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Good Cascade Impactor Practice (GCIP) and Considerations for In-Use Specifications

机译:串级冲击器良好实践(GCIP)和使用中规范的考虑因素

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摘要

The multi-stage cascade impactor (CI) is widely used to determine aerodynamic particle size distributions (APSDs) of orally inhaled products. Its size-fractionating capability depends primarily on the size of nozzles of each stage. Good Cascade Impactor Practice (GCIP) requires that these critical dimensions are linked to the accuracy of the APSD measurement based on the aerodynamic diameter size scale. Effective diameter (Deff) is the critical dimension describing any nozzle array, as it is directly related to stage cut-point size (d50). d50 can in turn be determined by calibration using particles of known aerodynamic diameter, providing traceability to the international length standard. Movements in Deff within manufacturer tolerances for compendial CIs result in the worst case in shifts in d50 of <±10%. Stage mensuration therefore provides satisfactory control of measurement accuracy. The accurate relationship of Deff to d50 requires the CI system to be leak-free, which can be checked by sealing the apparatus at the entry to the induction port and isolating it from the vacuum source and measuring the rate of pressure rise before each use. Mensuration takes place on an infrequent basis compared with the typical interval between individual APSD determinations. Measurement of stage flow resistance (pressure drop; ΔPstage) could enable the user to know that the CI stages are fit for use before every APSD measurement, by yielding an accurate measure of Deff. However, more data are needed to assess the effects of wear and blockage before this approach can be advocated as part of GCIP.
机译:多级级联撞击器(CI)被广泛用于确定口服吸入产品的空气动力学粒度分布(APSDs)。其尺寸分级能力主要取决于每个阶段的喷嘴尺寸。良好的串级冲击器规范(GCIP)要求这些关键尺寸与基于空气动力学直径尺寸标度的APSD测量的准确性相关联。有效直径(Deff)是描述任何喷嘴阵列的关键尺寸,因为它直接与工作台切割点尺寸(d50)相关。 d50可以通过使用已知空气动力学直径的颗粒进行校准来确定,从而可追溯到国际长度标准。在DCI的制造商容差范围内,Deff的变化会导致d50的变化最差情况<±10%。因此,阶段测定可以令人满意地控制测量精度。 Deff与d50的精确关系要求CI系统无泄漏,可以通过在进入进气口的入口处密封设备并将其与真空源隔离并在每次使用之前测量压力上升速率来进行检查。与单独的APSD测定之间的典型间隔相比,测定很少发生。级流动阻力(压降;ΔPstage)的测量可以使用户通过产生准确的Deff量度,在每次APSD测量之前就知道CI级适合使用。但是,在将这种方法倡导为GCIP的一部分之前,需要更多数据来评估磨损和堵塞的影响。

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