Abrahim, G.M.S. and Parker R.J., 2008. Assessment of heavy metal enrichment factors and the degree of contamination in marine sediments from Tamaki Estuary, Auckland, New Zealand. Environmental monitoring and assessment, 136(1–3): 227–238.
https://soi.org/10.1007/s10661-007-9678-2
Anazawa, K., Kaida, Y., Shinomura, Y., Tomiyasu, T. and Sakamoto, H., 2004. Heavy Metal Distribution in River Waters and sediments around a Fire Fly Village. Shikoku, Japan: Application of Multivariate Analysis. Analytical Science, 20(1): 79–84.
https://doi.org/10.2116/analsci.20.79
Azizi, M., Faz, A., Zornoza, R., Martínez-Martínez, S. Shahrokh, V. and Acosta, J.A., 2023. Environmental pollution and depth distribution of metal(loid)s and rare earth elements in mine tailing. Journal of Environmental Chemical Engineering, 10(3): 107526. Retrieved February 13, 2024 from
https://www.sciencedirect.com/science/article/abs/pii/S2213343722003992
Banerjee, S., Ghosh, S., Jha, S., Kumar, S., Mondal, G., Sarkar, D., Datta, R., Mukherjee, A. and Bhattacharyya, P., 2023. Assessing pollution and health risks from chromite mine tailings contaminated soils in India by employing synergistic statistical approaches. Science of the Total Environment, 880: 163228.
https://doi.org/10.1016/j.scitotenv.2023.163228
Buch, A.C., Niemeyer, J.C., Marques, E.D. and Silva-Filho, E.V., 2021. Ecological risk assessment of trace metals in soils affected by mine tailings. Journal of Hazardous Materials, 403: 123852.
https://doi.org/10.1016/j.jhazmat.2020.123852
Davoodifard, M., Forghani Tehran, G., Ghorbani, H. and Ghasemi, H., 2019. Distribution of Potentially Toxic Elements in the Tailings, Mine and Agricultural Soils around the Irankuh Pb-Zn Mine, SW Esfahan. Journal of Economic Geology, 10(2): 537–559. (in Persian with English abstract)
https://doi.org/10.22067/ECONG.V10I2.62158
Dehghani, A., Ostad Rahimi, M. and Hemmati, K., 2014. Investigating the effect of parameters on the flotation rate of Ahangaran Pb ore. The fifth Mining Engineering conference, Tehran, Retrieved February 13, 2024 from
https://civilica.com/doc/316605
Forghani, G., Mokhtari, A.R., Kazemi, Gh.A. and Davoodi Fard, M., 2015. Total concentration, speciation and mobility of potentially toxic elements in soils around a mining area in central Iran. Geochemistry, 75: 323–334. Retrieved February 13, 2024 from
https://www.sciencedirect.com/science/article/abs/pii/S000928191500029X
Fytianos, K., Katsianis, G., Triantafyllou, P. and Zachariadis, G., 2001. Accumulation of heavy metals in vegetables grown in an industrial area in relation to soil. Bulletin of Environmental Contamination and Toxicology, 67: 423–430.
https://doi.org/10.1007/s00128-001-0141-8
Galjak, J., Dokić, J., Milentijević, G., Dervišević, I. and Jović, S., 2020. Characterization of the tailing waste deposit “Gornje Polje”. Optik, 215: 164684. Retrieved February 13, 2024 from
https://www.sciencedirect.com/science/article/abs/pii/S0030402620305180
Ghosh, S., Banerjee, S., Prajapati, J., Mandal, J., Mukherjee, A. and Bhattacharyya, P., 2023. Pollution and health risk assessment of mine tailings contaminated soils in India from toxic elements with statistical approaches. Chemosphere, 324: 138267. Retrieved February 13, 2024 from
https://www.sciencedirect.com/science/article/abs/pii/S0045653523005349
Han, J., Kim, M. and Ro, H.M., 2020. Factors modifying the structural configuration of oxyanions and organic acids adsorbed on iron (hydr)oxides in soils. A review. Environmental Chemistry Letters, 18: 631–662. Retrieved February 13, 2024 from
https://link.springer.com/article/10.1007/s10311-020-00964-4
He, Z.L., Alva, A.K., Calvert, D.V. and Banks, D.J., 2000. Effects of leaching solution properties and volume on transport of metals and cations from a riviera fine sand. Journal of Eenvironmental Science and Health (A), 35: 981–998.
https://doi.org/10.1080/10934520009377016
Kolivand, R., Zohreh-vandi, H., Torkaman, M. and Nasiri, B., 2021. The Report of 1399-1400 Crop Year. Meteorological Organization of Hamedan Province, Hamedan, 22 pp. Retrieved February 13, 2024 from
http://sinamet.ir/data/prsinamet/pr/1400/pdf/gozaresh%20sale%20zeraei-malayer%201399-1400.pdf
Li, X., Zhou, T., Li, Zh., Wang, W., Zhou, J., Hu, P., Luo, Y., Christie, P. and W. L., 2022. Legacy of contamination with metal(loid)s and their potential mobilization in soils at a carbonate-hosted lead-zinc mine area. Chemosphere, 308: 136589. Retrieved February 13, 2024 from
https://www.sciencedirect.com/science/article/abs/pii/S004565352203082X
Mehrabi, B., Mehrabani, Sh., Rafiei, B. and Yaghoubi, B., 2015. Assessment of metal contamination in groundwater and soils in the Ahangaran mining district, west of Iran. Environmental Monitoring and Assessment, 187: 727.
https://doi.org/10.1007/s10661-015-4864-0
Mirkhani, R., Shabanpour, M. and Saadat, S., 2005. Using particle-size distribution and organic carbon percentage to predict the cation exchange capacity of soils of Lorestan province. Iranian Journal of Soil Research, 19(2): 231–237. Retrieved February 13, 2024 from
https://srjournal.areeo.ac.ir/article_127454.html?lang=en
Munanku, T., Banda, K., Nyimbili, P.H., Mhlongo, S.E. and Masinja, J., 2023. Development of a multi-criteria decision analysis tool for the assessment of the potential pollution risk of tailings dumps to the environment – An approach validated using selected Zambian Mine tailings. Journal of African Earth Sciences, 200: 104880. Retrieved February 13, 2024 from
https://doi.org/10.1016/j.jafrearsci.2023.104880
Nguyen, H.L., Leermakers, M., Elskens, M, De Ridder, F., Doan, T.H. and Baeyens, W., 2005. Correlations, Partitioning and Bioaccumulation of heavy metals Between Different Components of Lake Balaton. Science of the total Environment 341 (1–3): 211–226.
https://doi.org/10.1016/j.scitotenv.2004.09.019
Rafiei, B., Khodaei, A.S., Khodabakhsh, S., Hashemi, M. and Bakhtiari Nejad, M., 2010. Contamination Assessment of Lead, Zinc, Copper, Cadmium, Arsenic and Antimony in Ahangaran Mine Soils, Malayer, West of Iran. Soil and Sediment Contamination: An International Journal, 19, 574–586.
https://doi.org/10.1080/15320383.2010.499921
Ruppen, D., Runnalls, J., Tshimanga, R.M., Wehrlia, B. and Odermatt, D., 2023. Optical remote sensing of large-scale water pollution in Angola and DR Congo caused by the Catoca mine tailings spill. International Journal of Applied Earth Observation and Geoinformation, 118: 103237. Retrieved February 13, 2024 from
https://www.sciencedirect.com/science/article/pii/S1569843223000596
Sanz, J., Tomasa, O., Jimenez-Franco, A. and Sidki-Rius, N., 2022. Cadmium (Cd) [Z = 48]. In: Elements and Mineral Resources. Springer Textbooks in Earth Sciences, Geography and Environment. Springer, Cham. 43-45.
https://doi.org/10.1007/978-3-030-85889-6_10
Woitke, P., Wellmitz, J., Helm, D., Kube, P., Lepom, P. and Litheraty, p., 2003. Analysis and assessment of heavy metal pollution in suspended solids and sediments of the river Danube. Chemosphere, 51(8): 633–642.
https://doi.org/10.1016/S0045-6535(03)00217-0
Yan, T., Zhao, W., Yu, X., Li, H., Gao, Zh., Ding, M. and Yue, J., 2022. Evaluating heavy metal pollution and potential risk of soil around a coal mining region of Tai’an City, China. Alexandria Engineering Journal 61(3): 2156–2165.
https://doi.org/10.1016/j.aej.2021.08.013
Ye, Z.H., Shu, W.S., Zhang, Z.Q., Lan, C.Y and Wong, M.H., 2002. Evaluation of major constraints to revegetation of lead/zinc mine tailings using bioassay techniques. Chemosphere, 47(10): 1103–1111.
https://doi.org/10.1016/S0045-6535(02)00054-1
Zhang, Ch., Wu, L., Luo, Y., Zhang, H. and Christie, P., 2008. Identifying sources of soil inorganic pollutants on a regional scale using a multivariate statistical approach: Role of pollutant migration and soil physiochemical properties. Environmental Pollution, 151(3): 470–476.
https://doi.org/10.1016/j.envpol.2007.04.017
Zhang, H., Zhang, F., Song, J., Leong Tan, M., Kung, H. and Johnson, V.C., 2021. Pollutant source, ecological and human health risks assessment of heavy metals in soils from coal mining areas in Xinjiang, China. Environmental Research, 202: 111702.
https://doi.org/10.1016/j.envres.2021.111702
Zhang, L., Yang, Q., Wang, H., Gu, Q., Zhang, Y., 2022. Genetic interpretation and health risk assessment of arsenic in Hetao Plain of inner Mongolia, China. Environmental Research, 208: 112680.
https://doi.org/10.1016/j.envres.2022.112680
ارسال نظر در مورد این مقاله