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Application of Pb isotopes to track the sources and routes of metal uptake in the earthworm Eisenia fetida

机译:铅同位素在track艾氏nia中追踪金属吸收的来源和途径的应用

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The aim of this work is to determine the important routes of metal uptake in earthworms to enable a better understanding of the primary source of metal uptake in the environment. Earthworms can take up chemicals from pore water and soil both by ingestion and through contact with their skin. However, it is unclear which pathway is the most important for metal uptake. An experiment was designed in which both soil chemistry and foods were artificially manipulated, producing different pools of soil lead (Pb) with different isotope compositions at a range of Pb concentrations. Earthworms (Eiseniafetida) were exposed to different lead concentrations through the addition of 500 mg/kg lead oxide (Pb3O4) to soil and 500 mg/kg lead nitrate to food (manure), with distinctly different isotopic compositions. Earthworms were also exposed to combinations of soil only and soil plus food in order to quantify the proportions of Pb taken up from each component. After acid digestion of the earthworm tissues, the Pb isotope composition of the accumulated lead in the earthworms was measured using a Thermo-fisher, iCAPQ, ICP-MS for 208Pb/206Pb and 207Pb/206Pb ratios measured relative to NIST SRM 981, allowing us to determine the pathway of lead uptake. Mixing calculations have been used to deconvolute the lead isotope signatures and identify the amount of lead taken up by the earthworms from the different soil pools. Differences in bioaccumulation factors and the relative amounts of lead accumulated from different pools changes as a function of concentration in the different pools. Earthworms were shown to uptake lead from bothsoil and food sources through ingestion route. Our findings suggest that a major pathway of lead uptake in earthworm species is heavily influenced by their ecology.
机译:这项工作的目的是确定earth中金属吸收的重要途径,以便更好地了解环境中金属吸收的主要来源。 can可通过食入和皮肤接触从孔隙水和土壤中吸收化学物质。但是,尚不清楚哪种途径对金属吸收最重要。设计了一个实验,其中人为地操纵了土壤化学物质和食物,从而在一定范围的Pb浓度下产生了具有不同同位素组成的不同土壤铅(Pb)库。通过向土壤中添加500 mg / kg氧化铅(Pb3O4)和向食物(肥料)中添加500 mg / kg硝酸铅,使worm(Eiseniafetida)暴露于不同的铅浓度下,同位素组成明显不同。 to还仅暴露于土壤和土壤加食物的组合中,以便量化从每种成分中吸收的Pb的比例。酸消化the组织后,使用Thermo-fisher,iCAPQ,ICP-MS对N中所积累的铅的Pb同位素组成进行了相对于NIST SRM 981的208Pb / 206Pb和207Pb / 206Pb比测量,这使我们确定铅吸收的途径。混合计算已用于对铅同位素特征进行反卷积,并确定worm从不同土壤池中吸收的铅量。不同池中生物积累因子的差异和铅的相对含量随不同池中浓度的变化而变化。研究表明through通过摄入途径从土壤和食物中摄取铅。我们的发现表明,earth物种中铅的主要吸收途径受到其生态学的严重影响。

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