Occupational Diseases and Environmental Medicine

Occupational Diseases and Environmental Medicine

ISSN Print: 2333-3561
ISSN Online: 2333-357X
www.scirp.org/journal/odem
E-mail: odem@scirp.org
"Indoor Pollution in Work Office: VOCs, Formaldehyde and Ozone by Printer"
written by Elena Barrese, Angela Gioffrè, Marialuisa Scarpelli, Donatella Turbante, Roberto Trovato, Sergio Iavicoli,
published by Occupational Diseases and Environmental Medicine, Vol.2 No.3, 2014
has been cited by the following article(s):
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[1] Evaluation of Ozone Removal by Spent Coffee Grounds
2020
[2] Ozone decomposition on the surface of a novel Mn-Al catalyst in gas phase
2020
[3] Humidified Warmed CO2 Treatment Therapy Strategies Can Save Lives with Mitigation and Suppression of SARS-CoV-2 Infection: An Evidence Review
2020
[4] INDOOR AIR QUALITY ASSESSMENT FOR A MULTISTOREY UNIVERSITY OFFICE BUILDING IN MALAYSIA
2019
[5] Indoor gaseous air pollutants determinants in office buildings‐the OFFICAIR project
2019
[6] Experimental study of local thermal comfort and ventilation performance for mixing, displacement and stratum ventilation in an office
2019
[7] Modeling the time-dependent concentrations of primary and secondary reaction products of ozone with squalene in a university classroom
2019
[8] Assessment of environmental and ergonomic hazard associated to printing and photocopying: a review
Environmental Geochemistry and Health, 2018
[9] Monitoring of total volatile organic compounds and particulate matter in an indoor environment.
Current Science, 2018
[10] Indoor Air Pollution, Sorbent Selection, and Analytical Techniques for Volatile Organic Compounds
2018
[11] Manisha Gaur1, Kirti Bhandari2,* and
2018
[12] Air monitoring system
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[13] Cairo consensus on the IVF laboratory environment and air quality: report of an expert meeting
Reproductive BioMedicine Online, 2018
[14] Simultaneously catalytic decomposition of formaldehyde and ozone over manganese cerium oxides at room temperature: Promotional effect of relative humidity on the …
Catalysis Today, 2018
[15] The development of portable chemosensors for atmospheric radicals
2017
[16] Correspondence between IAQ assessment based on survey and T, RH, CO2 monitoring
2017
[17] Indoor air quality of daycare centers in Seoul, Korea
Building and Environment, 2017
[18] Nanoparticle exposures from nano-enabled toner-based printing equipment and human health: state of science and future research needs
Geology Ecology and Landscapes, 2017
[19] IoT enabled proactive indoor air quality monitoring system for sustainable health management
2017
[20] Large eddy simulation of reactive pollutant dispersion: the analysis of physical and chemical interacting processes over idealized urban street canyons
2016
[21] Statistically significant differences of Carbon Dioxide and Carbon Monoxide emission in photocopying process
International Journal of Environmental and Ecological Engineering, 2016
[22] Assessment of the indoor air quality in copy centres at Aveiro, Portugal
Air Quality, Atmosphere & Health, 2016
[23] A hand-portable digital linear ion trap mass spectrometer
Analyst, 2016
[24] Study of the indoor decontamination using nanocoated woven polyester fabric
International Nano Letters, 2016
[25] Aldehydes, Acetone, Formic and Acetic Acids in Indoor Air of an Office Building
2016
[26] Novel aspects of pathogenesis and regeneration mechanisms in COPD
International journal of chronic obstructive pulmonary disease, 2015
[27] Indoor Decontamination Textiles by Photocatalytic Oxidation: A Review
Journal of Nanotechnology, 2015
[28] Indoor air quality at life and work environments in Rome, Italy
Environmental Science and Pollution Research, 2015
[29] A pilot study to evaluate VOCs outgassed in polymer filaments used in 3D printing
2014
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