Pirela Sandra V, Pyrgiotakis Georgios, Bello Dhimiter, Thomas Treye, Castranova Vincent, Demokritou Philip
Department of Environmental Health, Center for Nanotechnology and Nanotoxicology, Harvard School of Public Health , Boston, MA , USA .
Inhal Toxicol. 2014 Jun;26(7):400-8. doi: 10.3109/08958378.2014.908987.
An association between laser printer use and emissions of particulate matter (PM), ozone and volatile organic compounds has been reported in recent studies. However, the detailed physico-chemical, morphological and toxicological characterization of these printer-emitted particles (PEPs) and possible incorporation of engineered nanomaterials into toner formulations remain largely unknown. In this study, a printer exposure generation system suitable for the physico-chemical, morphological, and toxicological characterization of PEPs was developed and used to assess the properties of PEPs from the use of commercially available laser printers. The system consists of a glovebox type environmental chamber for uninterrupted printer operation, real-time and time-integrated particle sampling instrumentation for the size fractionation and sampling of PEPs and an exposure chamber for inhalation toxicological studies. Eleven commonly used laser printers were evaluated and ranked based on their PM emission profiles. Results show PM peak emissions are brand independent and varied between 3000 to 1 300 000 particles/cm³, with modal diameters ranging from 49 to 208 nm, with the majority of PEPs in the nanoscale (<100 nm) size. Furthermore, it was shown that PEPs can be affected by certain operational parameters and printing conditions. The release of nanoscale particles from a nano-enabled product (printer toner) raises questions about health implications to users. The presented PEGS platform will help in assessing the toxicological profile of PEPs and the link to the physico-chemical and morphological properties of emitted PM and toner formulations.
近期研究报道了激光打印机使用与颗粒物(PM)、臭氧及挥发性有机化合物排放之间的关联。然而,这些打印机排放颗粒(PEP)详细的物理化学、形态学及毒理学特征,以及工程纳米材料可能被纳入调色剂配方的情况,在很大程度上仍不为人知。在本研究中,开发了一种适用于PEP物理化学、形态学及毒理学特征分析的打印机暴露生成系统,并用于评估商用激光打印机使用过程中PEP的特性。该系统由一个用于打印机不间断运行的手套箱式环境舱、用于PEP粒径分级和采样的实时及时间积分颗粒采样仪器,以及一个用于吸入毒理学研究的暴露舱组成。基于其PM排放特征,对11种常用激光打印机进行了评估和排名。结果显示,PM峰值排放与品牌无关,在3000至1300000颗粒/立方厘米之间变化,模态直径范围为49至208纳米,大多数PEP处于纳米级(<100纳米)尺寸。此外,研究表明PEP会受到某些操作参数和打印条件的影响。纳米产品(打印机调色剂)释放纳米级颗粒引发了对用户健康影响的疑问。所展示的PEGS平台将有助于评估PEP的毒理学特征,以及与排放PM和调色剂配方的物理化学及形态学特性之间的联系。