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Partitioning and Dissolution Behavior of Metal-based Engineered Nanoparticles in Sediment and Soil Suspensions

机译:金属基工程纳米粒子在沉积物和土壤悬浮液中的分配和溶出行为

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Nowadays engineered nanoparticles are being used in a whole range of commercial applications and are therefore expected to inevitably find their way into the environment where their fate and behavior are still largely unknown. The objective of this study was to investigate the behavior and fate of a number of engineered nanoparticles (CeO_2, SnO_2, Ag) in sediment and soil suspensions. In particular, the association of nanoparticles with solid phases, the kinetics of these interactions, and the solubility of the nanoparticulate matter in sediment and soil suspensions were studied. Four different sediments and three different soils were sampled at various locations in Flanders (Belgium), dried, grinded and characterized. Sediment and soil suspensions were prepared with Milli-Q water (1/10 S/L), spiked with the different metallic nanoparticles or corresponding ions, and continuously shaken for 24 hours. At regular time intervals, samples of the suspensions were collected and centrifuged at 500 or 2000 rpm, or left for gravitational settling. The supernatant was analyzed for total metal contents after aqua regia digestion and for dissolved metal ions after centrifugal ultrafiltration. In a second experiment, the impact of centrifugation speed on the amount of suspended matter in the supernatant was also studied. Relations between soil or sediment properties, suspended matter and metals in the supernatant were investigated. First data already point towards a strong association of nanoparticles with suspended material. The remaining data are still being collected and will be presented at the conference.
机译:如今,工程纳米颗粒在整个商业应用中使用,因此预计将不可避免地找到进入他们的命运和行为仍然很大程度上的环境。本研究的目的是研究沉积物和土壤悬浮液中许多工程纳米颗粒(CEO_2,SNO_2,AG)的行为和命运。特别地,研究了纳米颗粒与固相,这些相互作用的动力学以及纳米颗粒物质在沉积物和土壤悬浮液中的溶解度的关联。在佛兰德斯(比利时)的各个地点上采样四种不同的沉积物和三种不同的土壤,干燥,研磨和表征。用米兰水(1/10S / L)制备沉积物和土壤悬浮液,用不同的金属纳米颗粒或相应的离子掺入,并连续摇动24小时。以规则的时间间隔,收集悬浮液的样品并以500或2000rpm离心,或留下以重力沉降。在离心超滤后,分析了上清液,用于在水下消化后和溶解的金属离子后分析过上的金属含量。在第二种实验中,还研究了离心速度对上清液中悬浮物量的影响。研究了土壤或沉积物的关系,上清液中悬浮物质和金属。第一个数据已经指向纳米颗粒具有悬浮材料的强烈关联。剩余的数据仍在收集并将在会议上呈现。

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