GSTDTAP  > 地球科学
DOI10.5194/acp-17-11227-2017
Comparative measurements of ambient atmospheric concentrations of ice nucleating particles using multiple immersion freezing methods and a continuous flow diffusion chamber
DeMott, Paul J.1; Hill, Thomas C. J.1; Petters, Markus D.2; Bertram, Allan K.3; Tobo, Yutaka4,5; Mason, Ryan H.3; Suski, Kaitlyn J.1,12; McCluskey, Christina S.1; Levin, Ezra J. T.1; Schill, Gregory P.1; Boose, Yvonne6; Rauker, Anne Marie1; Miller, Anna J.7; Zaragoza, Jake1,13; Rocci, Katherine8; Rothfuss, Nicholas E.2; Taylor, Hans P.2; Hader, John D.2; Chou, Cedric3; Huffman, J. Alex9; Poeschl, Ulrich10; Prenni, Anthony J.11; Kreidenweis, Sonia M.1
2017-09-22
发表期刊ATMOSPHERIC CHEMISTRY AND PHYSICS
ISSN1680-7316
EISSN1680-7324
出版年2017
卷号17期号:18
文章类型Article
语种英语
国家USA; Canada; Japan; Germany
英文摘要

A number of new measurement methods for ice nucleating particles (INPs) have been introduced in recent years, and it is important to address how these methods compare. Laboratory comparisons of instruments sampling major INP types are common, but few comparisons have occurred for ambient aerosol measurements exploring the utility, consistency and complementarity of different methods to cover the large dynamic range of INP concentrations that exists in the atmosphere. In this study, we assess the comparability of four offline immersion freezing measurement methods (Colorado State University ice spectrometer, IS; North Carolina State University cold stage, CS; National Institute for Polar Research Cryogenic Refrigerator Applied to Freezing Test, CRAFT; University of British Columbia micro-orifice uniform deposit impactor-droplet freezing technique, MOUDI-DFT) and an online method (continuous flow diffusion chamber, CFDC) used in a manner deemed to promote/maximize immersion freezing, for the detection of INPs in ambient aerosols at different locations and in different sampling scenarios. We also investigated the comparability of different aerosol collection methods used with offline immersion freezing instruments. Excellent agreement between all methods could be obtained for several cases of co-sampling with perfect temporal overlap. Even for sampling periods that were not fully equivalent, the deviations between atmospheric INP number concentrations measured with different methods were mostly less than 1 order of magnitude. In some cases, however, the deviations were larger and not explicable without sampling and measurement artifacts. Overall, the immersion freezing methods seem to effectively capture INPs that activate as single particles in the modestly supercooled temperature regime (> -20 degrees C), although more comparisons are needed in this temperature regime that is difficult to access with online methods. Relative to the CFDC method, three immersion freezing methods that disperse particles into a bulk liquid (IS, CS, CRAFT) exhibit a positive bias in measured INP number concentrations below -20 degrees C, increasing with decreasing temperature. This bias was present but much less pronounced for a method that condenses separate water droplets onto limited numbers of particles prior to cooling and freezing (MOUDI-DFT). Potential reasons for the observed differences are discussed, and further investigations proposed to elucidate the role of all factors involved.


领域地球科学
收录类别SCI-E
WOS记录号WOS:000411457700001
WOS关键词BIOLOGICAL AEROSOL-PARTICLES ; NUCLEI POPULATIONS ; PRECIPITATION ; SITE ; QUANTIFY ; BEHAVIOR ; IMPACTS ; FIELD ; TIME
WOS类目Environmental Sciences ; Meteorology & Atmospheric Sciences
WOS研究方向Environmental Sciences & Ecology ; Meteorology & Atmospheric Sciences
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/30787
专题地球科学
作者单位1.Colorado State Univ, Dept Atmospher Sci, Ft Collins, CO 80523 USA;
2.North Carolina State Univ, Dept Marine Earth & Atmospher Sci, Raleigh, NC 27695 USA;
3.Univ British Columbia, Dept Chem, Vancouver, BC V6T 1Z1, Canada;
4.Natl Inst Polar Res, Tachikawa, Tokyo 1908518, Japan;
5.SOKENDAI Grad Sch Adv Studies, Dept Polar Sci, Sch Multidisciplinary Sci, Tachikawa, Tokyo 1908518, Japan;
6.Inst Meteorol & Climate Res IMK IFU, Karlsruhe Inst Technol, D-82467 Garmisch Partenkirchen, Germany;
7.Reed Coll, Dept Chem, Portland, OR 97202 USA;
8.Univ New Hampshire, Dept Earth Sci, Durham, NH 03824 USA;
9.Univ Denver, Dept Chem & Biochem, Denver, CO 80210 USA;
10.Max Planck Inst Chem, Dept Multiphase Chem, D-55128 Mainz, Germany;
11.Natl Pk Serv, Air Resources Div, Lakewood, CO 80228 USA;
12.Pacific Northwest Natl Lab, Richland, WA 99352 USA;
13.Air Resource Specialists, Ft Collins, CO 80525 USA
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GB/T 7714
DeMott, Paul J.,Hill, Thomas C. J.,Petters, Markus D.,et al. Comparative measurements of ambient atmospheric concentrations of ice nucleating particles using multiple immersion freezing methods and a continuous flow diffusion chamber[J]. ATMOSPHERIC CHEMISTRY AND PHYSICS,2017,17(18).
APA DeMott, Paul J..,Hill, Thomas C. J..,Petters, Markus D..,Bertram, Allan K..,Tobo, Yutaka.,...&Kreidenweis, Sonia M..(2017).Comparative measurements of ambient atmospheric concentrations of ice nucleating particles using multiple immersion freezing methods and a continuous flow diffusion chamber.ATMOSPHERIC CHEMISTRY AND PHYSICS,17(18).
MLA DeMott, Paul J.,et al."Comparative measurements of ambient atmospheric concentrations of ice nucleating particles using multiple immersion freezing methods and a continuous flow diffusion chamber".ATMOSPHERIC CHEMISTRY AND PHYSICS 17.18(2017).
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