Saturday, June 21, 2025
HomeHealthHuman well being danger of nitrate in groundwater of Tehran–Karaj plain, Iran

Human well being danger of nitrate in groundwater of Tehran–Karaj plain, Iran


Jasechko, S. & Perrone, D. Global groundwater wells liable to working dry. Science 372, 418–421 (2021).

Article 
ADS 
CAS 
PubMed 

Google Scholar 

Nordin, N. F. C. et al. Groundwater high quality forecasting modelling utilizing synthetic intelligence: A evaluation. Groundw. Sustain. Dev. 14, 100643 (2021).

Article 

Google Scholar 

Maghrebi, M., Noori, R. & AghaKouchak, A. Iran: Renovated irrigation community deepens water disaster. Nature 618(7964), 238 (2023).

Article 
CAS 
PubMed 

Google Scholar 

WWDR (World Water Development Report), 2018. The United Nations World Water Development Report 2018 (United Nations Educational, Scientific and Cultural Organization, New York, United States) (2018).

Boretti, A. & Rosa, L. Reassessing the projections of the world water improvement report. NPJ Clean Water 2, 15 (2019).

Article 

Google Scholar 

Aminiyan, M. M., Aminiyan, F. M., Heydariyan, A. & Sadikhani, M. R. The evaluation of groundwater geochemistry of some wells in Rafsanjan plain, Iran. Eurasian J. Soil Sci. 5, 221–230 (2016).

Google Scholar 

SajilKumar, P., Elango, L. & James, E. Assessment of hydrochemistry and groundwater high quality within the coastal space of South Chennai, India. Arab. J. Geosci. 7, 2641–2653 (2014).

Article 
CAS 

Google Scholar 

UNESCO (The United Nations Educational, Scientific and Cultural Organization), 2007. UNESCO Water Portal Newsletter No. 161: Water-Related Diseases (2007). Available from:http://www.unesco.org/water/news/newsletter/161.shtml <http://www.unesco.org/water/news/newsletter/161.shtml

Jamshidi, A. et al. Water high quality analysis and non-cariogenic danger evaluation of publicity to nitrate in groundwater assets of Kamyaran, Iran: Spatial distribution, Monte-Carlo simulation, and sensitivity evaluation. J. Environ. Health Sci. Eng. 19, 1117–1131 (2021).

Article 
CAS 
PubMed 
PubMed Central 

Google Scholar 

Shahsavani, S. et al. An ontology-based research on water high quality: Probabilistic danger evaluation of publicity to fluoride and nitrate in Shiraz ingesting water, Iran utilizing fuzzy multi-criteria group decision-making fashions. Environ. Monitor. Assess. 195, 35 (2023).

Article 
CAS 

Google Scholar 

Noori, R., Ghahremanzadeh, H., Kløve, B., Adamowski, J. F. & Baghvand, A. Modified-DRASTIC, modified-SINTACS and SI strategies for groundwater vulnerability evaluation within the southern Tehran aquifer. J. Environ. Sci. Health Part A 54, 89–100 (2019).

Article 
CAS 

Google Scholar 

Maghrebi, M. et al. Iran’s agriculture within the anthropocene. Earths Future 8, e2020EF00154 (2020).

Article 

Google Scholar 

Panneerselvam, B. et al. An built-in method to discover the suitability of nitrate-contaminated groundwater for ingesting functions in a semiarid area of India. Environ. Geochem. Health 45, 647–663 (2023).

Article 
CAS 
PubMed 

Google Scholar 

Sarkar, S. et al. Vulnerability of groundwater from elevated nitrate air pollution throughout India: Insights from spatio-temporal patterns utilizing large-scale monitoring information. J. Contam. Hydrol. 243, 103895 (2021).

Article 
CAS 
PubMed 

Google Scholar 

Noori, R. et al. A non-threshold mannequin to estimate carcinogenic danger of nitrate-nitrite in ingesting water. J. Clean. Production 363, 132432 (2022).

Article 
CAS 

Google Scholar 

Naderian, D. et al. A water high quality database for world lakes. Resour. Conserv. Recycl. 202, 107401 (2024).

Article 
CAS 

Google Scholar 

Mahvi, A., Nouri, J., Babaei, A. & Nabizadeh, R. Agricultural actions impression on groundwater nitrate air pollution. Int. J. Environ. Sci. Technol. 2, 41–47 (2005).

Article 
CAS 

Google Scholar 

Badeenezhad, A. et al. Factors affecting the nitrate focus and its well being danger evaluation in ingesting groundwater by utility of Monte Carlo simulation and geographic data system. Hum. Ecol. Risk Assess. Int. J. 27, 1458–1471 (2021).

Article 
CAS 

Google Scholar 

Darvishmotevalli, M. et al. Evaluation of carcinogenic dangers associated to nitrate publicity in ingesting water in Iran. MethodsX 6, 1716–1727 (2019).

Article 
PubMed 
PubMed Central 

Google Scholar 

Pasupuleti, S. et al. Groundwater characterization and non-carcinogenic and carcinogenic well being danger evaluation of nitrate publicity within the Mahanadi River Basin of India. J. Environ. Manag. 319, 115746 (2022).

Article 
CAS 

Google Scholar 

Han, D. & Currell, M. J. Review of drivers and threats to coastal groundwater high quality in China. Sci. Total Environ. 806, 150913 (2022).

Article 
ADS 
CAS 
PubMed 

Google Scholar 

Liang, J. et al. Specific vulnerability evaluation of nitrate in shallow groundwater with an improved DRSTIC-LE mannequin. Ecotoxicol. Environ. Saf. 174, 649–657 (2019).

Article 
CAS 
PubMed 

Google Scholar 

Sun, Y., Wang, W., Duan, L., Zhang, C. & Wang, Y. Geochemical evolution mechanisms of shallow Groundwater in Guanzhong basin, China. Hydrogeol. Eng. Geol 41, 29–35 (2014).

CAS 

Google Scholar 

Temkin, A., Evans, S., Manidis, T., Campbell, C. & Naidenko, O. V. Exposure-based evaluation and financial valuation of opposed start outcomes and most cancers danger resulting from nitrate in United States ingesting water. Environ. Res. 176, 108442 (2019).

Article 
CAS 
PubMed 

Google Scholar 

Ward, M. H. et al. Workgroup report: Drinking-water nitrate and well being—Recent findings and analysis wants. Environ. Health Perspect. 113, 1607–1614 (2005).

Article 
CAS 
PubMed 
PubMed Central 

Google Scholar 

Ward, M. H. et al. Drinking water nitrate and human well being: An up to date evaluation. International journal of environmental analysis and public well being 15, 1557 (2018).

Article 
PubMed 
PubMed Central 

Google Scholar 

Manassaram, D. M., Backer, L. C. & Moll, D. M. A evaluation of nitrates in ingesting water: Maternal publicity and opposed reproductive and developmental outcomes. Environ. Health Perspect. 114, 320–327 (2006).

Article 
CAS 
PubMed 

Google Scholar 

Mukherjee, I. & Singh, U. Okay. Characterization of groundwater nitrate publicity utilizing Monte Carlo and Sobol sensitivity approaches within the numerous aquifer methods of an agricultural semiarid area of Lower Ganga Basin, India. Sci. Total Environ. 787, 147657 (2021).

Article 
ADS 
CAS 
PubMed 

Google Scholar 

Khosravi, R. et al. Comparative analysis of nitrate adsorption from aqueous options utilizing inexperienced and crimson native montmorillonite adsorbents. Desalin. Water Treat. 116, 119–128 (2018).

Article 
CAS 

Google Scholar 

Hashim, N. H. et al. Determination of median deadly focus (LC50) and nitrite accumulation within the blood and tissue of blood cockle (Tegillarca granosa, Linnaeus 1758). Water 12, 2197 (2020).

Article 
CAS 

Google Scholar 

Parvizishad, M., Dalvand, A., Mahvi, A. H. & Goodarzi, F. A evaluation of opposed results and advantages of nitrate and nitrite in ingesting water and meals on human well being. Health Scope 6, e14164 (2017).

Google Scholar 

Ghaderpoori, M. et al. Comparison of bottled waters present manufacturers in time period of vital chemical parameters (Nitrate, fluoride, chloride, sulfate) effecting on well being. Int. J. Pharm. Res. 10, 328–333 (2018).

Google Scholar 

Bazeli, J. et al. Health danger evaluation strategies to guage non-carcinogenic human well being danger resulting from fluoride, nitrite and nitrate utilizing Monte Carlo simulation and sensitivity evaluation in Groundwater of Khaf County, Iran. Int. J. Environ. Anal. Chem. 102, 1793–1813 (2022).

Article 
CAS 

Google Scholar 

Iqbal, J. et al. Groundwater fluoride and nitrate contamination and related human well being danger evaluation in South Punjab, Pakistan. Environ. Sci. Pollut. Res. 30, 61606–61625 (2023).

Article 
CAS 

Google Scholar 

Alimohammadi, M. et al. Determination of nitrate focus and its danger evaluation in bottled water in Iran. Data Brief 19, 2133–2138 (2018).

Article 
PubMed 
PubMed Central 

Google Scholar 

Westrop, J. P. et al. Nitrate-stimulated launch of naturally occurring sedimentary uranium. Environ. Sci. Technol. 57, 4354–4366 (2023).

Article 
ADS 
CAS 
PubMed 

Google Scholar 

Cotruvo, J. A. WHO tips for ingesting water high quality: First addendum to the fourth version. J. Am. Water Works Assoc. 109, 44–51 (2017).

Article 

Google Scholar 

ISIRI, D. W. P. A. C. S. T. E., Institute of Standards and Industrial Research of Iran, Tehran, Iran. (In Persian).

Maghrebi, M. et al. Iran’s groundwater hydrochemistry. Earth Space Sci. 8, e2021EA001793 (2021).

Article 
ADS 

Google Scholar 

Ghahremanzadeh, H., Noori, R., Baghvand, A. & Nasrabadi, T. Evaluating the primary sources of groundwater air pollution within the southern Tehran aquifer utilizing principal element issue evaluation. Environ. Geochem. Health 40, 1317–1328 (2018).

Article 
CAS 
PubMed 

Google Scholar 

Joekar-Niasar, V. & Ataie-Ashtiani, B. Assessment of nitrate contamination in unsaturated zone of city areas: The case research of Tehran, Iran. Environ. Geol. 57, 1785–1798 (2009).

Article 
ADS 
CAS 

Google Scholar 

Roohollah, N. et al. PODMT3DMS-tool: Proper orthogonal decomposition linked to the MT3DMS mannequin for nitrate simulation in aquifers. Hydrogeol. J. 28, 1125–1142 (2020).

Article 

Google Scholar 

Torabian, A., Aminzadeh, B. & Hashemi, S. A research of nitrate in Tehran floor water and a technique of its elimination. Int. J. Environ. Stud. 57, 725–734 (2000).

Article 
CAS 

Google Scholar 

Kalteh, S. et al. Quantification and well being danger evaluation of nitrate in southern districts of Tehran, Iran. Water Reuse 12, 274–288 (2022).

CAS 

Google Scholar 

Badihi, A., Jahangiri-rad, M., Mahmoudkhani, R. & Kashi, G. Water high quality indices appraisal and well being danger evaluation of nitrate, mercury and lead in water distribution community: A case research of Robat Karim in Tehran, Iran. Environ. Qual. Manag. 32, 275–285 (2023).

Article 

Google Scholar 

Noori, R. et al. Anthropogenic depletion of Iran’s aquifers. Proc. Natl. Acad. Sci. 118, e2024221118 (2021).

Article 
CAS 
PubMed 
PubMed Central 

Google Scholar 

Vadiati, M., Rajabi Yami, Z., Eskandari, E., Nakhaei, M. & Kisi, O. Application of synthetic intelligence fashions for prediction of groundwater degree fluctuations: Case research (Tehran–Karaj alluvial aquifer). Environ. Monit. Assess. 194, 619 (2022).

Article 
CAS 
PubMed 

Google Scholar 

Karami, S., Jalali, M., Katibeh, H. & Fatehi Marj, A. Groundwater hydrogeochemical evaluation utilizing superior spatial statistics strategies: A case research of Tehran–Karaj plain aquifer, Iran. Arab. J. Geosci. 13, 84 (2020).

Article 
CAS 

Google Scholar 

Mohammadi, Okay., Niknam, R. & Majd, V. J. Aquifer vulnerability evaluation utilizing GIS and fuzzy system: A case research in Tehran–Karaj aquifer, Iran. Environ. Geol. 58, 437–446 (2009).

Article 
ADS 

Google Scholar 

Panahi, M. R., Mousavi, S. M. & Rahimzadegan, M. Delineation of groundwater potential zones utilizing distant sensing, GIS, and AHP method in Tehran–Karaj plain, Iran. Environ. Earth Sci. 76, 1–15 (2017).

Article 

Google Scholar 

Khorasani, H., Kerachian, R., Aghayi, M. M., Zahraie, B. & Zhu, Z. in World Environmental and Water Resources Congress 2020, 53–66 (American Society of Civil Engineers Reston)

Chitsazan, M., Mohammad Rezapour Tabari, M. & Eilbeigi, M. Analysis of temporal and spatial variations in groundwater nitrate and improvement of its air pollution plume: A case research in Karaj aquifer. Environ. Earth Sci. 76, 1–27 (2017).

Article 
CAS 

Google Scholar 

Maghrebi, M. et al. Spatiotemporal modifications in Iranian rivers’ discharge. Elem Sci Anth 11, 00002 (2023).

Article 

Google Scholar 

Noori, R. et al. Decline in Iran’s groundwater recharge. Nat. Commun. 14, 6674 (2023).

Article 
ADS 
CAS 
PubMed 
PubMed Central 

Google Scholar 

Sherif, M. et al. A evaluation of managed aquifer recharge potential within the Middle East and North Africa Region with examples from the Kingdom of Saudi Arabia and the United Arab Emirates. Water 15, 742 (2023).

Article 

Google Scholar 

Baird, R. et al. Standard strategies for the examination of water and wastewater. in twenty third Edition Edn, 1 Volume (Various Pagings), 26 Unnumbered Pages of Plates: Illustrations (Black and White, and Colour); 29 cm (American Public Health Association Washington, 2017).

Mirzabeygi, M. et al. The focus information of fluoride and well being danger evaluation in ingesting water within the Ardakan metropolis of Yazd province, Iran. Data Brief 18, 40–46 (2018).

Article 

Google Scholar 

Çolak, A. B., Horasan, B. Y., Öztürk, A. İ & Bayrak, M. B. An instance of synthetic neural networks modeling the distribution of mercury (Hg), which poses a danger to human well being within the number of settlements: Sarayönü (Türkiye). Arab. J. Geosci. 16, 1–12 (2023).

Article 

Google Scholar 

U.S.EPA. Risk Assessment Guidance for Superfund: Human Health Evaluation Manual (Part A), 1 1989 (Office of Emergency and Remedial Response, Washington, DC, 1989).

Google Scholar 

Radfard, M. et al. Data on well being danger evaluation to the nitrate in ingesting water of rural areas within the Khash metropolis, Iran. Data Brief 21, 1918–1923 (2018).

Article 
PubMed 
PubMed Central 

Google Scholar 

Shalyari, N., Alinejad, A., Hashemi, A., Radfard, M. & Dehghani, M. Health danger evaluation of nitrate in groundwater assets of Iranshahr utilizing Monte Carlo simulation and geographic data system (GIS). MethodsX 6, 1812–1821 (2019).

Article 
PubMed 
PubMed Central 

Google Scholar 

Liu, J., Peng, Y., Li, C., Gao, Z. & Chen, S. Characterization of the hydrochemistry of water assets of the Weibei Plain, Northern China, in addition to an evaluation of the chance of excessive groundwater nitrate ranges to human well being. Environ. Pollut. 268, 115947 (2021).

Article 
CAS 
PubMed 

Google Scholar 

Mann, H. B. Nonparametric assessments in opposition to development. Econ. J. Econ. Soc. 13, 245–259 (1945).

MathSciInternet 

Google Scholar 

Sen, P. Okay. Estimates of the regression coefficient primarily based on kendall’s tau. J. Am. Stat. Assoc. 63, 1379–1389 (1968).

Article 
MathSciInternet 

Google Scholar 

Tabari, H. & Talaee, P. H. Temporal variability of precipitation over Iran: 1966–2005. J. Hydrol. 396, 313–320 (2011).

Article 
ADS 

Google Scholar 

Noori, R., Woolway, R. I., Saari, M., Pulkkanen, M. & Kløve, B. Six a long time of thermal change in a pristine lake located north of the Arctic Circle. Water Resour. Res. 58(9), e2021WR031543 (2022).

Article 
ADS 

Google Scholar 

Partal, T. & Kahya, E. Trend evaluation in Turkish precipitation information. Hydrol. Process. 20, 2011–2026 (2006).

Article 
ADS 

Google Scholar 

MAKESENS. Mann-Kendall check and Sen’s slope estimates for development of annual information. Finnish Meteorological Institute (2002). Available from: https://en.ilmatieteenlaitos.fi/makesens (2002).

Badeenezhad, A. et al. Effect of land use modifications on non-carcinogenic well being dangers resulting from nitrate publicity to ingesting groundwater. Environ. Sci. Pollut. Res. 28, 41937–41947 (2021).

Article 
CAS 

Google Scholar 

Tirkey, P., Bhattacharya, T., Chakraborty, S. & Baraik, S. Assessment of groundwater high quality and related well being dangers: A case research of Ranchi metropolis, Jharkhand, India. Groundw. Sustain. Dev. 5, 85–100 (2017).

Article 

Google Scholar 

Chen, J., Wu, H., Qian, H. & Gao, Y. Assessing nitrate and fluoride contaminants in ingesting water and their well being danger of rural residents dwelling in a semiarid area of Northwest China. Expo. Health 9, 183–195 (2017).

Article 
CAS 

Google Scholar 

Radfarda, M. et al. Health danger evaluation to fluoride and nitrate in ingesting water of rural residents dwelling within the Bardaskan metropolis, arid area, southeastern Iran. Water Treat 145, 249–256 (2019).

Article 

Google Scholar 

Gomes, E., Antunes, I. & Leitão, B. Groundwater administration: Effectiveness of mitigation measures in nitrate weak zones–a Portuguese case research. Groundw. Sustain. Dev. 21, 100899 (2023).

Article 

Google Scholar 

Farahani, F. Evaluation of nitrate and nitrite focus in tehran potable water and well being danger evaluation of nitrate and nitrite publicity. MethodsX 6, 1716–1727 (2019).

Google Scholar 

Uhl, A. et al. Making waves: Pulling the plug—Climate change results will flip gaining into shedding streams with detrimental results on groundwater high quality. Water Res. 220, 118649 (2022).

Article 
CAS 
PubMed 

Google Scholar 

Mohammadpour, A. et al. Nitrate in groundwater assets of hormozgan province, southern Iran: Concentration estimation, distribution and probabilistic well being danger evaluation utilizing monte carlo simulation. Water 14, 564 (2022).

Article 
CAS 

Google Scholar 

Haji Seyed Mohammad Shirazi, R. et al. Investigating nitrate and nitrite concentrations in ingesting water of 5 districts in Tehran and assessing the presence of nitrate decreasing micro organism. J. Chem. Health Risks 11, 329–338 (2021).

Google Scholar 

Zendehbad, M., Mostaghelchi, M., Mojganfar, M., Cepuder, P. & Loiskandl, W. Nitrate in groundwater and agricultural merchandise: Intake and danger evaluation in northeastern Iran. Environ. Sci. Pollut. Res. 29, 78603–78619 (2022).

Article 
CAS 

Google Scholar 

Xu, D. et al. Major ion hydrogeochemistry and well being danger of groundwater nitrate in chosen rural areas of the Guanzhong Basin, China. Hum. Ecol. Risk Assess. Int. J. 29, 701–727 (2023).

Article 
CAS 

Google Scholar 

El Amri, A., M’nassri, S., Nasri, N., Nsir, H. & Majdoub, R. Nitrate focus evaluation and prediction in a shallow aquifer in central-eastern Tunisia utilizing synthetic neural community and time sequence modelling. Environ. Sci. Pollut. Res. 29, 43300–43318 (2022).

Article 

Google Scholar 

Muhib, M. I., Ali, M. M., Tareq, S. M. & Rahman, M. M. Nitrate air pollution within the groundwater of Bangladesh: An rising risk. Sustainability 15, 8188 (2023).

Article 
CAS 

Google Scholar 



Source hyperlink

RELATED ARTICLES

LEAVE A REPLY

Please enter your comment!
Please enter your name here

This site uses Akismet to reduce spam. Learn how your comment data is processed.

Most Popular