Literature DB >> 18605552

Evaluation of ultrafine particle emissions from laser printers using emission test chambers.

Tobias Schripp1, Michael Wensing, Erik Uhde, Tunga Salthammer, Congrong He, Lidia Morawska.   

Abstract

It has now been recognized that some hardcopy 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 (SERu) 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, beta, which provides information about the testing conditions, and the area belowthe 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.

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Year:  2008        PMID: 18605552     DOI: 10.1021/es702426m

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  8 in total

1.  Fine and ultrafine particles emitted from laser printers as indoor air contaminants in German offices.

Authors:  Tao Tang; Julia Hurraß; Richard Gminski; Volker Mersch-Sundermann
Journal:  Environ Sci Pollut Res Int       Date:  2011-11-18       Impact factor: 4.223

Review 2.  Nanoparticle exposures from nano-enabled toner-based printing equipment and human health: state of science and future research needs.

Authors:  Sandra Vanessa Pirela; John Martin; Dhimiter Bello; Philip Demokritou
Journal:  Crit Rev Toxicol       Date:  2017-05-19       Impact factor: 5.635

3.  Synergistic effects of engineered nanoparticles and organics released from laser printers using nano-enabled toners: potential health implications from exposures to the emitted organic aerosol.

Authors:  Marie-Cecile G Chalbot; Sandra V Pirela; Laura Schifman; Varun Kasaraneni; Vinka Oyanedel-Craver; Dhimiter Bello; Vincent Castranova; Yong Qian; Treye Thomas; Ilias G Kavouras; Philip Demokritou
Journal:  Environ Sci Nano       Date:  2017-08-30

4.  Development and characterization of an exposure platform suitable for physico-chemical, morphological and toxicological characterization of printer-emitted particles (PEPs).

Authors:  Sandra V Pirela; Georgios Pyrgiotakis; Dhimiter Bello; Treye Thomas; Vincent Castranova; Philip Demokritou
Journal:  Inhal Toxicol       Date:  2014-06       Impact factor: 2.724

5.  Evaluation of nanoparticle emissions from a laser printer in an experimental chamber and estimation of the human particle dose.

Authors:  Norbert Serfozo; Jakub Ondráček; Thodoros Glytsos; Mihalis Lazaridis
Journal:  Environ Sci Pollut Res Int       Date:  2018-02-27       Impact factor: 4.223

6.  Consumer exposures to laser printer-emitted engineered nanoparticles: A case study of life-cycle implications from nano-enabled products.

Authors:  Sandra V Pirela; Georgios A Sotiriou; Dhimiter Bello; Martin Shafer; Kristin Lee Bunker; Vincent Castranova; Treye Thomas; Philip Demokritou
Journal:  Nanotoxicology       Date:  2014-11-11       Impact factor: 5.913

7.  Small airway epithelial cells exposure to printer-emitted engineered nanoparticles induces cellular effects on human microvascular endothelial cells in an alveolar-capillary co-culture model.

Authors:  Jennifer D Sisler; Sandra V Pirela; Sherri Friend; Mariana Farcas; Diane Schwegler-Berry; Anna Shvedova; Vincent Castranova; Philip Demokritou; Yong Qian
Journal:  Nanotoxicology       Date:  2014-11-11       Impact factor: 5.913

8.  Modeling of High Nanoparticle Exposure in an Indoor Industrial Scenario with a One-Box Model.

Authors:  Carla Ribalta; Antti J Koivisto; Apostolos Salmatonidis; Ana López-Lilao; Eliseo Monfort; Mar Viana
Journal:  Int J Environ Res Public Health       Date:  2019-05-14       Impact factor: 3.390

  8 in total

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