Indoor Air Quality in Photocopy Centers, Nanoparticle Exposures at Photocopy Workstations, and the Need for Exposure Controls.

Background: Photocopiers emit large amounts of nanoparticles (NP) and are a significant source of indoor air pollution. These emissions induce airway inflammation, irritation, and systemic oxidative stress in humans, lung injury and inflammation in animals, and cytotoxicity and epigenetic modificati...

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Publicado en:Annals of Work Exposures & Health Vol. 61; no. 1; pp. 110 - 123
Autores principales: Martin, John, Demokritou, Philip, Woskie, Susan, Bello, Dhimiter
Formato: equations & formulas pictorial research tables/charts Journal Article
Publicado: Oxford University Press / USA Jan2017
Acceso en línea:Ver este registro en EBSCOhost
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      dt: Jan2017
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      pub: Oxford University Press / USA
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        atl: Indoor Air Quality in Photocopy Centers, Nanoparticle Exposures at Photocopy Workstations, and the Need for Exposure Controls.
      aug:
        au:
          Martin, John
          Demokritou, Philip
          Woskie, Susan
          Bello, Dhimiter
        affil: Department of Work Environment, University of Massachusetts Lowell, One University Avenue, Lowell, MA 01854, USA
      sug:
        subj:
          Air Pollution, Indoor
          Copying Processes
          Nanoparticles
          Inhalation Exposure Evaluation
          Work Environment
          Human
          Ventilation
          Temperature
          Carbon Dioxide
          Carbon Monoxide
          Environmental Monitoring
          Air Analysis
          Descriptive Statistics
          Data Analysis Software
          P-Value
          Spearman's Rank Correlation Coefficient
          Regression
          T-Tests
          Business New England
          New England
          Inhalation Exposure Prevention and Control
          Funding Source
      ab: Background: Photocopiers emit large amounts of nanoparticles (NP) and are a significant source of indoor air pollution. These emissions induce airway inflammation, irritation, and systemic oxidative stress in humans, lung injury and inflammation in animals, and cytotoxicity and epigenetic modifications in vitro. However, little is known regarding NP exposures at the workstation in the photocopy work environment, or the extent and use of emission controls. Objective: To survey the photocopy work environment with regards to emissions controls and to evaluate IAQ with emphasis on NP exposure at the operator's workstation. Methods: Work process, physical characteristics of the centers, and use of controls were recorded. Particle total number concentration (TNC), temperature, carbon dioxide, carbon monoxide, and percent relative humidity were measured during a random workday. Results: Geometric mean (GM) TNC at workstations ranged between 1900 and 23 000 particles cm-3, GSD 1.2-2.8, and maximum of 217 000 particles cm-3. Fresh air ventilation was found to be less than American Society of Heating, Refrigerating, and Air-Conditioning Engineers (ASHRAE) guidelines in 7 of 15 centers. Only one center used any type of emissions control. Elevated TNC at workstations was significantly correlated with number of copies (r = 0.72). While indoor/outdoor TNC ratios might be expected to be ≤1.0, the ratio here was >1.0 in 40% of centers visited, supporting the finding that copier emissions are a significant source of indoor air pollution. Number of copies per day was the most significant contributor to TNC. Conclusion: High NP concentrations at workstations were common and specific emission controls almost nonexistent. While 46% of copy centers had insufficient ventilation, high exposures were documented even for cases when ASHRAE ventilation guidelines per person were met or exceeded. We present various options to address IAQ in photocopy environment, including new clean photocopy technologies, engineering controls, and a comprehensive awareness campaign to improve the environmental health and safety, design, and operational conditions of these workplaces.
      pubtype: Academic Journal
      doctype:
        equations & formulas
        pictorial
        research
        tables/charts
        Journal Article
      ougenre: Article
    language: English
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