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Evaluation of Ultrafine Particle Emissions from Laser Printers Using Emission Test Chambers

机译:使用排放测试箱评估激光打印机的超细颗粒排放

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It has now been recognized that some hardeopy devices emit ultrafine particles (d_p < 100 nm) during their operation. As a consequence, the time-dependent characterization of particle release from laser printers is of high interest in order to evaluate the exposure of office workers to such emissions. The emission profiles of different printers can be compared in test chambers using a standardized test protocol and measuring devices with high time resolution. The extraction of meaningful and comparable data from the obtained data set is a complex procedure due to the different emission behavior patterns of the printers. The calculation of the unit specific emission rate (SER_u) is of limited use because the emission profiles during the printing process ranged between short-term bursts and constant particle release. Therefore, other parameters such as the particle loss-rate coefficient, β, which provides information about the testing conditions, and the area below the time vs concentration curve, F, which characterizes the particle release, allow for a comparison of the different printer tests. Variations in the emission behavior could not be associated with specific manufacturers or product lines. In addition, when performing several print jobs on the same device, with only short pauses between jobs, the emission rate was reduced in some cases. This further complicates the ability to determine the influence of printer construction and consumables, such as toner and paper, on the concentration of particles emitted.
机译:现在已经认识到,某些硬骨化装置在其操作过程中会发射超细颗粒(d_p <100 nm)。因此,为了评估办公室工作人员暴露于此类排放物的时间,从激光打印机释放颗粒的时间相关特性非常受关注。可以使用标准测试协议和具有高时间分辨率的测量设备,在测试箱中比较不同打印机的发射曲线。由于打印机的不同发射行为模式,从获得的数据集中提取有意义的和可比较的数据是一个复杂的过程。单位比排放率(SER_u)的计算用途有限,因为在打印过程中的排放曲线介于短期突发和恒定颗粒释放之间。因此,其他参数(例如提供有关测试条件信息的颗粒损失速率系数β和表征颗粒释放的时间-浓度曲线F下方的面积)可以比较不同的打印机测试。排放行为的变化不能与特定的制造商或产品线相关联。另外,在同一设备上执行多个打印作业时,作业之间只有短暂的停顿,因此有时会降低发射率。这进一步增加了确定打印机结构和耗材(例如墨粉和纸张)对所发射颗粒浓度的影响的能力。

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