Institut für Energie- und Umwelttechnik e. V. (IUTA), 47229 Duisburg, Germany.
Institut für Energie- und Umwelttechnik e. V. (IUTA), 47229 Duisburg, Germany.
Sci Total Environ. 2017 Dec 15;605-606:929-945. doi: 10.1016/j.scitotenv.2017.06.041. Epub 2017 Jul 12.
Personal monitors based on unipolar diffusion charging (miniDiSC/DiSCmini, NanoTracer, Partector) can be used to assess the individual exposure to nanoparticles in different environments. The charge acquired by the aerosol particles is nearly proportional to the particle diameter and, by coincidence, also nearly proportional to the alveolar lung-deposited surface area (LDSA), the metric reported by all three instruments. In addition, the miniDiSC/DiSCmini and the NanoTracer report particle number concentration and mean particle size. In view of their use for personal exposure studies, the comparability of these personal monitors was assessed in two measurement campaigns. Altogether 29 different polydisperse test aerosols were generated during the two campaigns, covering a large range of particle sizes, morphologies and concentrations. The data provided by the personal monitors were compared with those obtained from reference instruments: a scanning mobility particle sizer (SMPS) for LDSA and mean particle size and a ultrafine particle counter (UCPC) for number concentration. The results indicated that the LDSA concentrations and the mean particle sizes provided by all investigated instruments in this study were in the order of ±30% of the reference value obtained from the SMPS when the particle sizes of the test aerosols generated were within 20-400nm and the instruments were properly calibrated. Particle size, morphology and concentration did not have a major effect within the aforementioned limits. The comparability of the number concentrations was found to be slightly worse and in the range of ±50% of the reference value obtained from the UCPC. In addition, a minor effect of the particle morphology on the number concentration measurements was observed. The presence of particles >400nm can drastically bias the measurement results of all instruments and all metrics determined.
个人监测器基于单极扩散充电(miniDiSC/DiSCmini、NanoTracer、Partector),可用于评估不同环境中纳米颗粒的个体暴露情况。气溶胶颗粒所获得的电荷几乎与粒径成正比,巧合的是,这也几乎与肺泡内沉积表面积(LDSA)成正比,这是三种仪器都报告的指标。此外,miniDiSC/DiSCmini 和 NanoTracer 还报告颗粒数浓度和平均粒径。鉴于它们在个人暴露研究中的应用,在两次测量活动中评估了这些个人监测器的可比性。在两次测量活动中总共产生了 29 种不同的多分散测试气溶胶,涵盖了广泛的粒径、形态和浓度范围。个人监测器提供的数据与参考仪器获得的数据进行了比较:用于 LDSA 和平均粒径的扫描迁移率颗粒尺寸分析仪(SMPS)以及用于数浓度的超细微粒计数器(UCPC)。结果表明,在所研究的所有仪器中,当测试气溶胶的粒径在 20-400nm 范围内且仪器经过适当校准时,本研究中提供的 LDSA 浓度和平均粒径与从 SMPS 获得的参考值相差±30%左右。在上述范围内,粒径、形态和浓度没有产生重大影响。数浓度的可比性略差,范围在从 UCPC 获得的参考值的±50%左右。此外,还观察到颗粒形态对数浓度测量有轻微影响。粒径大于 400nm 的颗粒的存在会严重影响所有仪器和所有指标的测量结果。