Intercomparison of a portable and two stationary mobility particle sizers for nanoscale aerosol measurements

被引:31
|
作者
Fonseca, A. S. [1 ,2 ]
Viana, M. [1 ]
Perez, N. [1 ]
Alastuey, A. [1 ]
Querol, X. [1 ]
Kaminski, H. [3 ]
Todea, A. M. [3 ]
Monz, C. [4 ]
Asbach, C. [3 ]
机构
[1] Inst Environm Assessment & Water Res IDAEA CSIC, C Jordi Girona 18, Barcelona 08034, Spain
[2] Univ Barcelona, Fac Quim, Barcelona, Spain
[3] Inst Energy & Environm Technol IUTA, Air Qual & Sustainable Nanotechnol Unit, Duisburg, Germany
[4] Inst Res Hazardous Subst IGF, Bochum, Germany
关键词
ULTRAFINE PARTICLES; NANOSTRUCTURED PARTICLES; NANOPARTICLE EXPOSURE; INHALATION EXPOSURE; SIZING INSTRUMENTS; CARBON NANOTUBES; AIR-POLLUTION; BLACK CARBON; NUMBER; DISTRIBUTIONS;
D O I
10.1080/02786826.2016.1174329
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
During occupational exposure studies, the use of conventional scanning mobility particle sizers (SMPS) provides high quality data but may convey transport and application limitations. New instruments aiming to overcome these limitations are being currently developed. The purpose of the present study was to compare the performance of the novel portable NanoScan SMPS TSI 3910 with that of two stationary SMPS instruments and one ultrafine condensation particle counter (UCPC) in a controlled atmosphere and for different particle types and concentrations. The results show that NanoScan tends to overestimate particle number concentrations with regard to the UCPC, particularly for agglomerated particles (ZnO, spark generated soot and diesel soot particles) with relative differences >20%. The best agreements between the internal reference values and measured number concentrations were obtained when measuring compact and spherical particles (NaCl and DEHS particles). With regard to particle diameter (modal size), results from NanoScan were comparable < [+/- 20%] to those measured by SMPSs for most of the aerosols measured. The findings of this study show that mobility particle sizers using unipolar and bipolar charging may be affected differently by particle size, morphologies, particle composition and concentration. While the sizing accuracy of the NanoScan SMPS was mostly within +/- 25%, it may miscount total particle number concentration by more than 50% (especially for agglomerated particles), thus making it unsuitable for occupational exposure assessments where high degree of accuracy is required (e.g., in tier 3). However, can be a useful instrument to obtain an estimate of the aerosol size distribution in indoor and workplace air, e.g., in tier 2.
引用
收藏
页码:653 / 668
页数:16
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  • [21] Online Nanoparticle Mass Measurement by Combined Aerosol Particle Mass Analyzer and Differential Mobility Analyzer: Comparison of Theory and Measurements
    Lall, Anshuman Amit
    Ma, Xiaofei
    Guha, Suvajyoti
    Mulholland, George W.
    Zachariah, Michael R.
    [J]. AEROSOL SCIENCE AND TECHNOLOGY, 2009, 43 (11) : 1075 - 1083
  • [22] Vertical Characterization of Aerosol Particle Composition in Beijing, China: Insights From 3-Month Measurements With Two Aerosol Mass Spectrometers
    Zhou, Wei
    Sun, Yele
    Xu, Weiqi
    Zhao, Xiujuan
    Wang, Qingqing
    Tang, Guiqian
    Zhou, Libo
    Chen, Chen
    Du, Wei
    Zhao, Jian
    Xie, Conghui
    Fu, Pingqing
    Wang, Zifa
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2018, 123 (22) : 13016 - 13029
  • [23] Two dimensional size-mass distribution function inversion from differential mobility analyzer-aerosol particle mass analyzer (DMA-APM) measurements
    Rawat, Vivek K.
    Buckley, David T.
    Kimoto, Shigeru
    Lee, Myong-Hwa
    Fukushima, Nobuhiko
    Hogan, Christopher J., Jr.
    [J]. JOURNAL OF AEROSOL SCIENCE, 2016, 92 : 70 - 82
  • [24] Intercomparison between a single particle soot photometer and evolved gas analysis in an industrial area in Japan: Implications for the consistency of soot aerosol mass concentration measurements
    Miyakawa, T.
    Kanaya, Y.
    Komazaki, Y.
    Taketani, F.
    Pan, X.
    Irwin, M.
    Symonds, J.
    [J]. ATMOSPHERIC ENVIRONMENT, 2016, 127 : 14 - 21
  • [25] The ion–aerosol interactions from the ion mobility and aerosol particle size distribution measurements on January 17 and February 18, 2005 at Maitri, Antarctica – A case study
    DEVENDRAA SIINGH
    VIMLESH PANT
    A K KAMRA
    [J]. Journal of Earth System Science, 2011, 120 : 735 - 754
  • [26] The ion-aerosol interactions from the ion mobility and aerosol particle size distribution measurements on January 17 and February 18, 2005 at Maitri, Antarctica - A case study
    Siingh, Devendraa
    Pant, Vimlesh
    Kamra, A. K.
    [J]. JOURNAL OF EARTH SYSTEM SCIENCE, 2011, 120 (04): : 735 - 754
  • [27] Nanoparticle aggregate volume determination byelectrical mobility analysis: Test of idealized aggregate theory using aerosol particle mass analyzer measurements
    Lall, Anshuman Amit
    Rong, Weizhi
    Madler, Lutz
    Friedlander, Sheldon K.
    [J]. JOURNAL OF AEROSOL SCIENCE, 2008, 39 (05) : 403 - 417
  • [28] Atmospheric particle composition-hygroscopic growth measurements using an in-series hybrid tandem differential mobility analyzer and aerosol mass spectrometer
    Schurman, Misha I.
    Kim, Joo Y.
    Cheung, Heidi H. Y.
    Chan, Chak K.
    [J]. AEROSOL SCIENCE AND TECHNOLOGY, 2017, 51 (06) : 694 - 703
  • [29] Retrieving the relative contribution of aerosol types from single particle analysis and radiation measurements and calculations: A comparison of two independent approaches
    Achad, Mariana
    Laura Lopez, Maria
    Palancar, Gustavo G.
    Toselli, Beatriz M.
    [J]. JOURNAL OF AEROSOL SCIENCE, 2013, 64 : 11 - 23