REFERENCES

1. Bouloubassi I, Roussiez V, Azzoug M, et al. Sources, dispersal pathways and mass budget of sedimentary polycyclic aromatic hydrocarbons (PAH) in the NW Mediterranean margin, Gulf of Lions. Mar Chem 20121;142-144:18-28.

2. Bragato M, Joshi K, Carlson JB, Tenório JA, Levendis YA. Combustion of coal, bagasse and blends thereof. Fuel 2012;96:51-8.

3. Davis E, Walker TR, Adams M, Willis R, Norris GA, Henry RC. Source apportionment of polycyclic aromatic hydrocarbons (PAHs) in small craft harbor (SCH) surficial sediments in Nova Scotia, Canada. Sci Total Environ 2019;691:528-37.

4. Yunker MB, Macdonald RW, Vingarzan R, Mitchell RH, Goyette D, Sylvestre S. PAHs in the Fraser River basin: a critical appraisal of PAH ratios as indicators of PAH source and composition. Org Geochem 2002;33:489-515.

5. Jiang JJ, Lee CL, Fang MD, Liu JT. Polycyclic aromatic hydrocarbons in coastal sediments of southwest Taiwan: an appraisal of diagnostic ratios in source recognition. Mar Pollut Bull 2009;58:752-60.

6. Tongo I, Ezemonye L, Akpeh K. Distribution, characterization, and human health risk assessment of polycyclic aromatic hydrocarbons (PAHs) in Ovia River, Southern Nigeria. Environ Monit Assess 2017;189:247.

7. Awe AA, Opeolu BO, Olatunji O, et al. Occurrence and probabilistic risk assessment of PAHs in water and sediment samples of the Diep River, South Africa. Heliyon 2020;6:e04306.

8. Choochuay C, Pongpiachan S, Tipmanee D, et al. Impacts of PM2.5 sources on variations in particulate chemical compounds in ambient air of Bangkok, Thailand. Atmospheric Pollut Res 2020;11:1657-67.

9. Deelaman W, Pongpiachan S, Tipmanee D, et al. Source apportionment of polycyclic aromatic hydrocarbons in the terrestrial soils of King George Island, Antarctica. J South Am Earth Sci 2020;104:102832.

10. Mittal AK, Van Grieken R. Health risk assessment of urban suspended particulate matter with special reference to polycyclic aromatic hydrocarbons: a review. Rev Environ Health 2001;16:169-89.

11. Ravindra K, Sokhi R, Vangrieken R. Atmospheric polycyclic aromatic hydrocarbons: source attribution, emission factors and regulation. Atmospheric Environ 2008;42:2895-921.

12. Dumanoglu Y, Gaga EO, Gungormus E, Sofuoglu SC, Odabasi M. Spatial and seasonal variations, sources, air-soil exchange, and carcinogenic risk assessment for PAHs and PCBs in air and soil of Kutahya, Turkey, the province of thermal power plants. Sci Total Environ 2017;580:920-35.

13. Zhi H, Zhao Z, Zhang L. The fate of polycyclic aromatic hydrocarbons (PAHs) and organochlorine pesticides (OCPs) in water from Poyang Lake, the largest freshwater lake in China. Chemosphere 2015;119:1134-40.

14. Pongpiachan S. Application of cloud point extraction for the determination of pyrene in natural water. Southeast Asian journal of tropical medicine and public health 2009;40:392-400.

15. Pongpiachan S, Tipmanee D, Deelaman W, Muprasit J, Feldens P, Schwarzer K. Risk assessment of the presence of polycyclic aromatic hydrocarbons (PAHs) in coastal areas of Thailand affected by the 2004 tsunami. Mar Pollut Bull 2013;76:370-8.

16. Guzzella L, De Paolis A. Polycyclic aromatic hydrocarbons in sediments of the Adriatic Sea. Mar Pollut Bull 1994;28:159-65.

17. Han Y, Bandowe BAM, Schneider T, et al. A 150-year record of black carbon (soot and char) and polycyclic aromatic compounds deposition in Lake Phayao, north Thailand. Environ Pollut 2021;269:116148.

18. EPRI. Literature review of background polycyclic aromatic hydrocarbons. Available from: https://www.epri.com/research/products/TR-114755 [Last accessed on 9 Dec 2022].

19. Dong J, Li F, Xie K. Study on the source of polycyclic aromatic hydrocarbons (PAHs) during coal pyrolysis by PY-GC-MS. J Hazard Mater 2012;243:80-5.

20. Rinawati, Koike T, Koike H, et al. Distribution, source identification, and historical trends of organic micropollutants in coastal sediment in Jakarta Bay, Indonesia. J Hazard Mater 2012;217-218:208-16.

21. Tehrani GM, Hashim R, Sulaiman AH, et al. Distribution of total petroleum hydrocarbons and polycyclic aromatic hy-drocarbons in Musa Bay sediments (northwest of the Persian Gulf). ENVIRON PROT ENG 2013:39.

22. Yuan B, Brüchert V, Sobek A, de Wit CA. Temporal trends of C8-C36 chlorinated paraffins in Swedish coastal sediment cores over the past 80 years. Environ Sci Technol 2017;51:14199-208.

23. Levin W, Wood AW, Wislocki PG, et al. Carcinogenicity of Benzo-Ring Derivatives of Benzo(a)pyrene on Mouse Skin. Cancer Research 1977;37:3356-61.

24. Sayer JM, H Yagi, Wood AW, et al. Extremely facile reaction between the ultimate carcinogen benzo(a)pyrene-7,8-diol 9,10-epoxide and ellagic acid. J Am Chem. Soc 1982;104:5562-64.

25. Audere AK, Lindberg ZY, Smirnov GA, Shabad LM. Experiences in the study on the effect of an airport situated within the city limits on the level of environmental contamination with benz(a)pyrene. Gig Sanit 1973;38:90-2.

26. Falk HL, Markul I, Kotin P. Aromatic hydro carbons. IV. Their fate following emission into atmosphere and experimental exposure to washed air and synthetic smog. Arch Ind Health 1956;13:13-7. Available from: https://www.cabdirect.org/cabdirect/abstract/19562701970 [Last accessed on 9 Dec 2022]

27. Wang D, Ma J, Li H, Zhang X. Concentration and potential ecological risk of PAHs in different layers of soil in the petroleum-contaminated areas of the loess plateau, China. Int J Environ Res Public Health 2018;15:1785.

28. Choochuay C, Pongpiachan S, Tipmanee D, et al. Effects of agricultural waste burning on pm2.5-bound polycyclic aromatic hydrocarbons, carbonaceous compositions, and water-soluble ionic species in the ambient air of Chiang-Mai, Thailand. Polycycl Aromat Compd 2022;42:749-70.

29. Chompoorat T, Thepumong T, Taesinlapachai S, Likitlersuang S. Repurposing of stabilised dredged lakebed sediment in road base construction. J Soils Sediments 2021;21:2719-30.

30. Deelaman W, Pongpiachan S, Tipmanee D, et al. Ecotoxicological risk and health risk characterization of polycyclic aromatic hydrocarbons (PAHs) in terrestrial soils of King George Island, Antarctica. Polar Science 2021;29:100715.

31. Sun Y, Zhang S, Xie Z, et al. Characteristics and ecological risk assessment of polycyclic aromatic hydrocarbons in soil seepage water in karst terrains, southwest China. Ecotoxicol Environ Saf 2020;190:110122.

32. Kalf DF, Crommentuijn T, van de Plassche EJ. Environmental quality objectives for 10 polycyclic aromatic hydrocarbons (PAHs). Ecotoxicol Environ Saf 1997;36:89-97.

33. Cao Z, Liu J, Luan Y, et al. Distribution and ecosystem risk assessment of polycyclic aromatic hydrocarbons in the Luan River, China. Ecotoxicology 2010;19:827-37.

34. USEPA. Risk assessment guidance for superfund, volume 1, human health evaluation manual (Part B, Development of Risk-Based Preliminary Remediation Goals). Available from: https://semspub.epa.gov/work/HQ/192.pdf [Last accessed on 9 Dec 2022].

35. Wang J, Zhang X, Ling W, et al. Contamination and health risk assessment of PAHs in soils and crops in industrial areas of the Yangtze River Delta region, China. Chemosphere 2017;168:976-87.

36. Yang W, Lang Y, Li G. Cancer risk of polycyclic aromatic hydrocarbons (PAHs) in the soils from Jiaozhou Bay wetland. Chemosphere 2014; 112:289-295.

37. USEPA. Exposure Factors Handbook. 2011 edition. Final report. Environmental Protection Agency, Washington, DC EPA/600/R-09/052F. Available from: https://www.nrc.gov/docs/ML1400/ML14007A666.pdf [Last accessed on 9 Dec 2022].

38. Mihankhah T, Saeedi M, Karbassi A. Contamination and cancer risk assessment of polycyclic aromatic hydrocarbons (PAHs) in urban dust from different land-uses in the most populated city of Iran. Ecotoxicol Environ Saf 2020;187:109838.

39. USEPA. Human health evaluation manual, supplemental guidance: update of standard default exposure factors. 2014; OSWER Directive 9200, 1-120. Available from: https://www.epa.gov/sites/default/files/2015-11/documents/oswer_directive_9200.1-120_exposurefactors_corrected2.pdf [Last accessed on 9 Dec 2022].

40. Abdel-shafy HI, Mansour MS. A review on polycyclic aromatic hydrocarbons: source, environmental impact, effect on human health and remediation. Egypt J Pet 2016;25:107-23.

41. Baumard P, Budzinski H, Garrigues P. Polycyclic aromatic hydrocarbons in sediments and mussels of the western Mediterranean sea. Environ Toxicol Chem 1998;17:765-76.

42. Tepe Y, Taştekin Ö. Spatiotemporal PAH levels in the coastal sediment of Samsun, a Metropolis between Turkey's two largest deltas. Mar Pollut Bull 2022;181:113907.

43. Dong L, Lin L, He J, et al. PAHs in the surface water and sediments of the middle and lower reaches of the Han River, China: occurrence, source, and probabilistic risk assessment. Process Saf Environ 2022;164:208-18.

44. Tepe Y, Aydın H, Ustaoğlu F, et al. Seasonal distribution and risk assessment of polycyclic aromatic hydrocarbons (PAHs) in surface sediments from the Giresun coast of southeastern Black Sea. Mar Pollut Bull 2022;178:113585.

45. Zafarani GG, Karbalaei S, Golshani R, Pustokhina I, Walker TR. Baseline occurrence, distribution and sources of PAHs, TPH, and OCPs in surface sediments in Gorgan Bay, Iran. Mar Pollut Bull 2022;175:113346.

46. Iwegbue CMA, Bebenimibo E, Obi G, et al. Distribution and sources of n-alkanes and polycyclic aromatic hydrocarbons in sediments around oil production facilities in the Escravos River Basin, Niger Delta, Nigeria. Arch Environ Contam Toxicol 2021;80:474-89.

47. Wang YS, Wu FX, Gu YG, Huang HH, Gong XY, Liao XL. Polycyclic aromatic hydrocarbons (PAHs) in the intertidal sediments of Pearl River Estuary: characterization, source diagnostics, and ecological risk assessment. Mar Pollut Bull 2021;173:113140.

48. Vaezzadeh V, Yi X, Rais F. R, et al. Distribution of black carbon and PAHs in sediments of peninsular Malaysia. Mar Pollut Bull 2021; 172:112871.

49. Yang ZY, Shah K, Laforest S, et al. Occurrence, characterization, and ecological assessment of petroleum-related hydrocarbons in intertidal marine sediments of Burrard Inlet, Vancouver, British Columbia, Canada. Mar Pollut Bull 2020;157:111304.

50. Chen F, Lin Y, Cai M, et al. Occurrence and risk assessment of PAHs in surface sediments from western arctic and subarctic oceans. Int J Environ Res Public Health 2018;15:734.

51. Edokpayi J, Odiyo J, Popoola O, Msagati T. Assessment of trace metals contamination of surface water and sediment: a case study of Mvudi River, South Africa. Sustainability 2016;8:135.

52. Dudhagara DR, Rajpara RK, Bhatt JK, Gosai HB, Sachaniya BK, Dave BP. Distribution, sources and ecological risk assessment of PAHs in historically contaminated surface sediments at Bhavnagar coast, Gujarat, India. Environ Pollut 2016;213:338-46.

53. Maliszewska-kordybach B. Polycyclic aromatic hydrocarbons in agricultural soils in Poland: preliminary proposals for criteria to evaluate the level of soil contamination. Applied Geochemistry 1996;11:121-7.

54. Canadian Council of Ministers of the Environment (CCME). Canadian soil quality guidelines for the protection of environmental and human health. 2007; Dioxins and Furans. Available from: https://ccme.ca/en/resources/sediment [Last accessed on 9 Dec 2022].

55. Tarafdar A, Sinha A. Cancer Risk Assessment of polycyclic aromatic hydrocarbons in the soils and sediments of India: a meta-analysis. Environ Manage 2017;60:784-95.

56. Kim SJ, Park MK, Lee SE, et al. Impact of traffic volumes on levels, patterns, and toxicity of polycyclic aromatic hydrocarbons in roadside soils. Environ Sci Process Impacts 2019;21:174-82.

57. Shi R, Li X, Yang Y, Fan Y, Zhao Z. Contamination and human health risks of polycyclic aromatic hydrocarbons in surface soils from Tianjin coastal new region, China. Environ Pollut 2021;268:115938.

58. Srivastava P, Sreekrishnan TR, Nema AK. Human health risk assessment and PAHs in a stretch of river Ganges near Kanpur. Environ Monit Assess 2017;189:445.

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