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Original Articles

Evaluation of trace elements concentration in surface sediments of Parishan International Wetland (Fars Province, SW Iran) by using geochemical and sedimentological analysis

, , ORCID Icon, &
Pages 665-675 | Received 25 Oct 2019, Accepted 29 Feb 2020, Published online: 31 Mar 2020

References

  • Alavi, M., 1994. Tectonics of the Zagros orogenic belt of Iran: new data and interpretations. Tectonophysics, 229 (3–4), 211–238.
  • Al-Khashman, O.A., 2012. Assessment of heavy metal accumulation in urban soil around Potash Industrial Site in the East of the Dead Sea and their Environmental risks. Soil and sediment contamination: an international journal, 21 (2), 276–290.
  • Ambedkar, G., Kmalakkannan, J., and Muniyan, M., 2017. Assessment of some heavy metals in the selected freshwater fish species collected from Veeranam Lake Cuddalore District, Tamil Nadu, India. World scientific news, 81 (2), 235–245.
  • Batvari, B.P.D., et al., 2016. Heavy metals accumulation in crab and shrimps from Pulicat lake, north Chennai coastal region, southeast coast of India. Toxicology and industrial health, 32 (1), 1–6.
  • Bordajandi, L.R., et al., 2003. Study on PCBs, PCDD/Fs, organochlorine pesticides, heavy metals and arsenic content in freshwater fish species from the River Turia (Spain). Chemosphere, 53 (2), 163–171.
  • Chaharlang, B.H., et al., 2016. Geochemical partitioning and pollution assessment of Ni and V as indicator of oil pollution in surface sediments from Shadegan wildlife refuge, Iran. Marine pollution bulletin, 111 (1–2), 247–259.
  • Chai, M., et al., 2018. Effects of mangrove plant species on accumulation of heavy metals in sediment in a heavily polluted mangrove swamp in Pearl River Estuary, China. Environmental geochemistry and health, 41, 175–189.
  • Dai, L., et al., 2018. Multivariate geostatistical analysis and source identification of heavy metals in the sediment of Poyang Lake in China. Science of the total environment, 621, 1433–1444.
  • Eby, G. N., 2016. Principles of environmental geochemistry. Long Grove, IL: Waveland Press.
  • El Zrelli, R., et al., 2015. Heavy metal contamination and ecological risk assessment in the surface sediments of the coastal area surrounding the industrial complex of Gabes city, Gulf of Gabes, SE Tunisia. Marine pollution bulletin, 101 (2), 922–929.
  • Elkady, A.A., et al., 2015. Distribution and assessment of heavy metals in the aquatic environment of Lake Manzala, Egypt. Ecological indicators, 58, 445–457.
  • Fernandez-Maestre, R., Johnson-Restrepo, B., and Olivero-Verbel, J., 2018. Heavy metals in sediments and fish in the Caribbean coast of Colombia: assessing the environmental risk. International journal of environmental research, 12, 289–301.
  • Förstner, U. and Wittmann, G., 1981. Metal pollution in the aquatic environment. Berlin, Heidelberg, Germany: Springer.
  • Ghazali, S., 2012. Relationship between level of water in Parishan Lake and surrounded wells with respect to excessive groundwater extraction. Journal of agricultural economics research, 4, 121–135.
  • Goher, M.E., et al., 2014. Metal pollution assessment in the surface sediment of Lake Nasser, Egypt. The Egyptian journal of aquatic research, 40 (3), 213–224.
  • Hakanson, L., 1980. An ecological risk index for aquatic pollution control. A sedimentological approach. Water research, 14 (8), 975–1001.
  • Heltai, G., et al., 2018. Longterm study of transformation of potentially toxic element pollution in soil/water/sediment system by means of fractionation with sequential extraction procedures. Microchemical journal, 136, 85–93.
  • Huang, S., et al., 2018. Contamination assessment and source identification of heavy metals in river sediments in Nantong, Eastern China. International journal of environmental research, 12 (3), 373–389.
  • Kabata-Pendias, A. and Mukherjee, A. B., 2007. Trace elements from soil to human. Berlin, Germany: Springer Science & Business Media.
  • Kafilzadeh, F., et al., 2012. Determination of organochlorine pesticide residues in water, sediments and fish from Lake Parishan. World journal of fish and marine sciences, 4, 150–154.
  • Kafilzadeh, F., Farhangdoost, M.S., and Tahery, Y., 2010. Isolation and identification of phenol degrading bacteria from Lake Parishan and their growth kinetic assay. African journal of biotechnology, 9 (40), 6721–6726.
  • Karimian Torghabeh, A., et al., 2018. Mineralogy, concentration, distribution and source identification of Heavy Metals in bottom sediments of Maharlou Lake (Fars Province, Iran). Environmental earth sciences, 77 (19), 657.
  • Karimian Torghabeh, A., Jahandari, A., and Jamasb, R., 2019a. Concentration, contamination level, source identification of selective trace elements in Shiraz atmospheric dust sediments (Fars Province, SW Iran). Environmental science and pollution research, 26, 6424–6435.
  • Karimian Torghabeh, A., Pradhan, B., and Jahandari, A., 2019b. Assessment of geochemical and sedimentological characteristics of atmospheric dust in Shiraz, southwest Iran. Geoscience frontiers.
  • Khalid, N., et al., 2018. Lead concentrations in soils and some wild plant species along two busy roads in Pakistan. Bulletin of environmental contamination and toxicology, 100 (2), 250–258.
  • Li, F., et al., 2014. Integrated source apportionment, screening risk assessment, and risk mapping of heavy metals in surface sediments: a case study of the Dongting Lake, Middle China. Human and ecological risk assessment: an international journal, 20 (5), 1213–1230.
  • Li, F., et al., 2018. Distribution, bioavailability and probabilistic integrated ecological risk assessment of heavy metals in sediments from Honghu Lake, China. Process safety and environmental protection, 116, 169–179.
  • Liang, X., et al., 2018. Source identification and risk assessment based on fractionation of heavy metals in surface sediments of Jiaozhou Bay, China. Marine pollution bulletin, 128, 548–556.
  • Lin, Q., et al., 2016. Spatial distribution, contamination and ecological risk assessment of heavy metals in surface sediments of Erhai Lake, a large eutrophic plateau lake in southwest China. CATENA, 145, 193–203.
  • Lindholm, R. C., 1987. Mineral identification using X-ray diffraction. A practical approach to sedimentology. Dordrecht, the Netherlands: Springer, 124–153.
  • Loska, K. and Wiechuła, D., 2003. Application of principal component analysis for the estimation of source of heavy metal contamination in surface sediments from the Rybnik Reservoir. Chemosphere, 51 (8), 723–733.
  • Mamat, Z., et al., 2016. An ecological risk assessment of heavy metal contamination in the surface sediments of Bosten Lake, northwest China. Environmental science and pollution research, 23 (8), 7255–7265.
  • Manno, E., Varrica, D., and Dongarrà, G., 2006. Metal distribution in road dust samples collected in an urban area close to e petrochemical plant at Gela, Sicily. Atmospheric environment, 40 (30), 5929–5941.
  • Mathur, R., et al., 2016. Assessment of heavy metal contamination of road dusts from industrial areas of Hyderabad, India. Environmental monitoring and assessment, 188 (9), 514.
  • Mendoza-Carranza, M., et al., 2016. Distribution and bioconcentration of heavy metals in a tropical aquatic food web: a case study of a tropical estuarine lagoon in SE Mexico. Environmental pollution, 210, 155–165.
  • Moradi, H.R., Rajabi, M., and Faragzadeh, M., 2011. Investigation of meteorological drought characteristics in Fars province, Iran. CATENA, 84 (1–2), 35–46.
  • Müller, G., 1969. Index of geoaccumulation in sediments of the Rhine River. GeoJournal, 2, 108–118.
  • Noorollahi, D., et al., 2011. Climatic and environmental reconstruction based on stable isotopes of parishan lake (Iran). Journal of rangeland science, 1 (3), 203–216.
  • Oyoo-Okoth, E., et al., 2010. Monitoring exposure to heavy metals among children in Lake Victoria, Kenya: environmental and fish matrix. Ecotoxicology and environmental safety, 73 (7), 1797–1803.
  • Özmen, H., et al., 2004. Concentrations of heavy metal and radioactivity in surface water and sediment of Hazar Lake (Elazığ, Turkey). Chemosphere, 55 (3), 401–408.
  • Patel, P., et al., 2018. Heavy metal contamination in river water and sediments of the Swarnamukhi River Basin, India: risk assessment and environmental implications. Environmental geochemistry and health, 40 (2), 609–623.
  • Shabafrooz, R., Mahboubi, A., and Moussavi-Harami, R., 2010. Dolomitization and evaporate mineralization of Sachun Formation at type locality (SE Shiraz), Iran. Journal of crystallogr. mineral, 17 (4), 609–620.
  • Shirisha, K., et al., 2016. Heavy-metal concentrations in sediments collected from ICRISAT lake, Patancheru, India. Communications in soil science and plant analysis, 47 (3), 348–355. ‏
  • Shyleshchandran, M.N., Mohan, M., and Ramasamy, E.V., 2018. Risk assessment of heavy metals in Vembanad Lake sediments (south-west coast of India), based on acid-volatile sulfide (AVS)-simultaneously extracted metal (SEM) approach. Environmental science and pollution research, 25 (8), 7333–7345.
  • Song, Z., et al., 2018. Assessment of potential bioavailability of heavy metals in the sediments of land-freshwater interfaces by diffusive gradients in thin films. Chemosphere, 191, 218–225.
  • Suresh, G., et al., 2012. Assessment of spatial distribution and potential ecological risk of the heavy metals in relation to granulometric contents of Veeranam lake sediments, India. Ecotoxicology and environmental safety, 84, 117–124.
  • Sutherland, R.A., 2000. Bed sediment-associated trace metals in an urban stream, Oahu, Hawaii. Environmental geology, 39 (6), 611–627.
  • Tariq, J., Jaffar, M., and Ashraf, M., 1991. Levels of selected heavy metals in commercial fish from five freshwater lakes, Pakistan. Toxicological & environmental chemistry, 33 (1–2), 133–140. ‏
  • Taylor, S.R. and McLennan, S.M., 1995. The geochemical evolution of the continental crust. Reviews of geophysics, 33 (2), 241–265.
  • Tokalioǧlu, Ş., Kartal, Ş., and Elçi, L., 2000. Determination of heavy metals and their speciation in lake sediments by flame atomic absorption spectrometry after a four-stage sequential extraction procedure. Analytica chimica acta, 413 (1–2), 33–40.
  • Turekian, K.K. and Wedepohl, K.H., 1961. Distribution of the elements in some major units of the earth’s crust. Geological society of America bulletin, 72 (2), 175–192.2.0.CO;2]
  • UNDP/GEF. 2010. Lake parishan a concise baseline report, conservation of Iranian wetland project. Tehran, Iran: Iran Department of Environment.
  • Uosif, M., et al., 2016. Natural radionuclides and heavy metals concentration of marine sediments in Quseir city and surrounding areas, Red Sea coast-Egypt. International journal of advanced science and technology, 86, 9–30.
  • Wang, M., et al., 2017. Speciation and spatial distribution of heavy metals (cu and Zn) in wetland soils of Poyang lake (China). Wetlands, 1–10.
  • Yazidi, A., et al., 2017. Contribution of GIS to evaluate surface water pollution by heavy metals: case of Ichkeul Lake (Northern Tunisia). Journal of African earth sciences, 134, 166–173.
  • Yongming, H., et al., 2006. Multivariate analysis of heavy metal contamination in urban dusts of Xi’an, Central China. Science of the total environment, 355 (1–3), 176–186.
  • Zannoni, D., et al., 2016. Sources and distribution of tracer elements in road dust: the Venice mainland case of study. Journal of geochemical exploration, 166, 64–72.
  • Zhang, Y., et al., 2017a. Ecological risk assessment of toxic organic pollutant and heavy metals in water and sediment from a landscape lake in Tianjin City, China. Environmental science and pollution research, 24 (13), 12301–12311.
  • Zhang, Y., et al., 2017b. Toxicities and risk assessment of heavy metals in sediments of Taihu Lake, China, based on sediment quality guidelines. Journal of environmental sciences, 62, 31–38.

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