References
- G. Tepanosyan, L. Sahakyan, O. Belyaeva, N. Maghakyan, A.
Saghatelyan, Human health risk assessment and riskiest heavy
metal origin identification in urban soils of Yerevan, Armenia,
Chemosphere, 184 (2017) 1230–1240.
- R. Fallahzadeha, R. Khosravib, B. Dehdashtic, E. Ghahramanie,
F. Omidif, A. Adlig, M. Miri, Spatial distribution variation
and probabilistic risk assessment of exposure to chromium in
ground water supplies; a case study in the east of Iran, Food
Chem. Toxicol., 115 (2018) 260–266.
- N. Saha, M.S. Rahman, M.B. Ahmed, J.L. Zhou, H.H. Ngo,
W.S. Guo, Industrial metal pollution in water and probabilistic
assessment of human health risk, J. Environ. Manage., 185
(2017) 70–78.
- Z. Qamar, S. Kha, A. Khan, M. Aamir, J. Nawab, M. Waqas,
Appraisement, source apportionment and health risk of
polycyclic aromatic hydrocarbons (PAHs) in vehicle-wash
wastewater, Pakistan, Sci. Total Environ., 605–606 (2017) 106–113.
- B. Rajasekhar, I. Nambi, S. Govindarajan, Human health risk
assessment of ground water contaminated with petroleum
PAHs using Monte Carlo simulations: a case study of an Indian
metropolitan city, J. Environ. Manage., 205 (2018) 183–191.
- A. Kumar, I. Xagoraraki, Human health risk assessment
of pharmaceuticals in water: an uncertainty analysis for
meprobamate, carbamazepine, and phenytoin, Regul. Toxicol.
Pharmacol., 57 (2010) 146–156.
- R. Törnqvist, J. Jarsjö, B. Karimov, Health risks from large-scale
water pollution: trends in Central Asia, Environ. Int., 37 (2011)
435–442.
- Z. Li, A. Jenning, Global variations in pesticide regulations and
health risk assessment of maximum concentration levels in
drinking water, J. Environ. Manage., 212 (2018) 384–394.
- M. Baqar, Y. Sadef, S.R. Ahmad, A. Mahmood, J. Li, G. Zhang,
Organochlorine pesticides across the tributaries of River
Ravi, Pakistan: human health risk assessment through dermal
exposure, ecological risks, source fingerprints and spatiotemporal
distribution, Sci. Total Environ., 618 (2018) 291–305.
- J. Hao, P. Zhao, W.Q. Chen, China Cancer Registration Report in
2012, Military Medical Science Press, 2013 (in Chinese).
- World Health Organization and UNICEF, Meeting the MDG
Drinking Water and Sanitation Target: the Urban and Rural
Challenge of the Decade, MDG Assessment Report, 2006.
- US EPA, RAGS Volume 3 Part A, Process for Conducting
Probabilistic Risk Assessment: Chapter 1, USEPA, Washington
D.C., 2001.
- A. McCreddin, M.S. Alam, A. McNabol, Modelling personal
exposure to particulate air pollution: an assessment of timeintegrated
activity modelling, Monte Carlo simulation and
artificial neural network approaches, Int. J. Hyg. Environ.
Health, 218 (2015) 107–116.
- E. Kentel, M.M. Aral, 2D Monte Carlo versus 2D Fuzzy Monte
Carlo health risk assessment, Stochastic Environ. Res. Risk
Assess., 19 (2005) 86–96.
- Y.C. Jiang, Z.R. Nan, S.C. Yang, Risk assessment of water quality
using Monte Carlo simulation and artificial neural network
method, J. Environ. Manage., 122 (2013) 130–136.
- J.H. Kim, T. Kim, H.J. Yoon, A. Jo, D. Lee, P.J. Kim, J.K. Seo,
Health risk assessment of dermal and inhalation exposure to
deodorants in Korea, Sci. Total Environ., 625 (2018) 1369–1379.
- Mingshan District Water Affairs Bureau, The 12th Safe Drinking
Water Implementation Plans of Mingshan District, Ya’an City,
Sichuan Provence, 2011 (in Chinese).
- Mingshan District Government, Statistical Yearbook of
Mingshan District in 2016, Sichuan University Press, Chengdu,
2016 (in Chinese).
- B.F. Wu, Plant Nutrients and Control Measures of Paddy Field,
Environ. Sci., 12 (1991) 88–91.
- X.M. Ai, The influence of livestock and poultry breeding to the
pollution of environment, J. Sichuan Inst. Animal Husbandry
Vet. Med., 2 (2009) 14–15.
- General Administration of Quality Supervision, Inspection
and Quarantine of the People Republic of China, Standard
Examination Methods for Drinking Water (GB 5750-2006),
China Standards Press, Beijing, 2007.
- National Health Commission of the People Republic of China,
Standard for Drinking Water Quality (GB 5749-2006), China
Standards Press, Beijing, 2007.
- USEPA, Risk Assessment Guidance for Superfund, Volume:
Human Health Evaluation Manual (Part A) Interim Final,
EAP/540/l-89/002, 1989.
- USEPA, Integrated Risk Information System (IRIS), 2001.
Available at: https://cfpub.epa.gov/ncea/iris2/atoz.cfm.
- Y. Deng, F.Q. Ni, L. Xinag, X.R. Liu, Y. Zhang, Research on
the health risk assessment exposure factors of rural residents’
drinking water in the western edge of the Sichuan Basin, J.
Agro-Environ. Sci., 32 (2013) 244–250 (in Chinese).
- B.D. Kerger, D.J. Paustenbach, G.E. Corbett, Absorption and
elimination of trivalent and hexavalent chromium in humans
following ingestion of a bolus dose in drinking water, Toxicol.
Appl. Pharmacol., 141 (1996) 145–155.
- USEPA, Guidelines for Carcinogen Risk Assessment, 2005.
Available at: http://www.epa.gov/raf/publications/pdfs/cancer_ guidelines_final_3-25-05.PDF.
- USEPA, The Risk Assessment Information System (RAIS),
2005. Available at: https://rais.ornl.gov/cgi-bin/tools/TOX_search?select=chem.
- W.H. Hallenbeck, K.M. Cunningham, Quantitative Risk
Assessment for Environmental and Occupational Health, Lewis
Publishers, Chelsea, 1993.
- E. Atanassov, T.I. Dimov, What Monte Carlo models can do and
cannot do efficiently, Appl. Math. Model., 32 (2008) 1477–1500.
- Y.F. Hu, L.J. Deng, S.R. Zhang, F.Q. Ni, J. Zhang, Spatial
variability of iron and manganese contents in shallow ground
water in the west of Sichuan Basin, Acta Ecol. Scin., 29 (2009)
797–803 (in Chinese).
- S.G. Dai, Environmental Chemistry, Higher Education Press,
Beijing, 1997 (in Chinese).
- B. Wen, L. Li, Y. Duan, et al., Zn, Ni, Mn, Cr, Pb and Cu in soiltea
ecosystem: the concentrations, spatial relationship and
potential control, Chemosphere, 204 (2018) 92–100.
- R.Z. Li, F. Tong, A.J. Zhou, Y.D. Wu, P. Zhang, J. Yu, Fuzzy
assessment model for the health risk of heavy metals in urban
dusts based on trapezoidal fuzzy numbers, Acta Sci. Circum.,
31 (2011) 1790–1798 (in Chinese).
- USEPA, Exposure Factors Handbook, USEPA, Washington
D.C., 2009.
- USEPA IRIS, Chromium Compounds, 2000. Available at: http://www.epa.gov/ttn/atw/hlthef/chromium.html.
- X.P. Liu, Health Risk Assessment of Urban Drinking Water
Source, Guanzhou Environ. Sci., 26 (2011) 28–30.
- Q. Hou, Health Risk Evaluation of Drinking Water Sources and
Fish Consumption in Kaifeng, China, Henan University, 2011.
- L.G. Chen, M.J. Chen, H.L. Feng, Water sources safety
evaluation based on health risk assessment, J. Hydraul. Eng., 39
(2008) 235–239.
- J.H. Wu, C. Sun, Evaluation of shallow groundwater
contamination and associated human health risk in an alluvial
plain impacted by agricultural and industrial activities, Midwest
China, Exposure Health, 8 (2016) 311–329.
- B.G. Blaylock, M.L. Frank, L.A. Hook, F.O. Hoffman, L.A.
Hook, White Oak Creek Embayment Site Characterization and
Contaminant Screening Report, Oak Ridge National Laboratory,
Oak Ridge, Tennessee, 1992.
- Y. Zhang, R. Ma, Z. Li, Human health risk assessment of
groundwater in Hetao Plain (Inner Mongolia Autonomous
Region, China, Environ. Monit. Assess., 186 (2014) 4669–4684.
- R.P. Tong, M.Z. Cheng, L. Zhang, M. Liu, X.Y. Yang, X.D. Li,
W.T. Yin, The construction dust-induced occupational health
risk using Monte-Carlo simulation, J. Cleaner Prod., 184 (2018)
598–608.
- J. Jackman, Z. Guerra de Castillo, S. Olafsson, Stochastic flow
shop scheduling model for the Panama Canal, J. Oper. Res. Soc.,
62 (2011) 69–80.
- Health and Family Planning Commission of Sichuan Province,
Statistical Yearbook of Sichuan Health and Family Planning
(2015), Southwest Jiaotong University Press, Chengdu, 2016 (in
Chinese).