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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >In Situ Observation on the Dynamic Process of Evaporation and Crystallization of Sodium Nitrate Droplets on a ZnSe Substrate by FTIR-ATR
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In Situ Observation on the Dynamic Process of Evaporation and Crystallization of Sodium Nitrate Droplets on a ZnSe Substrate by FTIR-ATR

机译:FTIR-ATR在ZnSe衬底上硝酸钠液滴蒸发和结晶动态过程的现场观察。

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Sodium nitrate is a main component of aging sea salt aerosol, and its phase behavior has been studied repeatedly with wide ranges observed in the efflorescence relative humidity (RH) in particular. Studies of the efflorescence dynamics of NaNO_3 droplets deposited on a ZnSe substrate are reported, using an in situ Fourier transform infrared attenuated total reflection (FTIR-ATR) technique. The time-dependence of the infrared spectra of NaNO_3 aerosols accompanying step changes in RH have been measured with high signal-to-noise ratio. From the IR difference spectra recorded, changes of the time-dependent absorption peak area of the O-H stretching band (ν-OH, ~3400 cm~(-1)) and the nitrate out-of-plane bending band (ν_2-NO_3~-, ~836 cm~(-1)) are obtained. From these measurements, changes in the IR signatures can be attributed to crystalline and solution phase nitrate ions, allowing the volume fraction of the solution droplets that have crystallized to be determined. Then, using these clear signatures of the volume fraction of droplets that have yet to crystallize, the homogeneous and heterogeneous nucleation kinetics can be studied from conventional measurements using a steady decline in RH. The nucleation rate measurements confirm that the rate of crystallization in sodium nitrate droplets is considerably less than in ammonium sulfate droplets at any particular degree of solute supersaturation, explaining the wide range of efflorescence RHs observed for sodium nitrate in previous studies. We demonstrate that studying nucleation kinetics using the FTIR-ATR approach has many advantages over brightfield imaging studies on smaller numbers of larger droplets or measurements made on single levitated particles.
机译:硝酸钠是衰老的海盐气溶胶的主要成分,尤其是在风化相对湿度(RH)的广泛范围内,对其相行为进行了反复研究。使用原位傅立叶变换红外衰减全反射(FTIR-ATR)技术报道了沉积在ZnSe衬底上的NaNO_3液滴的风化动力学研究。已经以高信噪比测量了伴随着RH阶跃变化的NaNO_3气溶胶的红外光谱的时间依赖性。根据记录的红外差光谱,OH伸缩带(ν-OH,〜3400 cm〜(-1))和硝酸盐面外弯曲带(ν_2-NO_3〜)随时间变化的吸收峰面积变化-〜836 cm〜(-1))。从这些测量中,IR标记的变化可归因于结晶和溶液相硝酸根离子,从而可以确定已结晶的溶液液滴的体积分数。然后,使用这些尚未结晶的液滴体积分数的清晰特征,可以使用RH的稳定下降,通过常规测量研究均相和异相成核动力学。成核速率的测量结果表明,在任何特定的溶质过饱和度下,硝酸钠小滴中的结晶速率都大大低于硫酸铵小滴中的结晶速率,这解释了先前研究中观察到的硝酸钠的大范围风化RH。我们证明,使用FTIR-ATR方法研究成核动力学比通过大数量的小液滴进行明场成像研究或对单个悬浮颗粒进行测量具有许多优势。

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