume that the redistribution of 137Cs in the body of fish is affected by multidirectional mechanisms: accumulation, retention, and/or excretion. The functioning of these mechanisms can vary among different fish species. The observed level of 137Cs content in a particular fish species at a given time point results from the combined effects of these mechanisms. Fish likely have the ability to absorb and accumulate radiocaesium in their bodies selectively, and this demand appears to be species-specific.
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137Cs在鱼类中的生态半衰期
在这项研究中,研究了切尔诺贝利核电站冷却池(CP)和Kaniv水库(KR)中7种鱼类的137Cs含量的长期(即超过27年)动态变化。鱼类体内137Cs比活性的下降呈现出不同的模式。在KR的某些年份,属于不同生态群体的鱼类的137Cs的特定活性水平增加而不是减少。2012 - 2014年KR中所有研究物种的137Cs浓度在4 ~ 23 Bq/kg之间。在2012-2013年CP期间,鱼类仍然显示出较高的污染水平,在770 - 8300 Bq/kg之间。测定了所有鱼类的生态半衰期(Teco)。CP是放射性铯污染严重的水体,其137Cs Teco值在CP中最短,其中大多数鱼类(如:河豚、布氏白鲟、布氏白鲟、露脊白鲟、阿斯皮鲟)。相比之下,CP中的两种鱼类(r.r utilus和S. glanis)的体内137Cs的清除速度比相对清洁的KR要慢得多。此外,r.r utilus和S. glanis体内137Cs的Teco长度几乎是CP内其他物种的两倍。我们假设鱼类体内137Cs的再分配受到多向机制的影响:积累、保留和/或排泄。这些机制的功能在不同的鱼类中是不同的。某一特定鱼种在某一特定时间点所观察到的137Cs含量是这些机制共同作用的结果。鱼类可能有选择性地吸收和积累放射性铯的能力,这种需求似乎是物种特有的。
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