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Design and Characterization of an Improved Screw-Assisted Rotary Feeding System for Aerosolization of Ultra-Small Quantities of Particulate Solids

机译:改进的螺杆辅助旋转进料系统的设计和表征,用于雾化超少量的固体颗粒

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摘要

Many previous studies have examined solid-state particle discharge systems. However, several drawbacks have been encountered in terms of laboratory-scale particle feeding systems (e.g., high feeding rates, discontinuous feeding characteristics, the absence of long-term stability, and the use of high carrier gas volume rates). In this study, a state-of-the-art screw-assisted rotary feeding system was developed and evaluated in terms of aerosolization characteristics such as particle number concentration, geometric mean diameter, and geometric standard deviation. The various experimental conditions included changes in the rotational speed of the rotor, changes in the number of rotor grooves, and the existence or nonexistence of screw operation. Calcium carbonate (CaCO 3 ) powder was selected as the discharged sorbent particle. To verify the performance of the designed feeding system, we measured number concentrations with and without operation of the screw. Uniformity (i.e., the steadiness of feeding characteristics over time) was analyzed using a condensation particle counter. As the rotational speed and the number of rotor grooves increased, the number concentration and the frequency of discharging sorbent particles increased, whereas the coefficient of variation decreased. However, when the loading time was less than the critical time (0.8 s), the number concentration decreased and the coefficient of variation increased again according to the rotational speed. Stability (i.e., the invariability of the size distribution in various rotational speeds of the rotor for three different rotors) was also analyzed using an aerodynamic particle sizer and a scanning mobility particle sizer. The results of both aerosol measurement and scanning electron microscopy analysis showed that the geometric mean diameter and the geometric standard deviation of aerosolized sorbent particles remained constant under all the experimental conditions. We also determined that the region in which the coefficient of variation was less than 0.1 was the stable operation region for this screw-assisted rotary feeding system.
机译:先前的许多研究已经研究了固态粒子排放系统。然而,就实验室规模的颗粒进料系统而言,已经遇到了一些缺点(例如,高进料速率,不连续的进料特性,缺乏长期稳定性以及使用高载气体积率)。在这项研究中,开发了最先进的螺旋辅助旋转进料系统,并根据气雾化特性(如颗粒数浓度,几何平均直径和几何标准偏差)进行了评估。各种实验条件包括转子转速的变化,转子槽的数量的变化以及螺杆操作的存在与否。选择碳酸钙(CaCO 3 )粉末作为排出的吸附剂颗粒。为了验证设计的进料系统的性能,我们测量了有无螺丝操作时的浓度。使用冷凝粒子计数器分析均匀性(即,进料特性随时间的稳定性)。随着转速和转子槽数量的增加,吸附剂颗粒的数量浓度和排放频率增加,而变异系数降低。但是,当加载时间小于临界时间(0.8 s)时,数量浓度降低,并且变异系数根据转速再次增大。还使用空气动力学粒度仪和扫描迁移率粒度仪分析了稳定性(即,对于三个不同的转子,在转子的各种旋转速度下尺寸分布的不变性)。气溶胶测量和扫描电子显微镜分析的结果表明,在所有实验条件下,气雾化吸附剂颗粒的几何平均直径和几何标准偏差均保持恒定。我们还确定,变异系数小于0.1的区域是此螺旋辅助旋转进给系统的稳定工作区域。

著录项

  • 来源
    《Aerosol Science and Technology》 |2010年第7期|p.563-569|共7页
  • 作者单位

    Aerosol & Particle Technology Laboratory, Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology (KAIST), Guseong-dong, Yuseong-gu, Daejeon, Republic of Korea Global Environment Center, Korea Institute of Science and Tec;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 00:57:47

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