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A dual pathways transfer model to account for changes in the radioactive caesium level in demersal and pelagic fish after the Fukushima Daï-ichi nuclear power plant accident

机译:福岛第一核电站事故后考虑到深海鱼类和中上层鱼类放射性铯水平变化的双重途径转移模型

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摘要

The Fukushima Daï-ichi nuclear power plant (FDNPP) accident resulted in radioactive Cs being discharged into the local marine environment. While Cs bioaccumulates in biota and slowly depurates, the Cs concentrated in biota constitutes a source of Cs for animals feeding on each other. The marine biota therefore serves as a pool that recycles Cs, and this recycling process delays depuration in the fish feeding on this biota pool. Because the continental shelf is squeezed between the coast and very deep sea, the demersal marine species are confined to a narrow strip along the coast, close to the source of the radioactive input. Unlike demersal species, however, pelagic species are not restricted to the most contaminated area but instead spend some, if not most, of their time and feeding off-shore, far from the input source. We suggest that the feeding pathway for fish is a box whose size depends on their mobility, and that this feeding box is much larger and less contaminated (because of dilution through distance) for pelagic fish than for demersal fish. The aim of this paper is to test this hypothesis and to propose a simple operational model implementing two transfer routes: from seawater and from feeding. The model is then used to match the observational data in the aftermath of the FDNPP accident.
机译:福岛第一核电站事故导致放射性Cs排放到当地海洋环境中。当Cs在生物区中积累并缓慢净化时,集中在生物区中的Cs构成了彼此喂养动物的Cs来源。因此,海洋生物区系作为回收Cs的池,而这种回收过程会延迟以该生物区池为食的鱼的净化。由于大陆架被挤压在海岸和极深的海洋之间,因此,沉没的海洋物种被限制在沿海岸的狭窄条带上,靠近放射性输入源。然而,与沉没物种不同,远洋物种并不仅限于污染最严重的地区,而是花费一些(如果不是大部分的话)时间并在远离输入源的近海进行觅食。我们建议鱼类的进食途径是一个盒子,盒子的大小取决于它们的活动性,并且与深海鱼类相比,中上层鱼类的这个饲养盒子更大,污染更少(由于沿距离稀释)。本文的目的是检验这一假设,并提出一个简单的操作模型,该模型可实现两种转移途径:从海水和饲料的转移。然后,该模型用于在FDNPP事故之后匹配观测数据。

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