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未扰动高寒草甸土壤微生物生物量中放射性铯的储存及其与¹³⁷Cs土壤-植物转移的关系。

Radiocesium storage in soil microbial biomass of undisturbed alpine meadow soils and its relation to 137Cs soil-plant transfer.

作者信息

Stemmer Michael, Hromatka Angelika, Lettner Herbert, Strebl Friederike

机构信息

Institute of Soil Research, University of Agricultural Sciences, Gregor-Mendel-Strasse 33, 1180 Vienna, Austria.

出版信息

J Environ Radioact. 2005;79(2):107-18. doi: 10.1016/j.jenvrad.2004.04.010.

Abstract

This study focuses on radiocesium storage in soil microbial biomass of undisturbed alpine meadow sites and its relation to the soil-to-plant transfer. Soil and plant samples were taken in August 1999 from an altitude transect (800-1600m.a.s.l.) at Gastein valley, Austria. Soil samples were subdivided into 3-cm layers for analyses of total, K(2)SO(4)-extractable and microbially stored (137)Cs. Microbial biomass was measured by the fumigation extraction method, and fungal biomass was quantified using ergosterol as biomarker molecule. In general, the quantity of (137)Cs stored in the living soil microbial biomass was relatively small. At the high-altitude meadows, showing high amounts of fungal biomass, microbially stored (137)Cs amounted to 0.64+/-0.14kBqm(-2) which corresponds to about 1.2-2.7% of the total (137)Cs soil inventory. At lower altitudes, microbial (137)Cs content was distinctly smaller and in most cases not measurable at all using the fumigation extraction method. However, a positive correlation between the observed soil-to-plant aggregated transfer factor, microbially stored (137)Cs and fungal biomass was found, which indicates a possible role of fungal biomass in the storage and turnover of (137)Cs in soils and in the (137)Cs uptake by plants.

摘要

本研究聚焦于未受干扰的高山草甸土壤微生物生物量中的放射性铯储存及其与土壤到植物转移的关系。1999年8月,从奥地利加施泰因山谷的一个海拔断面(海拔800 - 1600米)采集了土壤和植物样本。土壤样本被分成3厘米厚的层次,用于分析总铯、硫酸钾可提取铯和微生物储存的铯-137。微生物生物量通过熏蒸提取法测量,真菌生物量使用麦角固醇作为生物标志物分子进行定量。总体而言,活的土壤微生物生物量中储存的铯-137数量相对较少。在真菌生物量含量高的高海拔草甸中,微生物储存的铯-137为0.64±0.14千贝克勒尔/平方米,约占土壤铯-137总量的1.2 - 2.7%。在较低海拔地区,微生物铯-137含量明显较小,在大多数情况下,使用熏蒸提取法根本无法测量。然而,发现观察到的土壤到植物的累积转移因子、微生物储存的铯-137与真菌生物量之间存在正相关,这表明真菌生物量在土壤中铯-137的储存和周转以及植物对铯-137的吸收中可能发挥作用。

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