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首页> 外文期刊>Journal of Chemical Engineering of Japan >Bipolar Charging of Aerosol Nanoparticles by a Soft X-ray Photoionizer
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Bipolar Charging of Aerosol Nanoparticles by a Soft X-ray Photoionizer

机译:软X射线光电离器对气溶胶纳米颗粒的双极充电

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摘要

A new bipolar charger for nanometer aerosols using soft X-ray photoionization was developed. The concentrations and mobility distributions of the positive and negative ions generated by the X-ray charger were investigated, and then the charging probability of nanoparticles was evaluated experimentally and theoretically. All experimental data of the X-ray charger were compared with those of a ~(241)Am #alpha#-ray bipolar charger. It was found that the X-ray bipolar charger could produce at least about 3.5 times as high concentration of gaseous ions as the #alpha#-ray charger and thus could have particles attain the equilibrium bipolar charging state in shorter residence time than the #alpha#-ray charger. The charging state of particles attained by the X-ray charger was explained by theoretical calculations as well as #alpha#-ray bipolar charging. It was concluded that the X-ray charger would be a useful instrument for charging high number concentration nanoparticles in the electrical aerosol measurements.
机译:开发了一种使用软X射线光电离的新型纳米气溶胶双极充电器。研究了X射线充电器产生的正离子和负离子的浓度和迁移率分布,然后通过实验和理论评估了纳米粒子的带电概率。将X射线充电器的所有实验数据与〜(241)Am#alpha#射线双极充电器的实验数据进行了比较。已经发现,X射线双极充电器可以产生的气体离子浓度至少是#alpha#射线充电器的3.5倍,因此可以使粒子在比#alpha短的停留时间内达到平衡双极性充电状态。 #射线充电器。通过X射线充电器获得的粒子的带电状态通过理论计算以及#alpha#射线双极带电进行了解释。得出的结论是,X射线充电器将是一种有用的仪器,用于在电喷雾测量中为高浓度的纳米粒子充电。

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