References
- E. Gracia-Lor, S. Castiglioni, R. Bade, F. Been, E. Castrignanò,
A. Covaci, I. González-Mariño, E. Hapeshi, B. Kasprzyk-Hordern, J. Kinyua, F.Y. Lai, T. Letzel, L. Lopardo, M.R. Meyer,
J. O’Brien, P. Ramin, N.I. Rousis, A. Rydevik, L. Bijlsma,
Measuring biomarkers in wastewater as a new source
of epidemiological information: current state and future
perspectives, Environ. Int., 99 (2017) 131–150.
- K.V. Thomas, M.J. Reid, What else can the analysis of sewage
for urinary biomarkers reveal about communities?, Environ.
Sci. Technol., 45 (2011) 7611–7612.
- I. Senta, S. Rodríguez-Mozaz, L. Corominas, M. Petrovic,
Wastewater-based epidemiology to assess human exposure to
personal care and household products – a review of biomarkers,
analytical methods, and applications, Trends Environ.
Anal. Chem., 28 (2020) e00103, doi: 10.1016/j.teac.2020.e00103.
- C. Markosian, N. Mirzoyan, Wastewater-based epidemiology
as a novel assessment approach for population-level metal
exposure, Sci. Total Environ., 689 (2019) 1125–1132.
- J. Jacob, A. Seidel, Biomonitoring of polycyclic aromatic
hydrocarbons in human urine, J. Chromatogr. B, 778 (2002)
31–47.
- K. Styszko, K. Szramowiat, M. Kistler, A.K. Giebl, S. Socha,
E.E. Rosenberg, J. Gołaś, Polycyclic aromatic hydrocarbons
and their nitrated derivatives associated with PM10 from
Kraków city during heating season, E3S Web Conf., 10 (2016)
00091 (1–7), doi: 10.1051/e3sconf/20161000091.
- J.Z. Buha-Marković, A.D. Marinković, S.Đ. Nemoda, J.Z. Savić,
Distribution of PAHs in coal ashes from the thermal power
plant and fluidized bed combustion system; estimation
of environmental risk of ash disposal, Environ. Pollut.,
266 (2020) 115282, doi: 10.1016/j.envpol.2020.115282.
- K. Ravindra, R. Sokhi, R. Van Grieken, Atmospheric polycyclic
aromatic hydrocarbons: source attribution, emission factors
and regulation, Atmos. Environ., 42 (2008) 2895–2921.
- M.S. Kubiak, Wielopierścieniowe węglowodory aromatyczne
(WWA) – ich występowanie w środowisku i w żywności, 2013.
- R. Akhbarizadeh, S. Dobaradaran, M.A. Torkmahalleh,
R. Saeedi, R. Aibaghi, F.F. Ghasemia, Suspended fine particulate
matter (PM2.5), microplastics (MPs), and polycyclic aromatic
hydrocarbons (PAHs) in air: their possible relationships
and health implications, Environ. Res., 192 (2021) 110339,
doi: 10.1016/j.envres.2020.110339.
- D. Sharma, S. Jain, Carcinogenic risk from exposure to PM2.5
bound polycyclic aromatic hydrocarbons in rural settings,
Ecotoxicol. Environ. Saf., 190 (2020) 110135, doi: 10.1016/j.
ecoenv.2019.110135.
- S. Nandar Kumar, P. Verma, B. Bastia, A. Kumar Jain, Health
risk assessment of polycyclic aromatic hydrocarbons:
a review, J. Pathol. Toxicol., 1 (2014) 16–30.
- G. Castaño-Vinyals, A. D’Errico, N. Malats, M. Kogevinas,
Biomarkers of exposure to polycyclic aromatic hydrocarbons
from environmental air pollution, Occup. Environ. Med.,
61 (2004) 1–10, doi: 10.1136/oem.2003.008375.
- G. Pojana, A. Marcomini, Determination of monohydroxylated
metabolites of polycyclic aromatic hydrocarbons (OH-PAHs)
from wastewater-treatment plants, Int. J. Environ. Anal. Chem.,
87 (2007) 627–636.
- S.S. Franco, A.C. Nardocci, W.M.R. Günther, PAH biomarkers
for human health risk assessment: a review of the state-ofthe-
art, Cad Saude Publica, 24 (2008) 569–580.
- A.-K. McCall, R. Bade, J. Kinyua, F.Y. Lai, P.K. Thai, A. Covaci,
L. Bijlsma, A.L.N. van Nuijs, C. Ort, Critical review on the
stability of illicit drugs in sewers and wastewater samples,
Water Res., 88 (2016) 933–947.
- J.-A.E. Cavanagh, L. Brown, K. Trought, S. Kingham, M.J. Epton,
Elevated concentrations of 1-hydroxypyrene in schoolchildren
during winter in Christchurch, New Zealand, Sci. Total
Environ., 374 (2007) 51–59.
- Å.M. Hansen, L. Mathiesen, M. Pedersen, L.E. Knudsen, Urinary
1-hydroxypyrene (1-HP) in environmental and occupational
studies—a review, Int. J. Hyg. Environ. Health, 211 (2008)
471–503.
- T. Chetiyanukornkul, A. Toriba, T. Kameda, N. Tang,
K. Hayakawa, Simultaneous determination of urinary
hydroxylated metabolites of naphthalene, fluorene, phenanthrene,
fluoranthene and pyrene as multiple biomarkers of
exposure to polycyclic aromatic hydrocarbons, Anal. Bioanal.
Chem., 386 (2006) 712–718.
- E. Nethery, A.J. Wheeler, M. Fisher, A. Sjödin, Z. Li,
L.C. Romanoff, W. Foster, T.E. Arbuckle, Urinary polycyclic
aromatic hydrocarbons as a biomarker of exposure to PAHs
in air: a pilot study among pregnant women, J. Exposure
Sci. Environ. Epidemiol., 22 (2012) 70–81.
- L. Campo, F. Rossella, S. Fustinoni, Development of a gas
chromatography/mass spectrometry method to quantify
several urinary monohydroxy metabolites of polycyclic
aromatic hydrocarbons in occupationally exposed subjects,
J. Chromatogr. B, 875 (2008) 531–540.
- C.Y. Lee, J.Y. Lee, J.W. Kang, H. Kim, Effects of genetic
polymorphisms of CYP1A1, CYP2E1, GSTM1, and GSTT1
on the urinary levels of 1-hydroxypyrene and 2-naphthol in
aircraft maintenance workers, Toxicol. Lett., 123 (2001) 115–124.
- International Organization for Standardization, General
Requirements for the Competence of Testing and Calibration
Laboratories with Later Amendments ISO/IEC 17025:2005,
2005, pp. 1–44.
- X. Xu, J.F. Zhang, L. Zhang, W.L. Liu, C.P. Weisel, Selective
detection of monohydroxy metabolites of polycyclic aromatic
hydrocarbons in urine using liquid chromatography/triple
quadrupole tandem mass spectrometry, Rapid Commun.
Mass Spectrom., 18 (2004) 2299–2308.
- P.F. Zhu, Z.H. Bian, Y.K. Xia, Y. Han, S.L. Qiao, R.C. Zhao,
N.Z. Jin, S.L. Wang, Y.Z. Peng, X.R. Wang, Relationship between
urinary metabolites of polycyclic aromatic hydrocarbons and
thyroid hormone levels in Chinese non-occupational exposure
adult males, Chemosphere, 77 (2009) 883–888.
- Z. Li, L. Romanoff, S. Bartell, E.N. Pittman, D.A. Trinidad,
M. McClean, T.F. Webster, A. Sjödin, Excretion Profiles and
half-lives of ten urinary polycyclic aromatic hydrocarbon
metabolites after dietary exposure, Chem. Res. Toxicol.,
25 (2012) 1452–1461.
- W. Huang, T.J. Smith, L. Ngo, T. Wang, H.Q. Chen, F.G. Wu,
R.F. Herrick, D.C. Christiani, H. Ding, Characterizing and
biological monitoring of polycyclic aromatic hydrocarbons in
exposures to diesel exhaust, Environ. Sci. Technol., 41 (2007)
2711–2716.
- J.R. Sobus, M.D. McClean, R.F. Herrick, S. Waidyanatha,
F. Onyemauwa, L.L. Kupper, S.M. Rappaport, Investigation of
PAH biomarkers in the urine of workers exposed to hot asphalt,
Ann. Occup. Hyg., 53 (2009) 551–560.
- G.St. Helen, M.L. Goniewicz, D. Dempsey, M. Wilson, P. Jacob
3rd, N.L. Benowitz, Exposure and kinetics of polycyclic
aromatic hydrocarbons (PAHs) in cigarette smokers, Chem.
Res. Toxicol., 25 (2012) 952–964.