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An electrospray aerosol generator with X-ray photoionizer for particle charge reduction

机译:带有X射线光电离器的电喷雾气溶胶发生器,可减少颗粒电荷

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A prototype single-capillary electrospray (ES) aerosol generator having a soft X-ray photoionizer for charge reduction has been constructed and its performance under various configurations has been investigated in this study. The prototype essentially consists of spray and charge reduction chambers having an orifice disk plate as the partition. Two soft X-ray irradiation directions (i.e., 90° and 180° relative to the spray direction) and two disk plates (with the orifice diameters of 0.25 in. and 1.25 in.) were tested for the prototype configuration. In the investigation, the spray current as a function of ES voltage was recorded. It is shown that the presence of soft X-ray irradiation in the close proximity of the electrospray process resulted in the increase of applied voltage needed to operate the spray while the spray current at the cone-jet mode remained unchanged. The fluorescence analysis was applied in this study to quantify the transmission efficiency and the charge fractions of particles exiting from the prototype generator. A maximal 47% transmission efficiency could be achieved by the prototype having the setup of 180° irradiation and use of 0.25 in. D-orifice plate, and operated at carrier gas flow rate of 8.01pm. Under the above setup and operation the charge fraction of particles with the sizes ranging from 30 to 300 nm was further characterized. It is found that the measured charge fractions of particles exiting from the generator is in good agreement with the calculated Fuchs bipolar charge factions for the cases having the particle sizes less than 110 nm. The deviation from the Fuchs charge fraction increases as the particle size increases. It may be because (1) more ions were needed to reduce the charge level on particles of large sizes; (2) spatial non-uniformity of aerosol concentration and ions in charge reduction chamber; and (3) because of the direct photoionization of particles under the X-ray irradiation. At last, the size measurement of ES particles via a scanning mobility particle sizer (SMPS) shows the good quality of monodispersity for particles generated by the prototype when operated at the cone-jet mode.
机译:已构建了具有软X射线光电离器以减少电荷的原型单毛细管电喷雾(ES)气溶胶发生器,并在此研究中研究了其在各种配置下的性能。原型基本上由具有孔板盘作为隔板的喷雾和电荷减少室组成。测试了两个软X射线照射方向(即相对于喷雾方向的90°和180°)和两个圆盘板(孔直径分别为0.25英寸和1.25英寸)。在研究中,记录了喷涂电流与ES电压的关系。结果表明,在电喷雾过程的紧邻处存在软X射线辐照会导致进行喷雾所需的施加电压增加,而在锥喷模式下的喷雾电流保持不变。在这项研究中应用了荧光分析,以量化透射效率和从原型发生器中出来的颗粒的电荷分数。通过具有180°辐射设置和使用0.25 in。D孔板的样机,并以8.01pm的载气流速运行,原型可以实现最大47%的传输效率。在以上设置和操作下,进一步表征了尺寸范围为30至300 nm的粒子的电荷分数。已发现,对于粒径小于110 nm的情况,从发生器中出来的颗粒的测量电荷分数与计算出的Fuchs双极电荷分馏率非常一致。随着颗粒尺寸的增加,与Fuchs电荷分数的偏差增加。可能是因为(1)需要更多的离子来降低大尺寸粒子上的电荷水平; (2)电荷减少室中气溶胶浓度和离子的空间不均匀性; (3)由于在X射线照射下颗粒直接光电离。最后,通过扫描迁移率粒度仪(SMPS)对ES颗粒的尺寸测量表明,当以锥形喷射模式运行时,原型产生的颗粒具有良好的单分散性。

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