National Institute of Polar Research, Tachikawa, Tokyo 190-8518, Japan.
Department of Polar Science, School of Multidisciplinary Sciences, SOKENDAI (The Graduate University for Advanced Studies), Tachikawa, Tokyo 190-8518, Japan.
Sci Rep. 2016 Sep 6;6:32930. doi: 10.1038/srep32930.
Immersion freezing (ice nucleation by particles immersed in supercooled water) is a key process for forming ice in mixed-phase clouds. Immersion freezing experiments with particles in microliter-sized (millimeter-sized) water droplets are often applied to detecting very small numbers of ice nucleating particles (INPs). However, the application of such large droplets remains confined to the detection of INPs active at temperatures much higher than the homogeneous freezing limit, because of artifacts related to freezing of water droplets without added INPs at temperatures of -25 °C or higher on a supporting substrate. Here I report a method for measuring immersion freezing in super-microliter-sized droplets over a wide temperature range. To reduce possible artifacts, droplets are pipetted onto a thin layer of Vaseline and cooled in a clean booth. In the Cryogenic Refrigerator Applied to Freezing Test (CRAFT) system, freezing of pure (Milli-Q) water droplets are limited at temperatures above -30 °C. An intercomparison of various techniques for immersion freezing experiments with reference particles (Snomax and illite NX) demonstrates that despite the use of relatively large droplets, the CRAFT setup allows for evaluating the immersion freezing activity of the particles over almost the entire temperature range (about -30 °C to 0 °C) relevant for mixed-phase cloud formation.
浸没式冷冻(颗粒在过冷水中的成冰作用)是形成混合相云冰的关键过程。使用微升(毫米)大小的水滴中的颗粒进行的浸没式冷冻实验通常用于检测非常少量的冰核颗粒(INP)。然而,由于在 -25°C 或更高温度下在支撑衬底上没有添加 INP 的水滴冻结会产生与冻结相关的伪影,因此这种大液滴的应用仍然局限于检测在远高于均相冻结极限的温度下活跃的 INP。在这里,我报告了一种在很宽的温度范围内测量超微升大小液滴中的浸没式冷冻的方法。为了减少可能的伪影,将液滴滴在一层薄薄的凡士林上,并在清洁箱中冷却。在低温冷藏Applied to Freezing Test(CRAFT)系统中,纯(Milli-Q)水液滴的冻结在高于-30°C 的温度下受到限制。对各种参考颗粒(Snomax 和伊利石 NX)的浸没式冷冻实验技术的比较表明,尽管使用了相对较大的液滴,但 CRAFT 装置允许在与混合相云形成相关的几乎整个温度范围内(约-30°C 至 0°C)评估颗粒的浸没式冷冻活性。