Occupational exposure and personal exposure to hazardous air pollutants in underground metro stations and factors causing poor indoor air quality

Author:

Passi Amit,Nagendra S. M. Shiva,Maiya M. P.

Publisher

Springer Science and Business Media LLC

Subject

Health, Toxicology and Mutagenesis,Management, Monitoring, Policy and Law,Atmospheric Science,Pollution

Reference64 articles.

1. Aarnio P, Yli-Tuomi T, Kousa A, Mäkelä T, Hirsikko A, Hämeri K, Räisänen M, Hillamo R, Koskentalo T, Jantunen M (2005) The concentrations and composition of and exposure to fine particles (PM2.5) in the Helsinki subway system. Atmos Environ 39:5059–5066. https://doi.org/10.1016/j.atmosenv.2005.05.012

2. Abadie MO, Le Nir G, Nicolle J, Honore C, Blondeau P, Kauffman A (2014) Indoor air quality in metro systems: a survey. In 13th International Conference on Indoor Air Quality and Climate Indoor Air, Hong Kong, 7–12 July 2014; 691–698

3. ACGIH (1989) Step two: On-site investigation. Guidelines for the assessment of bioaerosols in the indoor environment. Cincinati, OH: American Conference of Governmental Industrial Hygienists. https://books.google.co.in/books?id=ZXAVNQAACAAJ

4. Andualem Z, Gizaw Z, Bogale L, Dagne H (2019) Indoor bacterial load and its correlation to physical indoor air quality parameters in public primary schools. Multidiscip Respir Med 14:2. https://doi.org/10.1186/s40248-018-0167-y

5. ASHRAE 55 (2010) ASHRAE Standard. Thermal environmental conditions for human occupancy. ANSI 1041–2336. http://www.ashrae.org

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