Measurement of particulate phase polycyclic aromatic hydrocarbon (PAHs) around a petroleum refinery

Pasupuleti Sreenivasa Rao1, Manzoor Ansari2, P. Pipalatkar2, Animesh Kumar2, P. Nema2, S. Devotta2
1National Environmental Engineering Research Institute (NEERI),
2Air Pollution Control Division, National Environmental Engineering Research Institute (NEERI), Nagpur, India

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Allen, I. O., Dookerman, N. M., Taghizadeh, K., Lafleur, A. L., Smith, K. A., Sarofine, A. F. (1997). Measurement of oxygenated polycyclic aromatic hydrocarbons associated with size — segregated urban aerosol. Environmental Science & Technology, 31, 2064–2070.

Baek, S. O., Goldstone, M. E., Kirk, P. W. W., Lester, J. N., Perry, R. (1992). Concentration of particulate and gaseous polycyclic aromatic hydrocarbons in London air following reduction in lead content of petrol in the United Kingdom. The Science of Total Environment, 111, 169–199.

Baek, S. O., Goldstone, M. E., Kirk, P. W. W., Lester, J. N., Perry, R. (1991). Phase distribution and particle size dependency of polycyclic aromatic hydrocarbons in the urban atmosphere. Chemosphere, 22(5–6), 503–520.

Chen, S. J., Hsieh, L. T., Chiu, S. C. (2003). Characterstics of PAHs emissions the incinerator of livestock wastes with/ without APCD. Environment International, 28, 659–668.

Council of Medical Research (1996). National Cancer Registry Project, cancer, morbidity and mortality in Bombay Cancer Registry.

Central Pollution Control Board (2003). Polycyclic aromatic hydrocarbons (PAHs) in air and their effects on human health. http://www.cpcb.nic.in/ph/ch21103.htm

Larsen, R. K., Baker, J. E. (2003). Source apportionment of polycyclic aromatic hydrocarbons in the urban atmosphere: A comparison of three methods. Environmental Science & Technology, 32, 450–455.

Li, A., Jang, J. K., Scheff, P. A. (2003). Application of EPA CMB 8.2 model for source apportionment of sediment PAHs in Lake Calumet, Chicago. Environmental Science and Technology, 37, 2958–2965.

Manuel, J. A., Phadke, K. M., & Kumar, A. (2004). Soluble organic fraction and Benzo (a) pyrene in particulate matter at kerbside and ambient air. Chemical and Environmental Research, 13, 227–231.

Miguel, A. H., Krichstetter, H. R. A. (1998). On road emission of particulate polycyclic aromatic hydrocarbons and black carbon from gasoline and diesel vehicles. Environmental Science and Technology, 32, 450–455.

NEERI, (1991-2005). Ambient air quality status for ten cities of India. Report.

Ohura, T., Amagai, T., Fusaya, M., Matsuhita, H. (2004). Polycyclic aromatic hydrocarbons in indoor and out door environs and factors affecting their concentrations. Environmental Science and Technology, 32, 450–455.

Soclo, H. H., Garrigues, P., Ewald, M. (2000). Origin of polycyclic aromatic hydrocarbons (PAHs) in coastal marine sediments: Case studies in Cotonou (Benin) and Aquitaine (France) areas. Marine Pollution Bulletin, 40, 387–396.

Thorsen, W. A., Cope, W. G., Shea, D. (2004). Bioavailability of PAHs of soot carbon and PAH source. Environmental Science and Technology, 38, 2029–2037.

U.S. EPA, (1974). Waste oil study, report to the congress, authorized by Section 104(m), P.L. 92-500, U.S. EPA, Washington, D.C., PB257-693, April (1974).

Vo-Dinh, T. (1989). Chemical analysis of polycyclic aromatic compounds. Chapter 1. New York: Wiley.

Wagrowaski, D. M., Hites, R. (1997). Polycyclic aromatic hydrocarbons accumulation in urban, suburban & rural vegetation. Environmental Science and Technology, 31, 279–282.

WHO, (1987) Air quality guidelines for Europe, European Series No. 23. Regional publication. Copenhagen: Regional Office of Europe, World Health Organization.

Yamasaki, H., Kuwaia, K., & Miyamota, H. (1982). Effects of ambient temperature on aspect of airborne polycyclic aromatic hydrocarbons. Environmental Science and Technology, 16, 189–194.