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Measurement of number concentrations and sizes of Au nano-particles spiked into soil by laser ablation single particle ICPMS

机译:通过激光烧蚀单粒子ICPMS测量Au纳米颗粒的数量浓度和尺寸掺入土壤中

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摘要

A novel method to directly quantify nanoparticles (NPs) in a soil matrix by laser ablation single particle inductively coupled plasma mass spectrometry (LA-sp-ICPMS) was developed. Different concentrations of 60, 100, or 250 nm diameter gold NPs (AuNP) were deposited directly on polyether sulfone (PES) ultrafiltration membranes or immersed in soil. The ICPMS sensitivity was calibrated using aqueous dissolved Au standards and an aqueous AuNP size standard dispersion was used to calculate the transmission efficiency. In the case of the soil samples, sizing proved to be more accurate when calibration occurred while ablating a non-spiked soil. A linear relation was found between the spiked AuNP number concentrations and the particle event frequencies measured in the ablated area. Particle recovery on PES filters ranged only between 29 to 42% and recovery of soil-spiked AuNP on thin tape was between 15 and 60% and increased with size. However, 70-85% mass recovery in the ablated area was obtained when the soil sample was deposited on a thicker, opaque double sided tape suggesting that the substrate material is instrumental in absorbing excess laser energy thus enhancing recovery. The rate of soil ablation and mass transfer into the plasma was quantified to calculate the recovery using the same soils spiked with indium. The presented method thus has significant potential to be used for routine quantification of the particle size distributions of engineered or natural NPs in soil and possibly other powder samples with significantly fewer artifacts than extraction followed by aqueous analysis.
机译:通过激光烧蚀单颗粒电感耦合等离子体质谱(La-SP-ICPMS)在土壤基质中直接定量纳米颗粒(NPS)的新方法。将不同浓度的60,100或250nm直径的金NPS(AUNP)直接沉积在聚醚砜(PES)超滤膜上或浸入土壤中。使用溶解的Au标准校准ICPMS敏感性,使用αUanP尺寸标准分散体来计算传动效率。在土壤样品的情况下,在消融非尖刺的土壤时发生校准时,Size被证明更准确。在尖刺的AUNP数浓度和在消除区域中测量的粒子事件频率之间发现了线性关系。 PES过滤器上的颗粒恢复仅在29%至42%之间,并且在薄带上恢复土壤尖刺的AUNP在15%至60%之间,而且尺寸增加。然而,当将土壤样品沉积在较厚的不透明双面胶带上时,获得了烧蚀区域中的70-85%质量恢复,这表明基材材料是吸收过量激光能量的仪器,因此增强了恢复。量化土壤消融和质量转移到血浆中的速率,以使用与铟掺入的相同土壤来计算恢复。因此,本方法具有用于常规定量土壤中工程或天然NP的颗粒尺寸分布的常规潜力,并且可能的其他粉末样品具有比萃取显着较少的伪像,然后水溶液分析。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2020年第8期|1678-1686|共9页
  • 作者单位

    Dept. Soil and Environment Swedish University of Agricultural Sciences (SLU) Lennart Hjelms vaeg 9 75651 Uppsala Sweden;

    Helmholtz-Centre for Environmental Research Dept. Analytical Chemistry Permoserstrasse 15 04318 Leipzig Germany;

    Dept. Soil and Environment Swedish University of Agricultural Sciences (SLU) Lennart Hjelms vaeg 9 75651 Uppsala Sweden;

    Dept. Geosciences Swedish Museum of Natural History Box 50 007 SE-104 05 Stockholm Sweden;

    Helmholtz-Centre for Environmental Research Dept. Analytical Chemistry Permoserstrasse 15 04318 Leipzig Germany;

    Helmholtz-Centre for Environmental Research Dept. Analytical Chemistry Permoserstrasse 15 04318 Leipzig Germany;

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