Carbone Serena, Hertel-Aas Turid, Joner Erik J, Oughton Deborah H
Department of Agricultural Sciences, University of Bologna, Alma Mater Studiorum, Viale Fanin 40, 40127 Bologna, Italy.
Centre for Environmental Radioactivity (CERAD), Department of Environmental Sciences, Norwegian University of Life Sciences, P.O. Box 5003, N-1432 Aas, Norway.
Chemosphere. 2016 Nov;162:16-22. doi: 10.1016/j.chemosphere.2016.07.044. Epub 2016 Jul 27.
The growing number of nanotechnology products on the market will inevitably lead to the release of engineered nanomaterials with potential risk to humans and environment. This study set out to investigate the exposure of soil biota to engineered nanoparticles (NPs). Cerium dioxide (CeO2 NPs) and tin dioxide nanoparticles (SnO2 NPs) were radiolabelled using neutron activation, and employed to assess the uptake and excretion kinetics in the earthworm Eisenia fetida. Through sequential extraction, NPs bioavailability in two contrasting soils and in earthworm feed was also investigated. Neither CeO2 NPs nor SnO2 NPs bioaccumulated in earthworms, and both were rapidly excreted when worms were transferred to clean soil. Low bioavailability was also indicated by low amounts of NPs recovered during extraction with non-stringent extractants. CeO2 NPs showed increasing mobility in organic soil over time (28 days), indicating that organic matter has a strong influence on the fate of CeO2 NPs in soil.
市场上纳米技术产品数量的不断增加将不可避免地导致工程纳米材料的释放,这些材料对人类和环境具有潜在风险。本研究旨在调查土壤生物群对工程纳米颗粒(NPs)的暴露情况。使用中子活化对二氧化铈(CeO2 NPs)和二氧化锡纳米颗粒(SnO2 NPs)进行放射性标记,并用于评估赤子爱胜蚓对其的摄取和排泄动力学。通过连续提取,还研究了两种不同土壤和蚯蚓饲料中NPs的生物有效性。CeO2 NPs和SnO2 NPs都没有在蚯蚓体内生物累积,并且当蚯蚓转移到清洁土壤中时,两者都迅速排出。在使用非严格提取剂提取过程中回收的NPs量较低,这也表明生物有效性较低。随着时间的推移(28天),CeO2 NPs在有机土壤中的迁移性增加,表明有机物对CeO2 NPs在土壤中的归宿有很大影响。