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Reduction of ultrafine particles emission from office laser printers

机译:从办公激光打印机中减少超细颗粒排放

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摘要

Laser printers are widely used in modern society, and VOCs and ultrafine particles emitted from printers have been known to cause adverse effects on indoor environment. In this study we conducted experiments in order to evaluate the ultrafine particles emission characteristics of laser printers and to reduce its concentration. Ultrafine particles emission characteristics was assessed for 15 printers by measuring its number concentration inside the printers (before and after the fuser) while printing. In addition, chemical analysis was performed using transmission electron microscope (TEM), Matrix-assisted laser desorption ionization time of flight mass spectroscopy (MALDI-TOF MS) and gel permeation chromatography (GPC). In order to reduce the occurrence of ultrafine particles from laser printers, an experiment was conducted with lowered fusing temperature, which resulted in the sharp decrease of the ultrafine particles generation due to the decrease in particle nucleation rate. Additionally, based on the fact that ultrafine particles contains paramagnetic material, by applying electromagnetic field, ultrafine particles emitted from laser printer was reduced by similar to 40%.
机译:激光打印机广泛应用于现代社会,已知从打印机发出的VOC和超细颗粒对室内环境产生不利影响。在该研究中,我们进行了实验,以评估激光打印机的超细颗粒排放特性并降低其浓度。通过在打印时测量打印机内部(在熔丝之前和定影前后)内的数量浓度来评估15个打印机的超细颗粒发射特性。此外,使用透射电子显微镜(TEM),基质辅助激光解吸电离时间(MALDI-TOF MS)和凝胶渗透色谱(GPC)进行化学分析。为了减少激光打印机的超细颗粒的发生,通过降低的熔合温度进行实验,这导致超细颗粒由于颗粒成核速率降低而导致超细颗粒的急剧下降。另外,基于超细颗粒含有顺磁性材料的事实,通过施加电磁场,从激光打印机发出的超细颗粒减少到40%。

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