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Extending the Capabilities of Single Particle Mass Spectrometry: I. Measurements of Aerosol Number Concentration, Size Distribution, and Asphericity

机译:扩展单粒子质谱仪的功能:I.气溶胶数浓度,尺寸分布和非球面度的测量

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Single particle mass spectrometers have traditionally been deployed to measure the size and composition of individual particles. The relatively slow sampling rates of these instruments are determined by the rate at which the ionization lasers can fire and/or mass spectra can be recorded. Under most conditions, our single particle mass spectrometer, SPLAT, can detect and size particles at much higher rates than it can record mass spectra. We therefore developed a dual data acquisition mode, in which particle number concentrations, size distributions, and asphericity are measured at a rate determined by particle concentration and the particle detection efficiency, all while the instrument generates and records individual particle sizes and mass spectra at an operator-set rate. Particle number concentrations are calculated from the particle detection rate at the first optical stage and the measured sampling flow rate. We show that SPLAT measured particle number concentrations are in very good agreement with independent measurements by the passive cavity aerosol spectrometer probe (PCASP). Particle asphericity is based on the ratio of the particle detection rates at the first and second optical stages. Particle size is based on the measurement of particle time of flight between the two detection stages. We illustrate the artifact in the measured size distributions that can be introduced by high particle concentrations and present a method to remove it and correct the size distributions. Particle number concentration and asphericity are measured with 1 s resolution and particle vacuum aerodynamic size distributions are measured with 4 to 60 s resolution.
机译:传统上已经部署了单颗粒质谱仪来测量单个颗粒的大小和组成。这些仪器的相对较慢的采样速率由电离激光器可以发射和/或可以记录质谱的速率确定。在大多数情况下,我们的单颗粒质谱仪SPLAT能够以比记录质谱更高的速率检测和确定颗粒大小。因此,我们开发了一种双重数据采集模式,其中以由颗粒浓度和颗粒检测效率决定的速率测量颗粒数浓度,尺寸分布和非球面度,同时仪器会生成并记录单个颗粒尺寸和质谱图。操作员设定的速率。根据第一光学级的颗粒检测率和测得的采样流速计算颗粒数浓度。我们显示SPLAT测得的粒子数浓度与被动腔气溶胶光谱仪探针(PCASP)的独立测量非常吻合。粒子非球面度基于第一和第二光学级的粒子检测率之比。颗粒大小基于两个检测阶段之间颗粒飞行时间的测量。我们在测量的尺寸分布中说明了可能由高粒子浓度引入的伪影,并提出了一种方法来删除它并校正尺寸分布。以1 s的分辨率测量颗粒数浓度和非球面度,以4到60 s的分辨率测量颗粒真空空气动力学尺寸分布。

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