Determination of Selected Heavy Metals in Air Samples and Human Health Risk Assessment in Tehran City, Iran

سال انتشار: 1401
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 150

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شناسه ملی سند علمی:

JR_IJCCE-41-8_013

تاریخ نمایه سازی: 17 خرداد 1404

چکیده مقاله:

Heavy metal contamination has become a global issue. In this study, the concentrations of arsenic (As), lead (Pb), nickel (Ni), zinc (Zn), chromium (Cr), copper (Cu), and cadmium (Cd) in the air of the Tehran metropolis were measured. Also, cancer and non-cancer risk assessments were performed to quantify the rate and effect of infection on health. Sampling was done every month from April ۲۰۱۹ to March ۲۰۲۰ for one year. Sampling points in the whole city were determined based on Municipality ۲۲ districts of Tehran. The concentrations of the studied heavy metals in nanogram per cubic meter ( /m۳) showed the following order: Zn (۱۰۶.۲۲) > Pb (۳۱.۶۵) > Cu (۱۶.۳۸) > As (۵.۸۳) > Ni (۵.۷۷) > Cr (۵.۶۲) > Cd (۵.۳۶). The results indicate that in non-carcinogenic risk assessment, the hazard index (HQ) of As (۸.۲۰E+۰۰), Ni (۸.۶۷E+۰۰), Cr (۱.۱۴E+۰۰), and Cd (۱.۱۳E+۰۱), and the total hazard index (HI) of ۲.۹۴E+۰۱ are above the safe level of ۱, indicating the potential threat of non-carcinogenic diseases through the inhalation of air. According to USEPA guidelines, the risk of carcinogenicity is unacceptable for Cr, acceptable for As, Cd, and Ni, and without any significant health effects for Pb. The total carcinogenic risk of metals was ۱.۱۰E-۰۲, being in the high-risk range. Therefore, exposure to heavy metals through air inhalation increases the risk of cancer and mortality, so ۶۱ people annually suffer from various cancer types due to the inhalation of air. The Monte Carlo simulation uncertainty results also confirm those of non-carcinogenic and carcinogenic respiratory risk analysis of heavy metals in the air. The obtained results indicate the need for improving the air quality in Tehran needs and taking into account the health risks to humans via inhalation exposure to heavy atmospheric metals.

نویسندگان

Nima Rezayani

School of Environment, College of Engineering, University of Tehran, Tehran, I.R. IRAN

Mohsen Mir Mohammadi

School of Environment, College of Engineering, University of Tehran, Tehran, I.R. IRAN

Naser Mehrdadi

School of Environment, College of Engineering, University of Tehran, Tehran, I.R. IRAN

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  • Arsalani F., Alijani B., Akbari M., Mohammadkhani Sh., Measuring the ...
  • ۲۲۰۵۹/jphgr.۲۰۱۹.۲۸۵۱۲۲.۱۰۰۷۴۱۵[۲] Ashrafi K., Shafipur M., Karbasi A., Tavakoli H., Azari ...
  • Azizi G., Ghanbari H., Numerical Simulation of Air Pollutants in ...
  • Baltas H., Sirin M., Gökbayrak E., Ozcelik A., EA Case ...
  • https://doi.org/۱۰.۱۰۱۶/j.chemosphere.۲۰۱۹.۱۲۵۰۱۵[۵] Bodor K., Bodor Z., Szép R., Spatial Distribution of ...
  • https://doi.org/۱۰.۱۰۰۷/s۱۰۶۶۱-۰۲۱-۰۸۹۳۱-۴[۶] Cal. EPA (California Environmental Protection Agency). “Technical Support Document ...
  • Chambers J.M., Cleveland W.S., Kleiner B., Tukey P.A., “Graphical Methods ...
  • Cui L., Wu Z., Han P., Taira Y., Wang H., ...
  • https://link.springer.com/article/۱۰.۱۰۰۷/s۱۱۳۵۶-۰۱۹-۰۶۴۲۷-w[۹] Dong W., Zhang Y., Quan X., Health Risk Assessment ...
  • https://doi.org/۱۰.۱۰۱۶/j.chemosphere.۲۰۱۹.۱۲۵۱۱۳[۱۰] Engwa G.A., Ferdinand P.U., Nwalo F.N., Unachukwu M.N., Mechanism ...
  • https://doi.org/۱۰.۵۷۷۲/intechopen.۸۲۵۱۱[۱۱] Ghorani-Azam A., Riahi-Zanjani B., Balali-Mood M., Effects of Air ...
  • https://doi.org/۱۰.۴۱۰۳/۱۷۳۵-۱۹۹۵.۱۸۹۶۴۶[۱۲] Goudarzi G., Alavi N., Geravandi S., Idani E., Behrooz ...
  • https://doi.org/۱۰.۱۰۰۷/s۰۰۴۸۴-۰۱۸-۱۵۱۰-x[۱۳] Gumy S., Mudu P., News on Air Pollution and ...
  • https://doi.org/۱۰.۱۷۱۵۹/۲۴۱۰-۹۷۲x/۲۰۱۸/v۲۸n۱a۲[۱۴] Chelani A.B., Gajghate D.G., ChalapatiRao C.V., Devotta S., Particle ...
  • https://doi.org/۱۰.۱۰۰۷/s۰۰۱۲۸-۰۱۰-۰۰۱۰-۴[۱۵] Heger, M., Sarraf, M. Air pollution in Tehran: Health ...
  • (۲۰۱۸). https://doi.org/۱۰.۱۵۹۶/۲۹۹۰۹[۱۶] Hernández-Pellón A., Nischkauer W., Limbeck A., Fernández-Olmo I., Metal ...
  • https://doi.org/۱۰.۱۰۱۶/j.envres.۲۰۱۸.۰۴.۰۱۴[۱۷] Hu B., Wang J., Jin B., Li Y., Shi ...
  • Huang H., Jiang Y., Xu X., Cao X., In Vitro ...
  • https://doi.org/۱۰.۱۰۱۶/j.scitotenv.۲۰۱۷.۰۸.۰۷۴[۱۹] Jiang H.H., Cai L.M., Wen H.H., Hu G.C., Chen ...
  • https://doi.org/۱۰.۱۰۱۶/j.scitotenv.۲۰۱۹.۱۳۴۴۶۶[۲۰] Joshirvani A., Samarghandi M.R., Leili M., PM۱۰ Concentration, Its ...
  • https://doi.org/۱۰.۱۰۰۲/clen.۲۰۲۰۰۰۱۷۴[۲۱] Karimi S., Rezayani N., Determination of Suspended Particulate Matter ...
  • Karyab H., “Carcinogen Risk Assessment of Polycyclic Aromatic Hydrocarbons in ...
  • Kermani M., Asadgol Z., Gholami M., Jafari A.J., Shahsavani A., ...
  • https://doi.org/۱۰.۱۰۰۷/s۱۰۶۵۳-۰۲۰-۰۰۷۷۹-w[۲۴] Li H.H., Chen L.J., Yu L., Guo Z.B., Shan ...
  • https://doi.org/۱۰.۱۰۱۶/j.scitotenv.۲۰۱۷.۰۲.۰۹۲[۲۵] Li J., Michalski G., Olson E.J., Welp L.R., Larrea ...
  • https://doi.org/۱۰.۳۳۹۰/atmos۱۲۰۵۰۶۴۱[۲۶] Liu F., Chen X., Liu Y., Niu Z., Tang ...
  • https://doi.org/۱۰.۱۰۱۶/j.jhazmat.۲۰۲۱.۱۲۵۵۹۰[۲۷] Liu Y., Hu J., Wang X., Jia J., Li ...
  • https://doi.org/۱۰.۱۰۱۶/j.ecoenv.۲۰۲۱.۱۱۲۰۷۱[۲۸] López J.M., Callén M.S., Murillo R., Garcia T., Navarro ...
  • https://doi.org/۱۰.۱۰۱۶/j.envres.۲۰۰۵.۰۱.۰۰۷[۲۹] Melaku S., Morris V., Raghavan D., Hosten C., Seasonal ...
  • https://doi.org/۱۰.۱۰۱۶/j.envpol.۲۰۰۷.۱۰.۰۳۸[۳۰] Nazari Cheraghi F., “Evaluation of Heavy Metal Pollution in ...
  • Noorpoor A.R., Sadri Jahanshahi A., Evaluation of Health Risk Assessment ...
  • https://dx.doi.org/۱۰.۲۲۰۵۹/jes.۲۰۱۴.۳۶۴۷۱[۳۲] Pardakhti A., “Determination of VOCS Concentration in Fresh Water ...
  • Pardakhti A.R., Bidhendi G.R.N., Torabian A., Karbassi A., Yunesian M., ...
  • https://doi.org/۱۰.۱۰۰۷/s۱۰۶۶۱-۰۱۰-۱۷۵۲-۵[۳۴] Pauselli L., Attademo L., Bernardini F., Compton M., M۲۳۹. ...
  • https://doi.org/۱۰.۱۰۹۳/schbul/sbaa۰۳۰.۵۵۱[۳۵] Rastegar, M., Namini E., Tonekaboni N., “Tehran Air Quality ...
  • https://doi.org/۱۰.۱۳۱۴۰/RG.۲.۲.۳۲۸۷۱.۷۸۲۴۴[۳۶] Rezayani N., Mirmohammadi M., Mehrdadi N., Origin and Risk ...
  • Origin and Risk Assessment, and Evaluation of Heavy Metal Pollution in the Soil of Tehran, Iran [مقاله ژورنالی]
  • https://doi.org/۱۰.۳۰۴۹۲/ijcce.۲۰۲۱.۵۳۱۰۲۱.۴۷۵۹[۳۸] Rezayani N., “Chemical Composition and Risk Assessment of Particulate ...
  • Sah D., Verma P.K., Kumari K.M., Lakhani A., Chemical Fractionation ...
  • https://doi.org/۱۰.۱۰۰۷/s۱۰۶۵۳-۰۱۸-۰۲۲۳-۸[۴۰] Sielski J., Kaziród-Wolski K., Jóźwiak M.A., Jóźwiak M., The ...
  • https://doi.org/۱۰.۱۰۱۶/j.scitotenv.۲۰۲۱.۱۴۷۵۴۱[۴۱] Tavakoli H., Azari A., Ashrafi K., Salimian M., Momeni ...
  • https://doi.org/۱۰.۱۰۰۷/s۱۳۷۶۲-۰۱۹-۰۲۴۲۹-w[۴۲] Tehran Municipality. Tehran Annual Air Quality Report, Period of ...
  • Tsai M.S., Chen M.H., Lin C.C., Liu C.Y., Chen P.C., ...
  • https://doi.org/۱۰.۱۰۱۶/j.envres.۲۰۱۹.۱۰۸۷۵۴[۴۴] USDoE. RAIS (The Risk Assessment Information System). (۲۰۱۹). ...
  • USEPA, “Risk Assessment Guidance for Superfund. Volume ۱: Human Health ...
  • USEPA I.R.I.S. “Integrated Risk Information System, Environmental Protection Agency Region ...
  • USEPA U. “Guidelines for Carcinogen Risk Assessment”. EPA/۶۳۰/P-۰۳/۰۰۱F. In Risk ...
  • WHO, First WHO Global Conference on Air Pollution and Health, ...
  • https://www.who.int/airpollution/events/conference/en/[۴۹] Phan C.C., Nguyen T.Q.H., Nguyen M.K., Park K.H., Bae ...
  • https://doi.org/۱۰.۱۰۰۷/s۱۳۷۶۲-۰۲۰-۰۲۶۴۰-۰[۵۰] Zhang Q., Yu R., Fu S., Wu Z., Chen ...
  • https://doi.org/۱۰.۱۰۳۸/s۴۱۵۹۸-۰۱۸-۳۶۵۸۲-y[۵۱] Zheng S., Wang Q., Yuan Y., Sun W., Human ...
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