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Comparability of Portable Nanoparticle Exposure Monitors*⇓

机译:便携式纳米颗粒暴露监测仪的可比性 *

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Five different portable instrument types to monitor exposure to nanoparticles were subject to an intensive intercomparison measurement campaign. Four of them were based on electrical diffusion charging to determine the number concentration or lung deposited surface area (LDSA) concentration of airborne particles. Three out of these four also determined the mean particle size. The fifth instrument type was a handheld condensation particle counter (CPC). The instruments were challenged with three different log-normally distributed test aerosols with modal diameters between 30 and 180nm, varying in particle concentration and morphology. The CPCs showed the highest comparability with deviations on the order of only ±5%, independent of the particle sizes, but with a strictly limited upper number concentration. The diffusion charger-based instruments showed comparability on the order of ±30% for number concentration, LDSA concentration, and mean particle size, when the specified particle size range of the instruments matched the size range of the aerosol particles, whereas significant deviations were found when a large amount of particles exceeded the upper or lower detection limit. In one case the reported number concentration was even increased by a factor of 6.9 when the modal diameter of the test aerosol exceeded the specified upper limit of the instrument. A general dependence of the measurement accuracy of all devices on particle morphology was not detected.
机译:五种不同的便携式仪器类型用于监测纳米粒子的暴露,进行了广泛的比对测量。其中四个是基于电扩散充电来确定空气中颗粒物的数量浓度或肺部沉积表面积(LDSA)浓度。这四个中的三个也确定了平均粒径。第五个仪器类型是手持式冷凝物颗粒计数器(CPC)。仪器受到三种不同的对数正态分布测试气溶胶的挑战,其模态直径在30至180nm之间,且颗粒浓度和形态各不相同。 CPCs具有最高的可比性,其偏差仅为±5%,与颗粒大小无关,但严格限制了上限浓度。当仪器的指定粒径范围与气溶胶颗粒的粒径范围相匹配时,基于扩散充电器的仪器的数量浓度,LDSA浓度和平均粒径的可比性约为±30%。当大量颗粒超过检测上限或下限时。在一种情况下,当测试气雾剂的模态直径超过仪器的指定上限时,报告的浓度甚至增加了6.9倍。没有检测到所有设备的测量精度对颗粒形态的一般依赖性。

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