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Artificial 137Cs and natural 40K in mushrooms from the subalpine region of the Minya Konka summit and Yunnan Province in China

机译:来自民雅康佳峰亚高山地区和中国云南的蘑菇中的人造137Cs和天然40K

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摘要

A study on 137Cs pollution and activity concentrations of 40K in mushrooms of the genera Cortinarius, Leccinum, Russula, Tricholoma, Tylopilus, and Xerocomus from two neighboring regions in southwest China in 2010–2013 revealed different patterns of pollution with 137Cs, which seemed to be highly dependent on climate conditions. Tricholoma matsutake was collected in Yunnan before and after the Fukushima Dai-ichi nuclear accident and showed similar contamination with 137Cs. Mushrooms from the elevation of 2800–3480 m above sea level on the east slope of Minya Konka and forest topsoil showed higher contamination with 137Cs than mushrooms from the highlands of Yunnan. In detail, the activity concentration of 137Cs in caps of mushrooms from Minya Konka were in the range 62 ± 6–280 ± 150 Bq kg−1 dry biomass and from Yunnan at < 4.4–83 ± 3 Bq kg−1 dry biomass. The climate in the region of the Minya Konka is much colder than in Yunnan, which seems to favor deposition of 137Cs at higher altitudes from global atmospheric circulation. The activity concentration of 40K in mushrooms and soils highly exceeded that of 137Cs. The assessed annual effective doses for 137Cs in 1 kg of consumed mushrooms of the genera Leccinum and Xerocomus in Yunnan were low, i.e., in the range < 0.0043–0.049 ± 0.004 μSv, while those for 40K were 0.26 ± 0.02–0.81 ± 0.09 μSv.
机译:西南两个邻近地区Cortinarius,Leccinum,Russula,Tricholoma,Tylopilus和Xerocomus属蘑菇中 137 Cs污染和 40 K活性浓度的研究在2010–2013年间, 137 Cs的污染方式有所不同,这似乎高度依赖气候条件。在福岛第一核事故之前和之后在云南采集了松茸口蘑,并显示出与 137 Cs相似的污染。 Minya Konka东坡和森林表层土壤海拔2800–3480 m处的蘑菇显示的 137 Cs污染程度要高于云南高原的蘑菇。详细地讲,来自Minya Konka的蘑菇帽中 137 Cs的活性浓度在62±6–280±150 Bq kg -1 干燥生物量和云南在<4.4–83±3 Bq kg -1 干燥生物量下。 Minya Konka地区的气候比云南的气候要冷得多,这似乎有利于 137 Cs在全球大气环流的更高海拔上的沉积。蘑菇和土壤中 40 K的活性浓度大大高于 137 Cs。云南省Leccinum和Xerocomus属食用的1公斤食用蘑菇中 137 Cs的年度评估有效剂量很低,即在<0.0043–0.049±0.004μSv的范围内,而 > 40 K为0.26±0.02–0.81±0.09μSv。

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