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Toxicity of Pb and of Pb/Cd combination on the springtail Folsomia candida in natural soils: Reproduction, growth and bioaccumulation as indicators

机译:Pb和Pb / Cd组合在天然土壤中对假尾念珠菌的毒性:繁殖,生长和生物积累为指标

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摘要

The toxicity of Pb and Cd+Pb was assessed on the Collembola F. candida in two cultivated soils (SV and AU) with low organic matter (OM) content and circumneutral to basic pH, and an acid forested soil (EPC) with high OM content. Collembola reproduction and growth as well as metal content in Collembola body, in soil, exchangeable fraction and soil solutions, pH and DOC were investigated. Pb and Cd+Pb were the highest in exchangeable fraction and soil solution of the acidic soils. Soil solution pH decreased after metal spiking in every soil due to metal adsorption, which was similar for Cd and the highest in AU for Pb. With increasing Pb and Cd+Pb, the most important reproduction decrease was in EPC soil. The LOEC for reproduction after metal addition was 2400 (Pb) and 200/2400 (Cd/Pb), 1200 and 100/1200, 300 and 100/1200 μg g−1 for AU, SV and EPC, respectively. The highest and the lowest Pb toxicity was observed for EPC and AU bulk soil, respectively. The metal in Collembola increased with increasing soil concentration, except in AU, but the decreasing BFsolution with increasing concentrations indicates a limited metal transfer to Collembola or an increased metal removal. Loading high Pb concentrations decreases Cd absorption by the Collembola, but the reverse was not true. The highest Pb toxicity in EPC can be explained by pH and OM content. Because of metal complexation, OM might have a protective role but its ingestion by Collembola lead to higher toxicity. Metal bioavailability in Collembola differs from soil solution indicating that soil solution is not sufficient to evaluate toxicity in soil organisms. The toxicity as a whole decreased when metals were combined, except for Pb in AU, due to adsorption competition between Cd and Pb on clay particles and OM sites in AU and EPC soils, respectively.
机译:在Collembola F. candida上,在两种有机物含量低且基本pH在中性以下的耕作土壤(SV和AU)和高OM值的酸性森林土壤(EPC)中评估了Pb和Cd + Pb的毒性内容。研究了Collembola的繁殖和生长以及Collembola体内,土壤,可交换部分和土壤溶液,pH和DOC中的金属含量。 Pb和Cd + Pb在酸性土壤中的可交换分数和土壤溶液中含量最高。金属吸附后,土壤溶液的pH降低,这是由于金属吸附引起的,这与Cd相似,而AU在Pb中最高。随着Pb和Cd + Pb的增加,最重要的繁殖减少是在EPC土壤中。添加金属后的再现LOEC为2400(Pb)和200/2400(Cd / Pb),AU,SV和EPC分别为1200和100 / 1200、300和100/1200μgg-1。对于EPC和AU块状土壤,分别观察到最高和最低的Pb毒性。 Collembola中的金属随土壤浓度的增加而增加,除了AU中,但BFsolution随浓度增加而降低表示向Collembola的金属转移有限或金属去除率增加。加载高浓度的Pb会降低Collembola对Cd的吸收,但事实并非如此。 EPC中最高的Pb毒性可以通过pH和OM含量来解释。由于金属络合,OM可能具有保护作用,但Collembola摄入它会导致更高的毒性。 Collembola中金属的生物利用度不同于土壤溶液,表明土壤溶液不足以评估土壤生物的毒性。当金属混合时,除了非盟中的铅以外,整体上毒性降低了,这是由于镉和铅在黏土颗粒上的吸附竞争以及非盟和EPC土壤中的OM位点上的吸附竞争。

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