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DOI10.1021/acs.analchem.6b00764
Detection and Quantification of Silver Nanoparticles at Environmentally Relevant Concentrations Using Asymmetric Flow Field-Flow Fractionation Online with Single Particle Inductively Coupled Plasma Mass Spectrometry
Huynh, Khanh An1; Siska, Emily2; Heithmar, Edward3; Tadjiki, Soheyl4; Pergantisi, Spiros A.5
发表日期2016-05-03
ISSN0003-2700
卷号88期号:9页码:4909-4916
英文摘要

The presence of silver nanoparticles (AgNPs) in aquatic environments could potentially cause adverse impacts on ecosystems and human health. However, current understanding of the environmental fate and transport of AgNPs is still limited because their properties in complex environmental samples cannot be accurately determined. In this study, the feasibility of using asymmetric flow field-flow fractionation (AF4) connected online with single particle inductively coupled plasma mass spectrometry (spICPMS) to detect and quantify AgNPs at environmentally relevant concentrations was investigated. The AF4 channel had a thickness of 350 mu m and its accumulation wall was a 10 kDa regenerated cellulose membrane. A 0.02% FL-70 surfactant solution was used as an AF4 carrier. With 1.2 mL/min AF4 cross-flow rate, 1.5 mL/min AF4 channel flow rate, and 5 ms spICPMS dwell time, the AF4-spICPMS can detect and quantify 40-80 nm AgNPs, as well as Ag-SiO2 core shell nanoparticles (51.0 nm diameter Ag core and 21.6 nm SiO2 shell), with good recovery within 30 min. This system was not only effective in differentiating and quantifying different types of AgNPs with similar hydrodynamic diameters, such as in mixtures containing Ag-SiO2 core shell nanoparticles and 40-80 nm AgNPs, but also suitable for differentiating between 40 nm AgNPs and elevated Ag+ content. The study results indicate that AF4-spICPMS is capable of detecting and quantifying AgNPs and other engineered metal nanomaterials in environmental samples. Nevertheless, further studies are needed before AF4-spICPMS can become a routine analytical technique.


语种英语
WOS记录号WOS:000379636600045
来源期刊ANALYTICAL CHEMISTRY
来源机构美国环保署
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/60097
作者单位1.US EPA, Natl Res Council Postdoctoral Associate, Natl Exposure Res Lab, Exposure Methods & Measurement Div,Environm Chem, 944 East Harmon Ave, Las Vegas, NV 89119 USA;
2.Univ Nevada, Dept Chem, 4505 Maryland Pkwy, Las Vegas, NV 89154 USA;
3.US EPA, Natl Exposure Res Lab, Exposure Methods & Measurement Div, Environm Chem Branch, 944 East Harmon Ave, Las Vegas, NV 89119 USA;
4.Postnova Analyt Inc, Salt Lake City, UT 84102 USA;
5.Univ Crete, Dept Chem, Environm Chem Proc Lab, Voutes Campus, Iraklion 71003, Greece
推荐引用方式
GB/T 7714
Huynh, Khanh An,Siska, Emily,Heithmar, Edward,et al. Detection and Quantification of Silver Nanoparticles at Environmentally Relevant Concentrations Using Asymmetric Flow Field-Flow Fractionation Online with Single Particle Inductively Coupled Plasma Mass Spectrometry[J]. 美国环保署,2016,88(9):4909-4916.
APA Huynh, Khanh An,Siska, Emily,Heithmar, Edward,Tadjiki, Soheyl,&Pergantisi, Spiros A..(2016).Detection and Quantification of Silver Nanoparticles at Environmentally Relevant Concentrations Using Asymmetric Flow Field-Flow Fractionation Online with Single Particle Inductively Coupled Plasma Mass Spectrometry.ANALYTICAL CHEMISTRY,88(9),4909-4916.
MLA Huynh, Khanh An,et al."Detection and Quantification of Silver Nanoparticles at Environmentally Relevant Concentrations Using Asymmetric Flow Field-Flow Fractionation Online with Single Particle Inductively Coupled Plasma Mass Spectrometry".ANALYTICAL CHEMISTRY 88.9(2016):4909-4916.
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