首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >Performance of bipolar diffusion chargers: Experiments with particles in the size range of 100 to 900 nm
【24h】

Performance of bipolar diffusion chargers: Experiments with particles in the size range of 100 to 900 nm

机译:双极扩散充电器的性能:粒子尺寸范围为100至900nm的实验

获取原文
获取原文并翻译 | 示例
       

摘要

Accurate measurement of particle size distribution using electrical-mobility techniques requires knowledge of the charging state of the sampled particles. A consistent particle charge distribution is possible with bipolar diffusion chargers operated under steady-state condition. Theoretical steady-state charge distributions for bipolar charging are well established but recent studies have shown that the performance of particle chargers is a strong function of particle size, particle concentration, ion source, and charger operating conditions. Most of these studies have focused on particles smaller than 100 nm and the applicability of these results for particles larger than 100 nm must be investigated. In this study, experimentally obtained singly-charged and doubly-charged fractions are compared against theoretical predictions for particles in the size range of 100 to 900 nm. The experimental results show that the commercial soft X-ray charger performs as theoretically-predicted over the range of conditions studied while the performance of other commonly used radioactive chargers (Kr-85 and Po-210) are dependent on source strengths, flowrates, particle charge polarities, and particle sizes. From measurements of particle residence times and ion concentrations in different test bipolar chargers, prior observations of flowrate-dependent charging fractions can be explained. Additionally, the results from this study are used to determine an acceptable time period for usage of the commercial TSI 3077A Kr-85 chargers for steady-state charging as a function of flowrate.
机译:使用电动迁移率技术精确测量粒度分布需要了解采样颗粒的充电状态。可以在稳态条件下操作的双极扩散充电器来实现一致的粒子电荷分布。双极充电的理论稳态电荷分布已明确,但最近的研究表明,颗粒充电器的性能是粒度,颗粒浓度,离子源和充电器操作条件的强函数。这些研究的大多数集中于小于100nm的颗粒,必须研究这些结果的适用性大于100nm的颗粒。在该研究中,将单电荷和双电荷的分数进行实验获得,与尺寸范围为100至900nm的颗粒的理论预测。实验结果表明,商业软X射线充电器在理论上进行了在学习的条件范围内进行的,而其他常用的放射性充电器(KR-85和PO-210)的性能取决于源强度,流量,颗粒电荷极性和粒子尺寸。根据不同试验双极充电器的颗粒停留时间和离子浓度的测量,可以解释流动依赖性充电级分的前景。另外,本研究的结果用于确定用于使用商业TSI 3077A KR-85充电器的可接受的时间段,用于稳态充电作为流量的函数。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号