GSTDTAP  > 地球科学
DOI10.5194/acp-20-7139-2020
Resonance-enhanced detection of metals in aerosols using single-particle mass spectrometry
Passig, Johannes1,2,3; Schade, Julian2,3; Rosewig, Ellen Iva2,3; Irsig, Robert3,4; Kroeger-Badge, Thomas2,3; Czech, Hendryk1,2,3; Sklorz, Martin1; Streibel, Thorsten1,2; Li, Lei5,6; Li, Xue5,6; Zhou, Zhen5,6; Fallgren, Henrik7; Moldanova, Jana7; Zimmermann, Ralf1,2,3
2020-06-18
发表期刊ATMOSPHERIC CHEMISTRY AND PHYSICS
ISSN1680-7316
EISSN1680-7324
出版年2020
卷号20期号:12页码:7139-7152
文章类型Article
语种英语
国家Germany; Peoples R China; Sweden
英文摘要

We describe resonance effects in laser desorption-ionization (LDI) of particles that substantially increase the sensitivity and selectivity to metals in single-particle mass spectrometry (SPMS). Within the proposed scenario, resonant light absorption by ablated metal atoms increases their ionization rate within a single laser pulse. By choosing the appropriate laser wavelength, the key micronutrients Fe, Zn and Mn can be detected on individual aerosol particles with considerably improved efficiency. These ionization enhancements for metals apply to natural dust and anthropogenic aerosols, both important sources of bioavailable metals to marine environments. Transferring the results into applications, we show that the spectrum of our KrF-excimer laser is in resonance with a major absorption line of iron atoms. To estimate the impact of resonant LDI on the metal detection efficiency in SPMS applications, we performed a field experiment on ambient air with two alternately firing excimer lasers of different wavelengths. Herein, resonant LDI with the KrF-excimer laser (248.3 nm) revealed iron signatures for many more particles of the same aerosol ensemble compared to the more common ArF-excimer laser line of 193.3 nm (nonresonant LDI of iron). Many of the particles that showed iron contents upon resonant LDI were mixtures of sea salt and organic carbon. For nonresonant ionization, iron was exclusively detected in particles with a soot contribution. This suggests that resonant LDI allows a more universal and secure metal detection in SPMS. Moreover, our field study indicates relevant atmospheric iron transport by mixed organic particles, a pathway that might be underestimated in SPMS measurements based on nonresonant LDI. Our findings show a way to improve the detection and source attribution capabilities of SPMS for particle-bound metals, a health-relevant aerosol component and an important source of micronutrients to the surface oceans affecting marine primary productivity.


领域地球科学
收录类别SCI-E
WOS记录号WOS:000542922900001
WOS关键词POLYCYCLIC AROMATIC-HYDROCARBONS ; MIXING STATE ; LASER DESORPTION/IONIZATION ; WOOD COMBUSTION ; ION FORMATION ; IRON ; QUANTIFICATION ; IONIZATION ; DUST ; SENSITIVITY
WOS类目Environmental Sciences ; Meteorology & Atmospheric Sciences
WOS研究方向Environmental Sciences & Ecology ; Meteorology & Atmospheric Sciences
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文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/276527
专题地球科学
作者单位1.Helmholtz Zentrum Munchen, Joint Mass Spectrometry Ctr, Cooperat Grp Comprehens Mol Analyt CMA, D-85764 Neuherberg, Germany;
2.Univ Rostock, Joint Mass Spectrometry Ctr, Chair Analyt Chem, D-18059 Rostock, Germany;
3.Univ Rostock, Dept Life Light & Matter, D-18051 Rostock, Germany;
4.Photon GmbH, D-19061 Schwerin, Germany;
5.Jinan Univ, Inst Mass Spectrometry & Atmospher Environm, Guangzhou 510632, Peoples R China;
6.Guangzhou Hexin Instrument Co Ltd, Guangzhou 510530, Peoples R China;
7.IVL Swedish Environm Res Inst, S-41133 Gothenburg, Sweden
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GB/T 7714
Passig, Johannes,Schade, Julian,Rosewig, Ellen Iva,et al. Resonance-enhanced detection of metals in aerosols using single-particle mass spectrometry[J]. ATMOSPHERIC CHEMISTRY AND PHYSICS,2020,20(12):7139-7152.
APA Passig, Johannes.,Schade, Julian.,Rosewig, Ellen Iva.,Irsig, Robert.,Kroeger-Badge, Thomas.,...&Zimmermann, Ralf.(2020).Resonance-enhanced detection of metals in aerosols using single-particle mass spectrometry.ATMOSPHERIC CHEMISTRY AND PHYSICS,20(12),7139-7152.
MLA Passig, Johannes,et al."Resonance-enhanced detection of metals in aerosols using single-particle mass spectrometry".ATMOSPHERIC CHEMISTRY AND PHYSICS 20.12(2020):7139-7152.
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