Berset, J. D., Ejem, M., Holzer, R., and Lischer, P.: Comparison of different drying, extraction and detection techniques for the determination of priority polycyclic aromatic hydrocarbons in background contaminated soil samples, Anal. Chim. Acta., 383, 263–275, 1999.
Bucheli, T. D., Blum, F., Desaules, A., and Gustafsson Ö: Polycyclic aromatic hydrocarbons, black carbon, and molecular markers in soils of Switzerland, Chemosphere, 56, 1061–1076, 2004.
Budzinski, H., Jones, I., Bellocq, J., Pierard, C., and Garrigues, P. H.: Evaluation of sediment contamination by polycyclic aromatic hydrocarbons in the Gironde estuary, Mar. Chem., 58, 85–97, 1997.
Cachada, A., Pato, P., Rocha-Santos, T., da Silva, E. F., and Duarte, A. C.: Levels, sources and potential human health risks of organic pollutants in urban soils, Sci. Total. Environ., 430, 184–192, 2012.
CCME: Polycyclic aromatic hydrocarbons, Canadian soil quality guidelines for protection of environmental and human health, Canadian Council of Ministers of the Environment, available at: http://ceqg-rcqe.ccme.ca/en/index.html (last access: 20 September 2015), 2010.
Choi, H. G., Moon, H. B., Choi, M., Yu, J., and Kim, S. S.: Mussel watch program for organic contaminants along the Korean coast, 2001–2007, Environ. Monit. Assess., 169, 473–474, 2010.
Chung, N. and Alexander, M.: Differences in sequestration and bioavailability of organic compounds aged in dissimilar soils, Environ. Sci. Technol., 32, 855–860, 1998.
Dashko, R. E., Aleksandrova, O. U., Kotyukov, P. V., and Shidlovskaya, A. V.: Features of the engineering-geological conditions of St. Petersburg, Journal of Urban development and Geotechnical Engineering, 13, 25–71, 2011.
Duggan, M. and Strehlow, C. D.: Contaminants in Soil: Collation of Toxicological Data and Intake Values for Humans: Benzo[a]pyrene, Department for Environment, Food and Rural Affairs and the Environment Agency, London, 140 pp., 1995.
Essumang, D. K., Kowalski, K., and Sogaard, E. G.: Levels, distribution and source characterization of polycyclic aromatic hydrocarbons (PAHs) in topsoils and roadside soils in Esbjerg, Denmark, Bull. Environ. Contam. Toxicol., 86, 438–443, 2011.
Gabov, D. N., Beznosikov, V. A., Kondratenko, B. M., and Yakovleva, E. V.: Formation of polycyclic aromatic hydrocarbons in northern and middle taiga soils, Eurasian Soil Sci.+, 41, 1180–1188, 2008.
Gagarina, E. I., Rastvorova, O. G., Schastnaya, L. S., Kasatkina, G. A., Fedorova, N. N., Chukov, S. N., and Rusakov, A. V.: Soils of the Russian plain natural zones: a textbook, Publishing of the St. Petersburg State University, St. Petersburg, 120 pp., 2008.
Gorky, A. V. and Petrova, E. A.: Pollution of St. Petersburg with organic toxicants, Report of RGEC of FSUE “Urangeo” of the Ministry of Natural Resources of the Russian Federation, 21 pp., 2012
GOST 17.4.4.02-84: Nature protection. Soils. Methods for sampling and preparation of soils for chemical, bacteriological, helmintological analysis, Moscow, 8 pp., 1984 (in Russian).
Guo, W., He, M. C., Yang, Z. F., Zhang, H. Y., Lin, C. Y., and Tian, Z. J.: The distribution, sources and toxicity risks of polycyclic aromatic hydrocarbons and
n-alkanes in riverine and estuarine core sediments from Daliao River watershed, Environ. Earth. Sci., 68, 2015–2024, 2013.
HELCOM: BASE project 2012–2014: Preparation of biodiversity and hazardous substances indicators with targets that reflect good environmental status for HELCOM (including the HELCOM CORESET project) and improvement of Russian capacity to participate in operationalization of those indicators, http://helcom.fi/Lists/Publications/INDICATORS_Russian%20capacity%20to%20participate%20in%20operationalization%20of%20CORESET%20indicators.pdf (last access: June 2016), 2014.
Hwang, H. M., Wade, T. L., and Sericano, J. L.: Concentrations and source characterization of polycyclic aromatic hydrocarbons in pine needles from Korea, Mexico, and United States, Atmos Environ, 37, 2259–2267, 2003.
ISO 10381-1: Soil quality. Sampling. Part 1: Guidance on the design of sampling programmes, available at: http://docs.cntd.ru/document/1200074384 (last access: June 2016), 2002.
Liu, S., Xia, X., Yang, L., Shen, M., and Liu, R.: Polycyclic aromatic hydrocarbons in urban soils of different land uses in Beijing, China: distribution, sources and their correlation with the city's urbanization history, J. Hazard. Mater., 177, 1085–1092, 2010.
Lodygin, E. D., Chukov, S. N., Beznosikov, V. A., and Gabov, D. N.: Polycyclic aromatic hydrocarbons in soils of Vasilievsky Island (St. Petersburg), Eurasian Soil Sci+., 41, 1321–1326, 2008.
Mackay, D. and Hickie, B.: Mass balance model of source apportionment, transport 482 and fate of PAHs in Lac Saint Louis, Quebec, Chemosphere, 41, 681–692, 2000.
Marr, L. C., Kirchstetter, T. W., Harley, R. A., Miguel, A. H., Hering, S. V., and Hammond, S. K.: Characterization of polycyclic aromatic hydrocarbons in motor vehicle fuels and exhaust emissions, Environ. Sci. Technol., 33, 3091–3099, 1999.
Michéli, E., Schad, P., Spaargaren, O., Dent, D., and Nachtergaele, F.: World reference base for soil resources: 2006: a framework for international classification, correlation and communication (FAO), IUSS Working Group WRB, World reference base for soil resources, World Soil Resources Reports No. 103, FAO, Rome, 143 pp., 2006.
Mielke, H. W., Wang, G., Gonzales, C. R., Le, B., Quach, V. N., and Mielke, P. W.: PAH and metal mixtures in New Orleans soils and sediments, Sci. Total Environ., 281, 217–227, 2001
Morillo, E., Romero, A. S., Maqueda, C., Madrid, L., Ajmone-Marsan, F., Grcman, H., and Villaverde, J: Soil pollution by PAHs in urban soils: a comparison of three European cities, J. Environ. Monit., 9, 1001–1008, 2007.
Nadal, M., Schuhmacher, M., and Domingo, J. L.: Levels of PAHs in soil and vegetation samples from Tarragona County, Spain, Environ. Pollut., 132, 1–11, 2004.
Nisbet, I. C. and LaGoy, P. K.: Toxic equivalency factors (TEFs) for polycyclic aromatic hydrocarbons (PAHs), Regul. Toxicol. Pharmacol., 16, 290–300, 1992.
Pandey, P. K., Patel, K. S., and Lenicek, J., Polycyclic aromatic hydrocarbons: need for assessment of health risks in India, Study of an urban-industrial location in India, Environ. Monit. Assess., 59, 287–319, 1999.
PND F 16.1:2:2.2:3.62-09: Quantitative chemical analysis of soil. Methods of measurement of the mass fraction of polycyclic aromatic hydrocarbons in soil, sediments, sewage sludge and industrial wastes by HPLC, Moscow, Russia. 23 pp., 2009 (in Russian).
Prahl, F. G. and Carpenter, R.: Polycyclic aromatic hydrocarbon (PAH)-phase associations in Washington coastal sediment, Geochim. Cosmochim. Ac., 47, 1013–1023, 1983.
Rehwagen, M., Müller, A., Massolo, L., Herbarth, O., and Ronco, A.: Polycyclic aromatic hydrocarbons associated with particles in ambient air from urban and industrial areas, Sci. Total Environ., 348, 199–210, 2005.
Rusakov, A. V., Sedov, S. N., and Ivanova, K. A.: Micromorphological characterization of buried paleosols of the historic center. Proceedings of the scientific conference: Ecology of St. Petersburg and its surroundings, Publishing of the St. Petersburg State University, St. Petersburg, Russia, 80–82, 2005 (in Russian).
Shamilishvily, G., Abakumov, E., and Gabov, D.: Polycyclic aromatic hydrocarbon in urban soils of an Eastern European megalopolis: distribution, source identification and cancer risk evaluation, available at: https://drive.google. com/open?id=18UCcZNp0_qzXHpXsW-O3jKYqPidiozbX, last access: 8 May 2018.
Shishov, L. L., Tonkonogov, V. D., Lebedeva, I. I., and Gerasimova, M. I: Classification and diagnostics of Russian soils, Oikumena, Smolensk, 56, 2004.
Tang, L., Tang, X. Y., Zhu, Y. G., Zheng, M. H., and Miao, Q. L.: Contamination of polycyclic aromatic hydrocarbons (PAHs) in urban soils in Beijing, China, Environ. Int., 31, 822–828, 2005.
Trapido, M.: Polycyclic aromatic hydrocarbons in Estonian soil: contamination and profiles, Environ. Pollut., 105, 67–74, 1999.
US EPA: Provisional Guidance for Quantitative Risk Assessment of PAH, National Service Center for Environmental Publications (NSCEP) of the US Environmental Protection Agency, Washington DC: Office of Health and Environmental Assessment, available at: http://nepis.epa.gov/Exe/ZyPURL.cgi?Dockey=30002TUA.txt (last access: 20 April 2015, 1993.
US EPA Method 8310: Polynuclear Aromatic Hydrocarbons, in: Test Methods for Evaluating Solid Waste, Physical/Chemical Methods; Third Edition; Final Update 3-A, National Service Center for Environmental Publications (NSCEP) of the US Environmental Protection Agency, Washington DC: Office of Health and Environmental Assessment, Revision 0, available at: http://nepis.epa.gov/Exe/ZyPURL.cgi?Dockey=50000U6E.txt (last access: 20 April 2015), 1996a.
US EPA Method 3550b: Ultrasonic extraction, in: Test Methods for Evaluating Solid Waste, Physical/Chemical Methods; Third Edition; Final Update 3-A, National Service Center for Environmental Publications (NSCEP) of the US Environmental Protection Agency, Washington DC: Office of Health and Environmental Assessment, Revision 2, availabel at: http://nepis.epa.gov/Exe/ZyPURL.cgi?Dockey=50000U6E.txt (last access: 20 April 2015), 1996b.
US EPA Method 3630c: Silica Gel Cleanup, in: Test Methods for Evaluating Solid Waste, Physical/Chemical Methods; Third Edition; Final Update 3-A, National Service Center for Environmental Publications (NSCEP) of the US Environmental Protection Agency, Washington DC: Office of Health and Environmental Assessment, Revision 3, available at: http://www3.epa.gov/epawaste/hazard/testmethods/sw846/pdfs/3630c.pdf (last access: 20 April 2015), 1996c.
US EPA: Polycyclic Organic Matter, in: US EPA official web site, US Environmental Protection Agency, Washington DC: Office of Health and Environmental Assessment, available at: http://www3.epa.gov/ttn/atw//hlthef/polycycl.html (last access: 30 August 2015), 2002.
US EPA: Guidance for Conducting Health Risk Assessment of Chemical Mixtures, in: Risk Assessment Forum Technical Panel Report (External Scientific Peer Review Draft), National Center for Environmental Assessment (NCEA) of the US Environmental Protection Agency, available at: http://cfpub.epa.gov/si/si_public_file_download.cfm?p_download_id=36583. (last access: 10 September 2015), 1999.
US EPA: Risk assessment guidance for Superfund: volume III–part A, process for conducting probabilistic risk assessment, EPA 540-R-02-002, US Environmental Protection Agency (US EPA), Washington, DC, 35 pp., 2001.
US EPA (U.S. Environmental Protection Agency): Risk Assessment Guidance for Superfund: Volume Ihuman health evaluation manual (part E, supplemental guidance for dermal risk assessment), EPA/540/R/99/005, Office of Superfund Remediation and Technology Innovation, Washington, DC, 41 pp., 2004.
Verbruggen, E. M. J., Posthumus, R., and Van Wezel, A. P.: Ecotoxicological Serious Risk Concentrations for soil, sediment and (ground) water: updated proposals for first series of compounds, in: RIVM report 711701 20, National Institute of Public Health and the Environment, the Netherlands, available at: http://www.pbl.nl/sites/default/files/cms/publicaties/711701020.pdf (last access: 10 September 2015), 2001.
Wang, X. T., Miao, Y., Zhang, Y., Li, Y. C., Wu, M. H., and Yu, G.: Polycyclic aromatic hydrocarbons (PAHs) in urban soils of the megacity Shanghai: occurrence, source apportionment and potential human health risk, Sci. Total. Environ., 447, 80–89, 2013.
Wang, C., Wu, S., Zhou, S., Wang, H., Li, B., Chen, H, and Shi, Y. : Polycyclic aromatic hydrocarbons in soils from urban to rural areas in Nanjing: concentration, source, spatial distribution, and potential human health risk, Sci. Tot. Environ., 527, 375–383, 2015.
Wang, C., Wu, S., Zhou, S., Shi, Y, and Song, J..: Characteristics and Source Identification of Polycyclic Aromatic Hydrocarbons (PAHs) in Urban Soils: A Review, Pedosphere, 27, 17–26, 2017.
Weiss, P., Riss, A., Gschmeidler, E., and Schentz, H.: Investigation of heavy metal, PAH, PCB patterns and PCDD/F profiles of soil samples from an industrialized urban area (Linz, Upper Austria) with multivariate statistical methods, Chemosphere, 29, 2223–2236, 1994.
Wilcke, W.: Synopsis polycyclic aromatic hydrocarbons (PAHs) in soil – a review, J. Plant. Nutr. Soil. Sci., 163, 229–248, 2000.
Wild, S. R. and Jones, K. C.: Polynuclear aromatic hydrocarbons in the United Kingdom environment: a preliminary source inventory and budget, Environ. Pollut., 88, 91–108, 1995.
Yang, H. H., Lai, S. O., Hsieh, L. T., Hsueh, H. J., and Chi, T. W.: Profiles of PAH emission from steel and iron industries, Chemosphere, 48, 1061–1074, 2002.
Yu, H.: Environmental carcinogenic polycyclic aromatic hydrocarbons: photochemistry and phototoxicity, J. Environ. Sci. Heal. C., 20, 149–183, 2002.
Yunker, M. B., Macdonald, R. W., Vingarzan, R., Mitchell, R. H,. Goyette, D., and Sylvestre, S.: PAHs in the Fraser River basin: a critical appraisal of PAH ratios as indicators of PAH source and composition, Org. Geochem., 33, 489–515, 2002.