首页> 外文期刊>International journal of occupational and environmental health : >Particle loss in a scanning mobility particle analyzer sampling extension tube.
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Particle loss in a scanning mobility particle analyzer sampling extension tube.

机译:扫描淌度颗粒分析仪采样扩展管中的颗粒损失。

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摘要

Deposition of particles in sampling lines may occur due to various physical forces. Particles in the nanoscale are not highly susceptible to inertial or sedimentary deposition, and electrical losses are reportedly controlled by using conductive tubing. Particle losses from diffusion affect size distribution and number concentration. Selectively removing the smallest particles has the effect of increasing the statistical measure of particle size-the geometric mean-while decreasing number concentration and geometric standard deviation. Quantification of losses is necessary to interpret or correct the data. Sample loss from a rigid graphitic or flexible Tygon tube attached to a scanning mobility particle sizer inlet was investigated during sampling at the Center for Nanophase Materials Sciences. Mean concentrations and particle size parameters determined from samples collected with and without sample inlet extensions were compared. Number concentration decreased and mean particle size increased for both tubing types at lengths of approximately 0.7 m.
机译:由于各种物理力,可能会在采样线中发生颗粒沉积。纳米级的颗粒对惯性或沉积沉积的敏感性不高,据报道,通过使用导电管可以控制电损耗。扩散造成的颗粒损失会影响尺寸分布和数量浓度。选择性地去除最小的粒子具有增加粒度的统计度量(几何平均数),同时降低数量浓度和几何标准偏差的效果。损失的量化对于解释或纠正数据是必要的。在纳米相材料科学中心采样期间,研究了连接到扫描迁移率粒度仪入口的刚性石墨管或柔性Tygon管的样品损失。比较了从有或没有进样口扩展时收集的样品确定的平均浓度和粒度参数。两种类型的油管在大约0.7 m的长度处浓度降低,平均粒径增加。

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