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Homogeneous water nucleation and droplet growth in methane and carbon dioxide mixtures at 235 K and 10 bar

机译:235 K和10 bar的甲烷和二氧化碳混合物中的均相水成核和液滴生长

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Homogeneous nucleation rates and droplet growth rates of water in pure methane and mixtures of methane and carbon dioxide were measured in an expansion wave tube at 235 K and 10 bar. The nucleation rate in pure methane is three orders of magnitude higher than literature nucleation rates of water in low-pressure helium or argon. Addition of carbon dioxide to the carrier gas mixture increases the rates even more. Specifically, rates in a mixture of methane and 3% carbon dioxide are a factor of 10 higher than the rates in pure methane. With 25% carbon dioxide, the rates are four orders of magnitude higher than the rates in pure methane. An application of the nucleation theorem shows that the critical cluster consists of 22 water molecules and 5 methane molecules, for nucleation in pure methane. Growth rates of water droplets were measured in methane and in methane-carbon dioxide mixtures at 243 K and 11.5 bar. At equal temperature, pressure and water vapor fraction, the growth rate of the squared droplet radius is about 20% lower in the mixture with 25% carbon dioxide than in pure methane. The lower growth rate is caused by a smaller diffusion coefficient of water in the mixture with carbon dioxide; the difference of the diffusion coefficients is qualitatively reproduced by the empirical Fuller correlation combined with Blanc's law.
机译:在235 K和10 bar的膨胀波管中测量纯甲烷以及甲烷和二氧化碳的混合物中水的均相成核速率和液滴生长速率。纯甲烷中的成核速率比文献中低压氦气或氩气中水的成核速率高三个数量级。向载气混合物中添加二氧化碳甚至进一步增加了速率。具体而言,甲烷和3%二氧化碳的混合物中的比率比纯甲烷中的比率高10倍。二氧化碳含量为25%时,该速率比纯甲烷的速率高四个数量级。成核定理的应用表明,临界簇由22个水分子和5个甲烷分子组成,用于在纯甲烷中成核。在243 K和11.5 bar下在甲烷和甲烷-二氧化碳混合物中测量水滴的生长速率。在相同的温度,压力和水蒸气分数下,具有25%二氧化碳的混合物中的液滴半径平方的增长速率比纯甲烷低约20%。较低的生长速率是由于水在与二氧化碳的混合物中的扩散系数较小所致;扩散系数的差异通过经验富勒相关性结合布兰克定律定性地再现。

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