Abstract
The aim of this study was to assess the pollution status of metals in sediments of Hara Biosphere Reserve using pollution indicators. For this purpose, sediment samples from nine locations were collected and characterized for metal content (Pb, Cr, Zn, Cu, and Fe) using the total digestion technique. Comparison of metal concentrations with that of sediment quality guidelines (SQGs) demonstrated no association with negative biological effects for Cu and Zn, while the values of Pb and Cr mainly illustrated to have association with negative biological effects. The results of the geo-accumulation index (I geo) indicated no contamination for Cr, Cu, Zn, and Fe, while the values of Pb demonstrated to have moderate contamination based on I geo values. The analysis of the enrichment factor (EF) showed no enrichment for Cu and Zn and minor enrichment for Pb and Cr. Similar results were also found for quantification of contamination (QoC) analysis, where the values of Cu and Zn demonstrated to have a geogenic source of contamination, while the values of Pb and Cr mainly illustrated to have an anthropogenic source of contamination. According to EF and QoC calculations, the values of Cu and Zn were derived mainly from natural processes and exposure of material from the earth’s crust, while the values for Pb and Cr were enriched by anthropogenic activities. The results of the contamination factor (C if ) demonstrated low contamination levels for Fe, Cr, Zn, and Cu and moderate contamination levels for Pb. The pollution load index (PLI), showing the overall contamination of metals, demonstrated moderate pollution status in the study area.







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Asaah, V. A., Abimbola, A. F., & Suh, C. E. (2006). Heavy metal concentrations and distribution in surface soils of the Bassa industrial zone 1, Douala, Cameroon. Arabian Journal for Science and Engineering, 31(2), 147.
Banerjee, U., & Gupta, S. (2012). Source and distribution of lead, cadmium, iron and manganese in the river Damodar near Asansol Industrial Area, West Bengal, India. International Journal of Environmental Sciences, 2, 1531–1542.
Beckett, P. (1958). The soils of Kerman, south Persia. Journal of Soil Science, 9(1), 20–32.
Bhuiyan, M. A. H., et al. (2011). Investigation of the possible sources of heavy metal contamination in lagoon and canal water in the tannery industrial area in Dhaka, Bangladesh. Environmental Monitoring and Assessment, 175(1–4), 633–649.
Çevik, F., Göksu, M. Z. L., Derici, O. B., & Fındık, Ö. (2009). An assessment of metal pollution in surface sediments of Seyhan dam by using enrichment factor, geoaccumulation index and statistical analyses. Environmental Monitoring and Assessment, 152(1–4), 309–317.
Chapman, P. M. (2000). The sediment quality triad: then, now and tomorrow. International Journal of Environment and Pollution, 13(1), 351–356.
Christophoridis, C., Dedepsidis, D., & Fytianos, K. (2009). Occurrence and distribution of selected heavy metals in the surface sediments of Thermaikos Gulf N. Greece. Assessment using pollution indicators. Journal of Hazardous Materials, 168(2), 1082–1091.
Conrad, C. F., & Chisholm-Brause, C. J. (2004). Spatial survey of trace metal contaminants in the sediments of the Elizabeth River, Virginia. Marine Pollution Bulletin, 49(4), 319–324.
Dehghani, M., Farshchi, P., Danekar, A., Karami, M., & Aleshikh, A. (2010). Recreation value of Hara Biosphere Reserve using willingness-to-pay method. International Journal of Environmental Research, 4(2), 271–280.
Dube, A., Zbytniewski, R., Kowalkowski, T., Cukrowska, E., & Buszewski, B. (2001). Adsorption and migration of heavy metals in soil. Polish Journal of Environmental Studies, 10(1), 1–10.
Ebrahimpour, M., & Mushrifah, I. (2008). Heavy metal concentrations in water and sediments in Tasik Chini, a freshwater lake, Malaysia. Environmental Monitoring and Assessment, 141(1–3), 297–307.
Ergin, M., Saydam, C., Baştürk, Ö., Erdem, E., & Yörük, R. (1991). Heavy metal concentrations in surface sediments from the two coastal inlets (Golden Horn Estuary and Izmit Bay) of the northeastern Sea of Marmara. Chemical Geology, 91(3), 269–285.
Farsad, F., Karbassi, A., Monavari, S. M., Mortazavi, M. S., & Farshchi, P. (2011). Development of a new pollution index for heavy metals in sediments. Biological Trace Element Research, 143(3), 1828–1842.
García, E., Cruz-Motta, J., Farina, O., & Bastidas, C. (2008). Anthropogenic influences on heavy metals across marine habitats in the western coast of Venezuela. Continental Shelf Research, 28(20), 2757–2766.
Ghrefat, H., & Yusuf, N. (2006). Assessing Mn, Fe, Cu, Zn, and Cd pollution in bottom sediments of Wadi Al-Arab Dam, Jordan. Chemosphere, 65(11), 2114–2121.
Ghrefat, H. A., Abu-Rukah, Y., & Rosen, M. A. (2011). Application of geoaccumulation index and enrichment factor for assessing metal contamination in the sediments of Kafrain Dam, Jordan. Environmental Monitoring and Assessment, 178(1–4), 95–109.
Hakanson, L. (1980). An ecological risk index for aquatic pollution control. A sedimentological approach. Water Research, 14(8), 975–1001.
Hamzeh, M. A., Aftabi, A., & Mirzaee, M. (2011). Assessing geochemical influence of traffic and other vehicle-related activities on heavy metal contamination in urban soils of Kerman city, using a GIS-based approach. Environmental Geochemistry and Health, 33(6), 577–594.
Kamala-Kannan, S., et al. (2008). Assessment of heavy metals (Cd, Cr and Pb) in water, sediment and seaweed (Ulva lactuca) in the Pulicat Lake, South East India. Chemosphere, 71(7), 1233–1240.
Karbassi, A., Bayati, GRN-BI (2005). Environmental geochemistry of heavy metals in a sediment core off Bushehr, Persian Gulf. Iranian Journal of Environmental Health Science & Engineering 2(4).
Kazemi, A., Bakhtiari, A. R., Kheirabadi, N., Barani, H., & Haidari, B. (2012). Distribution patterns of metals contamination in sediments based on type regional development on the intertidal coastal zones of the Persian Gulf, Iran. Bulletin of Environmental Contamination and Toxicology, 88(1), 100–103.
Khuzestani, R. B., & Souri, B. (2013). Evaluation of heavy metal contamination hazards in nuisance dust particles, in Kurdistan Province, western Iran. Journal of Environmental Sciences, 25(7), 1346–1354.
Kim, J., Lee, H., & Koo, T.-H. (2008). Heavy-metal concentrations in three owl species from Korea. Ecotoxicology, 17(1), 21–28.
MacFarlane, G., Pulkownik, A., & Burchett, M. (2003). Accumulation and distribution of heavy metals in the grey mangrove, Avicennia marina (Forsk.) Vierh.: biological indication potential. Environmental Pollution, 123(1), 139–151.
Metal ÜZBSA, ve Türleşmesi D. (2001) Heavy Metals distribution and speciation in sediments from Ziqlab Dam-Jordan.
Muller, G. (1969). Index of geoaccumulation in sediments of the Rhine River. Geojournal, 2(3), 108–118.
Neinavaz, E., Karami, M., & Danehkar, A. (2011). Investigation of Great Egret (Casmerodius albus) breeding success in Hara Biosphere Reserve of Iran. Environmental Monitoring and Assessment, 179(1–4), 301–307.
Nowrouzi, M., Mansouri, B., Nabizadeh, S., & Pourkhabbaz, A. (2012a). Analysis of heavy metals concentration in water and sediment in the Hara biosphere reserve, southern Iran. Toxicology and Industrial Health, 30(1), 64–72.
Nowrouzi, M., Pourkhabbaz, A., & Rezaei, M. (2012b). Bioaccumulation and distribution of metals in sediments and Avicenna marina tissues in the Hara Biosphere Reserve, Iran. Bulletin of Environmental Contamination and Toxicology, 89(4), 799–804.
Parvaresh, H., Abedi, Z., Farshchi, P., Karami, M., Khorasani, N., & Karbassi, A. (2011). Bioavailability and concentration of heavy metals in the sediments and leaves of grey mangrove, Avicennia marina (Forsk.) Vierh, in Sirik Azini creek, Iran. Biological Trace Element Research, 143(2), 1121–1130.
Reimann, C., & Caritat, P. (2000). Intrinsic flaws of element enrichment factors (EFs) in environmental geochemistry. Environmental Science & Technology, 34(24), 5084–5091.
Salati, S., & Moore, F. (2010). Assessment of heavy metal concentration in the Khoshk River water and sediment, Shiraz, Southwest Iran. Environmental Monitoring and Assessment, 164(1–4), 677–689.
Saur, E., & Juste, C. (1994). Enrichment of trace elements from long-range aerosol transport in sandy podzolic soils of southwest France. Water, Air, and Soil Pollution, 73(1), 235–246.
Sekabira, K., Oryem Origa, H., Basamba, T., Mutumba, G., & Kakudidi, E. (2010). Assessment of heavy metal pollution in the urban stream sediments and its tributaries. International journal of Environmental Science and Technology, 7(3), 435–446.
Srinivasa Gowd, S., Ramakrishna Reddy, M., & Govil, P. (2010). Assessment of heavy metal contamination in soils at Jajmau (Kanpur) and Unnao industrial areas of the Ganga Plain, Uttar Pradesh, India. Journal of Hazardous Materials, 174(1), 113–121.
Sutherland, R. (2000). Bed sediment-associated trace metals in an urban stream, Oahu, Hawaii. Environmental Geology, 39(6), 611–627.
Tomlinson, D., Wilson, J., Harris, C., & Jeffrey, D. (1980). Problems in the assessment of heavy-metal levels in estuaries and the formation of a pollution index. Helgoländer Meeresuntersuchungen, 33(1–4), 566–575.
Turekian, K. K., & 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.
Wei, B., & Yang, L. (2010). A review of heavy metal contaminations in urban soils, urban road dusts and agricultural soils from China. Microchemical Journal, 94(2), 99–107.
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This research was supported by the Faculty of Agriculture, University of Birjand, Iran.
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Zarei, I., Pourkhabbaz, A. & Khuzestani, R.B. An assessment of metal contamination risk in sediments of Hara Biosphere Reserve, southern Iran with a focus on application of pollution indicators. Environ Monit Assess 186, 6047–6060 (2014). https://doi.org/10.1007/s10661-014-3839-x
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DOI: https://doi.org/10.1007/s10661-014-3839-x