首页> 外文期刊>Journal of Environmental Radioactivity >Radiocesium contamination of the web spider Nephila clavata(Nephilidae: Arachnida) 1.5 years after the Fukushima Dai-ichi Nuclear Power Plant accident
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Radiocesium contamination of the web spider Nephila clavata(Nephilidae: Arachnida) 1.5 years after the Fukushima Dai-ichi Nuclear Power Plant accident

机译:福岛第一核电站事故1.5年后,网状蜘蛛Nephila clavata(Nephilidae:Arachnida)的放射性铯污染

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摘要

We measured the concentrations of radiocesium (~(134)Cs and ~(137)Cs) in a large web spider, Nephila clavata L. Koch (Nephilidae: Arachnida), collected at three sites at different distances from the Fukushima Dai-ichi Nuclear Power Plant about 1.5 y after the accident in March 2011. The radiocesium concentrations in spiders were highest in a streamside secondary forest 33 km northwest of the power plant: mean ± a standard deviation of 2.401 ± 1.197 Bq g~(-1) dry for ~(134)Cs and 3.955 ± 1.756 Bq g~(-1) dry for ~(137)Cs. In a hillside secondary forest 37 km northwest of the power plant, the mean concentrations of ~(134)Cs and ~(137)Cs were 0.825 ± 0.247 Bq g~(-1) dry and 1.470 ± 0.454 Bq g~(-1) dry, respectively. In a pine forest 62 km west of the power plant, very low radiocesium concentrations were detected, but in only a few individuals. The concentrations of ~(134)Cs and ~(137)Cs in spiders collected at each site tended to be correlated with the air radiation dose rate at each site. Since spiders are key components of food webs in forests, the high concentrations in this species at contaminated sites suggested that the radiocesium from the accident has transferred through food chains and reached to higher trophic level of the food chains.
机译:我们测量了大型网状蜘蛛Nephila clavata L.Koch(Nephilidae:Arachnida)中的放射性铯(〜(134)Cs和〜(137)Cs)的浓度,该蜘蛛收集自距福岛第一核电站不同距离的三个地点发电厂在2011年3月发生事故后约1.5 y。蜘蛛中的放射性铯浓度在发电厂西北33公里处的溪流次生林中最高:平均值±标准偏差为2.401±1.197 Bq g〜(-1) 〜(134)Cs和3.955±1.756 Bq g〜(-1)干燥至〜(137)Cs。在电厂西北37公里的山坡次生林中,〜(134)Cs和〜(137)Cs的平均浓度为0.825±0.247 Bq g〜(-1)干燥和1.470±0.454 Bq g〜(-1) )分别干燥。在电厂以西62公里处的一片松树林中,检出的放射性铯浓度非常低,但只有少数几个人。在每个站点收集的蜘蛛中〜(134)Cs和〜(137)Cs的浓度往往与每个站点的空气辐射剂量率相关。由于蜘蛛是森林食物网的关键组成部分,因此该物种在受污染地点的高浓度表明,事故造成的放射性铯已通过食物链转移,并达到食物链的较高营养水平。

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