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Liquid Chromatography

Determination of Polycyclic Aromatic Hydrocarbons (PAHs) and Sulfur, Nitrogen, and Oxygen Analogs in Fumes from Heated Asphalt by High-Performance Liquid Chromatography – Diode Array Detection (HPLC-DAD)

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Pages 1417-1433 | Received 05 Jul 2023, Accepted 16 Aug 2023, Published online: 23 Aug 2023

References

  • Achten, C., and J. Andersson. 2015. Overview of polycyclic aromatic compounds (PAC). Polycyclic Aromatic Compounds 35 (2-4):177–86. doi:10.1080/10406638.2014.994071.
  • Andersson, J., and C. Achten. 2015. Time to say goodbye to the 16 EPA PAHs? Toward an up-to-date use of pacs for environmental purposes. Polycyclic Aromatic Compounds 35 (2-4):330–54. doi:10.1080/10406638.2014.991042.
  • Autelitano, F., F. Bianchi, and F. Giuliani. 2017. Airborne emissions of asphalt/wax blends for warm mix asphalt production. Journal of Cleaner Production 164:749–56. doi:10.1016/j.jclepro.2017.06.247.
  • Barichello, M., D. Bohrer, C. Viana, L. Carvalho, and P. Nascimento. 2017. Determination of polycyclic aromatic hydrocarbons in commercial parenteral formulations and medications using high-performance liquid chromatography with diode array detection. Journal of AOAC International 100 (4):1070–6. doi:10.5740/jaoacint.16-0342.
  • Bleeker, E. A. J., S. Wiegman, P. De Voogt, M. Kraak, H. Leslie, E. Haas, and W. Admiraal. 2002. Toxicity of azaarenes. Reviews of Environmental Contamination and Toxicology 173:39–83.
  • Bojes, H. K., and P. G. Pope. 2007. Characterization of EPA’s 16 priority pollutant polycyclic aromatic hydrocarbons (PAHs) in tank bottom solids and associated contaminated soils at oil exploration and production sites in Texas. Regulatory Toxicology and Pharmacology : RTP 47 (3):288–95. doi:10.1016/j.yrtph.2006.11.007.
  • Borinelli, J., J. Blom, M. Portillo-Estrada, P. Kara De Maeijer, W. Van den Bergh, and C. Vuye. 2020. VOC emission analysis of bitumen using proton-transfer reaction time-of-flight mass spectrometry. Materials 13 (17):3659. doi:10.3390/ma13173659.
  • Brack, W., and K. Schirmer. 2003. Effect-directed identification of oxygen and sulfur heterocycles as major polycyclic aromatic cytochrome P4501A-inducers in a contaminated sediment. Environmental Science & Technology 37 (14):3062–70. doi:10.1021/es020248j.
  • Cargnin, R. S., P. C. do Nascimento, L. M. Ferraz, M. M. Barichello, L. C. Brudi, M. B. da Rosa, L. M. de Carvalho, D. B. do Nascimento, M. C. Cravo, and L. A. H. do Nascimento. 2020. Investigation of extraction and collection of polycyclic aromatic hydrocarbons from aqueous solutions at different temperatures. Polycyclic Aromatic Compounds 40 (1):40–9. doi:10.1080/10406638.2017.1353529.
  • Cargnin, R. S., F. R. Adolfo, P. C. do Nascimento, P. Schmidt, L. C. Brudi, L. M. de Carvalho, D. B. do Nascimento, M. C. C. Cravo, and L. A. H. do Nascimento. 2021. Collection of polycyclic aromatic sulfur heterocycles from asphalt fumes and quantification by an HPLC-DAD method. Analytical Methods : Advancing Methods and Applications 13 (29):3307–15. doi:10.1039/D1AY00429H.
  • Dang, C., T. Bannan, P. Shelley, M. Priestley, S. D. Worrall, J. Waters, H. Coe, C. J. Percival, and D. Topping. 2019. The effect of structure and isomerism on the vapor pressures of organic molecules and Its potential atmospheric relevance. Aerosol Science and Technology 53 (9):1040–55. doi:10.1080/02786826.2019.1628177.
  • Elovaara, E., J. Mikkola, M. Mäkelä, B. Paldanius, and E. Priha. 2006. Assessment of soil remediation workers’ exposure to polycyclic aromatic hydrocarbons (PAH): Biomonitoring of naphthols, phenanthrols, and 1-hydroxypyrene in urine. Toxicology Letters 162 (2-3):158–63. doi:10.1016/j.toxlet.2005.09.028.
  • European Commission. 2002. Commission decision 2002/657/EC of 12 August 2002 implementing Council Directive 96/23/EC concerning the performance of analytical methods and interpretation of results. Off J Eur Comm L 221:8–36.
  • Garcia-Alonso, S., and R. M. Perez-Pastor. 2020. Organic analysis of environmental samples using liquid chromatography with diode array and fluorescence detectors: An overview. Critical Reviews in Analytical Chemistry 50 (1):29–49. doi:10.1080/10408347.2019.1570461.
  • Gasthauer, E., M. Mazé, J. P. Marchand, and J. Amouroux. 2008. Characterization of asphalt fume composition by GC/MS and effect of temperature. Fuel 87 (7):1428–34. doi:10.1016/j.fuel.2007.06.025.
  • Germin-Aizac, J., A. Maitre, F. Balducci, S. Montlevier, M. Marques, J. Tribouiller, C. Demeilliers, and R. Persoons. 2023. Bitumen fumes and PAHs in asphalt road paving: Emission characteristics, determinants of exposure and environmental impact. Environmental Research 228:115824. doi:10.1016/j.envres.2023.115824.
  • Huang, M., and T. M. Penning. 2014. Processing contaminants: Polycyclic aromatic hydrocarbons (PAHs). Encyclopedia of Food Safety 2: 416–23. Waltham, USA: Academic Press. doi:10.1016/B978-0-12-378612-8.00212-2.
  • Hugener, M., L. Emmenegger, and P. Mattrel. 2007. Emissions of tar-containing binders: A laboratory study. Journal of Environmental Science and Health. Part A, Toxic/Hazardous Substances & Environmental Engineering 42 (3):241–7. doi:10.1080/10934520601131342.
  • Idowu, O., K. T. Semple, K. Ramadass, W. O'Connor, P. Hansbro, and P. Thavamani. 2019. Beyond the obvious: Environmental health implications of polar polycyclic aromatic hydrocarbons. Environment International 123:543–57. doi:10.1016/j.envint.2018.12.051.
  • Khare, P., J. Machesky, R. Soto, M. He, A. A. Presto, and D. R. Gentner. 2020. Asphalt-related emissions are a major missing nontraditional source of secondary organic aerosol precursors. Science Advances 6 (36):eabb9785. doi:10.1126/sciadv.abb9785.
  • Kitto, A. M., M. Pirbazari, B. N. Badriyha, V. Ravindran, R. Tyner, and C. E. Synolakis. 1997. Emissions of volatile and semi-volatile organic compounds and particulate matter from hot asphalts. Environmental Technology 18 (2):121–38. doi:10.1080/09593331808616520.
  • Krzyszczak, A., and B. Czech. 2021. Occurrence and toxicity of polycyclic aromatic hydrocarbons derivatives in environmental matrices. The Science of the Total Environment 788:147738. doi:10.1016/j.scitotenv.2021.147738.
  • Lange, C. R., and M. Stroup-Gardiner. 2007. Temperature-dependent chemical-specific emission rates of aromatics and polyaromatic hydrocarbons (PAHs) in bitumen fume. Journal of Occupational and Environmental Hygiene 4 (sup1):72–6. doi:10.1080/15459620701385279.
  • Lister, A. 2005. 7 Validation of HPLC methods in pharmaceutical analysis. Separation Science and Technology 6: 191–217. Waltham, USA: Academic Press. doi:10.1016/S0149-6395(05)80051-0.
  • Mahler, B. J., P. C. Van Metre, and W. T. Foreman. 2014. Concentrations of polycyclic aromatic hydrocarbons (PAHs) and azaarenes in runoff from coal-tar- and asphalt-sealcoated pavement. Environmental Pollution (Barking, Essex : 1987) 188:81–7. doi:10.1016/j.envpol.2014.01.008.
  • Martínez-Pérez-Cejuela, H., M. Guiñez, E. Simó-Alfonso, P. Amorós, J. Bennagi, and J. Herrero-Martínez. 2020. In situ growth of metal-organic framework HKUST-1 in an organic polymer as sorbent for nitrated and oxygenated polycyclic aromatic hydrocarbon in environmental water samples prior to quantitation by HPLC-UV. Microchimica Acta 187 (5):1–9. doi:10.1007/s00604-020-04265-z.
  • McCarthy, B. M., G. R. Blackburn, A. J. Kriech, J. T. Kurek, H. L. Wissel, and L. V. Osborn. 1999. Comparison of field- and laboratory-generated asphalt fumes. Transportation Research Record: Journal of the Transportation Research Board 1661 (1):54–9. doi:10.3141/1661-09.
  • Meyer, S., S. Cartellieri, and H. Steinhart. 1999. Simultaneous determination of PAHs, hetero-PAHs (N, S, O), and their degradation products in creosote-contaminated soils. Method development, validation, and application to hazardous waste sites. Analytical Chemistry 71 (18):4023–9. doi:10.1021/ac990136j.
  • Mo, S., Y. Wang, F. Xiong, and C. Ai. 2019. Effects of asphalt source and mixing temperature on the generated asphalt fumes. Journal of Hazardous Materials 371:342–51. doi:10.1016/j.jhazmat.2019.03.025.
  • Nowakowski, M., I. Rykowska, R. Wolski, and P. Andrzejewski. 2022. Polycyclic aromatic hydrocarbons (PAHs) and their derivatives (O-PAHs, N-PAHs, OH-PAHs): Determination in suspended particulate matter (SPM) – A review. Environmental Processes 9 (1):2. doi:10.1007/s40710-021-00555-7.
  • Porto, C. F., F. E. Pinto, L. M. Souza, N. C. Madeira, Á. C. Neto, S. M. de Menezes, L. S. Chinelatto, C. S. Freitas, B. G. Vaz, V. Lacerda, et al. 2019. Characterization of organosulfur compounds in asphalt cement samples by ESI(+)FT-ICR MS and 13C NMR spectroscopy. Fuel 256:115923. doi:10.1016/j.fuel.2019.115923.
  • Possebon, E., L. Specht, D. Pereira, L. Ferraz, P. Nascimento, and F. T. S. Aragão. 2019. PAHs emissions by 12 Brazilian bitumens: Procedure and results. Road Materials and Pavement Design 20 (6):1481–99. doi:10.1080/14680629.2018.1447502.
  • Reinke, G., M. Swanson, D. Paustenbach, and J. Beach. 2000. Chemical and mutagenic properties of asphalt fume condensates generated under laboratory and field conditions. Mutation Research 469 (1):41–50. doi:10.1016/S1383-5718(00)00068-1.
  • Shang, D., M. Kim, and M. Haberl. 2014. Rapid and sensitive method for the determination of polycyclic aromatic hydrocarbons in soils using pseudo multiple reaction monitoring gas chromatography/tandem mass spectrometry. Journal of Chromatography. A 1334:118–25. doi:10.1016/j.chroma.2014.01.074.
  • Srogi, K. 2007. Monitoring of environmental exposure to polycyclic aromatic hydrocarbons: A REVIEW. Environmental Chemistry Letters 5 (4):169–95. doi:10.1007/s10311-007-0095-0.
  • Sukhija, M., V. P. Wagh, and N. Saboo. 2021. Development of workability based approach for assessment of production temperatures of warm mix asphalt mixtures. Construction and Building Materials 305:124808. doi:10.1016/j.conbuildmat.2021.124808.
  • Toledo, M., F. M. Lanças, and E. Carrilho. 2007. Solid-phase extraction of nitro-PAH from aquatic samples and its separation by reverse-phase capillary liquid chromatography. Journal of the Brazilian Chemical Society 18 (5):1004–10. doi:10.1590/S0103-50532007000500019.
  • Wang, Z., X. Ma, G. Na, Z. Lin, Q. Ding, and Z. Yao. 2009. Correlations between physicochemical properties of PAHs and their distribution in soil, moss and reindeer dung at Ny-Ålesund of the arctic. Environmental Pollution (Barking, Essex : 1987) 157 (11):3132–6. doi:10.1016/j.envpol.2009.05.014.
  • Wilson, W., L. Sander, M. Lopez de Alda, M. Lee, and S. Wise. 2016. Retention behavior of isomeric polycyclic aromatic sulfur heterocycles in reversed-phase liquid chromatography. Journal of Chromatography. A 1461:107–19. doi:10.1016/j.chroma.2016.07.064.
  • World Health Organization, R.O. for Europe 2000. Air quality guidelines for europe. 2nd ed. Report No. 91. WHO Regional Publications, European Series; Copenhagen: World Health Organization. Regional Office for Europe. Accessed May 18, 2023. https://apps.who.int/iris/handle/10665/107335.
  • World Health Organization, R.O. for Europe 2021. Human health effects of polycyclic aromatic hydrocarbons as ambient air pollutants: Report of the Working Group on Polycyclic Aromatic Hydrocarbons of the Joint Task Force on the Health Aspects of Air Pollution. WHO Regional Publications, European Series; Copenhagen: World Health Organization. Regional Office for Europe. Accessed May 18, 2023. https://apps.who.int/iris/handle/10665/350636.
  • Xuya, P., L. Zhiyang, X. Fei, and Q. Shilin. 2011. Mechanism analysis of polymers on suppressing asphalt fumes. 2011 International Conference on Computer Distributed Control and Intelligent Environmental Monitoring: 889–893. doi:10.1109/CDCIEM.2011.307.
  • Yang, C., P. Lambert, M. Nguyen, Z. Yang, B. P. Hollebone, B. Fieldhouse, and C. E. Brown. 2020. Application of gas chromatography-high resolution quadrupole time-of-flight mass spectrometry in fingerprinting analysis of polycyclic aromatic sulfur heterocycles. Journal of Chromatography. A 1630:461577. doi:10.1016/j.chroma.2020.461577.
  • Yang, X., G. Wang, H. Rong, Y. Meng, X. Liu, Y. Liu, and C. Peng. 2022. Review of fume-generation mechanism, test methods, and fume suppressants of asphalt materials. Journal of Cleaner Production 347:131240. doi:10.1016/j.jclepro.2022.131240.
  • Yassaa, N., B. Y. Meklati, A. Cecinato, and F. Marino. 2001. Chemical characteristics of organic aerosol in bab-ezzouar (Algiers). Contribution of bituminous product manufacture. Chemosphere 45 (3):315–22. doi:10.1016/S0045-6535(00)00566-X.
  • Yu, H. 2002. Environmental carcinogenic polycyclic Aromatic hydrocarbons: photochemistry and phototoxicity. Journal of Environmental Science and Health. Part C, Environmental Carcinogenesis & Ecotoxicology Reviews 20 (2):149–83. doi:10.1081/GNC-120016203.
  • Zhang, Y., Y. Song, Y. J. Chen, Y. Chen, Y. Lu, R. Li, C. Dong, D. Hu, and Z. Cai. 2021. Discovery of emerging sulfur-containing PAHs in PM2.5: Contamination profiles and potential health risks. Journal of Hazardous Materials 416:125795. doi:10.1016/j.jhazmat.2021.125795.

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