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A method for measuring vapor pressures of low-volatility organic aerosolcompounds using a thermal desorption particle beam mass spectrometer

机译:一种使用热脱附粒子束质谱仪测量低挥发性有机气溶胶化合物蒸气压的方法

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摘要

A temperature-programmed thermal desorption method for measuring vapor pressures of low-volatility organic aerosol compounds has been developed. The technique employs a thermal desorption particle beam mass spectrometer we have recently developed for real-time composition analysis of organic aerosols. Particles are size selected using a differential mobility analyzer, sampled into a high-vacuum chamber as an aerodynamically focused beam, collected by impaction on a cryogenically cooled surface, slowly vaporized by resistive heating, and analyzed in a quadrupole mass spectrometer. A simple evaporation model developed from the kinetic theory of gases is used to calculate compound vapor pressures over the temperature range of evaporation. The data are fit to a Clausius-Clapeyron equation to obtain a relationship between vapor pressure and temperature and to determine the heat of vaporization. The technique has been evaluated using C13-C18 monocarboxylic and C6-C8 dicarboxylic acids, which have vapor pressures at 25 degreesC of similar to 10(-4)-10(-6) Pa, but less volatile compounds can also be analyzed. The method is relatively simple and rapid and yields vapor pressures and heats of vaporization that are in good agreement with literature values. The technique will be used to generate a new database of vapor pressures for low-volatility atmospheric organic compounds.
机译:已经开发了一种用于测量低挥发性有机气溶胶化合物蒸气压的程序升温热脱附方法。该技术采用了我们最近开发的用于有机气溶胶实时成分分析的热脱附粒子束质谱仪。使用差动迁移率分析仪选择颗粒的大小,将其作为空气动力聚焦束采样到高真空室中,通过撞击在低温冷却的表面上收集,通过电阻加热缓慢蒸发,然后在四极杆质谱仪中进行分析。根据气体动力学理论开发的简单蒸发模型用于计算蒸发温度范围内的复合蒸气压。将数据拟合到Clausius-Clapeyron方程,以获得蒸汽压力和温度之间的关系并确定汽化热。该技术已使用C13-C18一元羧酸和C6-C8二元羧酸进行了评估,它们在25摄氏度时的蒸气压类似于10(-4)-10(-6)Pa,但也可以分析挥发性较低的化合物。该方法相对简单且快速,并且产生的蒸气压和汽化热与文献值非常一致。该技术将用于为低挥发性大气有机化合物生成新的蒸气压数据库。

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