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采用不对称流场流分离与电感耦合等离子体质谱联用技术分析复杂颗粒混合物。

Analysis of complex particle mixtures by asymmetrical flow field-flow fractionation coupled to inductively coupled plasma time-of-flight mass spectrometry.

机构信息

TOFWERK AG, Thun, Switzerland.

Postnova Analytics GmbH, Landsberg, Germany.

出版信息

J Chromatogr A. 2021 Mar 29;1641:461981. doi: 10.1016/j.chroma.2021.461981. Epub 2021 Feb 9.

DOI:10.1016/j.chroma.2021.461981
PMID:33684778
Abstract

Asymmetrical flow field-flow fractionation (AF4) hyphenated with inductively coupled plasma-mass spectrometry (ICP-MS) has been widely used to characterize metal containing particles. This study demonstrates the advantages of coupling AF4 with ICP-time-of-flight mass spectrometry (ICP-TOFMS) in standard and single particle modes to determine size distribution, elemental composition, and number concentration of composite particles. The coupled system was used to characterize two complex particle mixtures. The first mixture consisted of particles extracted from micro-alloyed steels with two size populations of different elemental composition. The second mixture consisted of particles extracted from soil spiked with various engineered nanoparticles (ENPs). The equivalent hydrodynamic sizes of individual micro-alloyed steel particles were up to 6 times larger than the sizes determined by single particle (sp)-ICP-TOFMS. The larger AF4 sizes were attributed to the presence of a surface coating, which is not reflected in the core size determined by sp-ICP-TOFMS. Two particle populations could not be separated by AF4 due to their broad size distributions but were resolved by sp-ICP-TOFMS using their unique elemental signatures. Multi-angle light scattering and ICP-TOFMS signals of soil suspensions increased with the spiked ENP concentrations. However, only after conducting full element screening and single particle fingerprinting by ICP-TOFMS could this increase be attributed to enhanced extraction efficiency of natural particles and the risk for false conclusions be eliminated. In this study, we describe how AF4 coupled to ICP-TOFMS can be applied to study complex samples of inorganic particles which contain organic compounds.

摘要

不对称流场流分离(AF4)与电感耦合等离子体质谱(ICP-MS)联用已广泛用于表征含金属颗粒。本研究展示了在标准和单颗粒模式下将 AF4 与电感耦合等离子体飞行时间质谱(ICP-TOFMS)联用的优势,以确定复合颗粒的粒径分布、元素组成和数浓度。该联用系统用于表征两种复杂的颗粒混合物。第一混合物由从微合金钢中提取的颗粒组成,具有不同元素组成的两种粒径分布。第二混合物由土壤中提取的各种工程纳米颗粒(ENP)组成。单个微合金钢颗粒的等效水动力粒径比单颗粒(sp)-ICP-TOFMS 测定的粒径大 6 倍以上。较大的 AF4 粒径归因于表面涂层的存在,而 sp-ICP-TOFMS 测定的核心粒径则没有反映出这一点。由于其较宽的粒径分布,AF4 无法分离两种颗粒,但 sp-ICP-TOFMS 可以利用其独特的元素特征将其分辨。土壤悬浮液的多角度光散射和 ICP-TOFMS 信号随着添加的 ENP 浓度的增加而增加。然而,只有在进行全元素筛选和 ICP-TOFMS 的单颗粒指纹分析后,才能将这种增加归因于天然颗粒提取效率的提高,并消除错误结论的风险。在本研究中,我们描述了如何将 AF4 与 ICP-TOFMS 联用应用于研究含有有机化合物的复杂无机颗粒样品。

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