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Comparison of ultrafine particle release from hardcopy devices in emission test chambers and office rooms

机译:排放测试室和办公室中硬拷贝设备释放的超细颗粒的比较

摘要

The release of ultrafine particles (UFP) from laser printers and office equipment was analyzed using a particle counter (FMPS; Fast Mobility Particle Sizer) with a high time resolution, as well as the appropriate mathematical models. Measurements were carried out in a 1 m³ chamber, a 24 m³ chamber and an office. The time-dependent emission rates were calculated for these environments using a deconvolution model, after which the total amount of emitted particles was calculated. The total amounts of released particles were found to be independent of the environmental parameters and therefore, in principle, they were appropriate for the comparison of different printers. On the basis of the time-dependent emission rates, “initial burst” emitters and constant emitters could also be distinguished. In the case of an “initial burst” emitter, the comparison to other devices is generally affected by strong variations between individual measurements. When conducting exposure assessments for UFP in an office, the spatial distribution of the particles also had to be considered. In this work, the spatial distribution was predicted on a case by case basis, using CFD simulation.
机译:使用具有高时间分辨率的粒子计数器(FMPS;快速移动粒子筛)和适当的数学模型,分析了激光打印机和办公设备中超细颗粒(UFP)的释放。在1m³的腔室,24m³的腔室和办​​公室中进行测量。使用反卷积模型计算这些环境的时间依赖性排放速率,然后计算排放粒子的总量。发现释放的颗粒总量与环境参数无关,因此,原则上,它们适合于比较不同的打印机。根据与时间有关的发射速率,还可以区分“初始突发”发射器和恒定发射器。在“初始突发”发射器的情况下,与其他设备的比较通常会受到各个测量值之间强烈差异的影响。在办公室中对UFP进行暴露评估时,还必须考虑颗粒的空间分布。在这项工作中,使用CFD模拟逐个案例地预测了空间分布。

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