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Trace Metal Levels in Seawater, Suspended Particulate Matter and Sediment in Mersin Bay, Turkey

Year 2024, Volume: 7 Issue: 2, 98 - 113
https://doi.org/10.63039/medfar.1555779

Abstract

The concentrations and distributions of trace metals in surface sediment, water and suspended particulate matter (SPM) in coastal area of Mersin Bay were studied to determined the anthropogenic inputs from surrounding activities. Elevated zinc levels (275 ppm) represent the trace metal with the highest concentration, as measured in suspended particulate matter samples collected from the Kazanlı and Karaduvar areas. The high concentrations are associated with terrestrial inputs from the anthropogenic (domestic +industrial) sources. An important observation is that increasing concentrations are found in dissolved phase, sediment and particulate phase, respectively. But this is not the case for Cr which is higher in sediment. This is related to intense activity of chromium processing plant working for many years. Moreover, Cd and Cr concentrations in surface sediments are above the shale average. Heavy metal concentrations in surface sediments are Cr>Zn>Cu>Pb>Cd, respectively. The elevated copper level relative to cadmium in surface sediments is likely attributable to the higher stability of surface complexes with clay minerals, which constitute the primary components of the sediments. Adsorption of zinc to iron and manganese oxide compounds in the sediment is a possible explanation for the high amounts of zinc that were found in the sediments. The estimated index values (enrichment factor, geoacumulation index and pollution load index) indicated widespread contamination of Cr and Cd in Mersin Bay. The origins of these trace metals in the sediments were caused by human activity, and the region was categorized as a moderately severely polluted area.

Supporting Institution

Mersin Üniversitesi-BAP

Project Number

BAP-SUFTB(mk)2006-3

References

  • Abdallah, M.A.M. (2007) Speciation of Trace Metals in Coastal Sedimans of El-Mex Bay South Mediterranean Sea – West of Alexandria (Egypt). Environ. Monit. Assess., 132:111-123.
  • Abdallah, M.A.M. (2008) Trace element levels in some commercially valuable fish species from coastal waters of Mediterranean Sea, Egypt. Journal of Marine Systems, 73: 114–122.
  • Abdallah, M.A.M., Abdallah, A.M.A (2008) Biomonitoring Study of Heavy Metals in Biota and Sedimans in the South Eastern Coast of Mediterranean Sea, Egypt. Environ. Monit. Assess., 146: 139-145.
  • Abdallah, M.A.M., Mohamed, A.A. (2015) Assessment of heavy metals by sediment quality guideline in surficial sediments of Abu Qir Bay southeastern Mediterranean sea, Egypt Environ. Earth Sci., 73: 603-3609.
  • Abrahim, G.M.S., 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):227-38.
  • Adjei-Boateng, D., Obirikorang, K.A., Amisah, S. (2010) Bioaccumulation of trace metals in the tissue of the clam Galatea paradoxa and sediments from the Volta Estuary,Ghana Int. J. Environ. Res., 4:533-540.
  • Algan, O., Balkış, N., Çağatay, M.N., San, E. (2004) The Sources of the Metal Contents in the Shelf Sedimans from the Marmara Sea, Turkey. Environmental Geology, 46: 932-950.
  • Alsop, D., Ng, Y.T., Chowdhury, M.J., Wood, C.M. (2016) Interactions of waterborne and dietborne pb in rainbow trout, oncorhynchusmykiss: bioaccumulation, physiological responses, and chronic toxicity Aquat. Toxicol., 177: 343-354.
  • Ayas, D., Kalay, M., Sangün, M.K. (2009) Mersin Körfezi'nden Örneklenen Yüzey Suyu vePatellaTürlerindeki (Patella caerulea, Patella rustica) Cr,Cd ve Pb Düzeylerinin Belirlenmesi. Ekoloji 70: 32-37.
  • Balls, P.W. (1989) Trace metal and major ion composition of precipitation at a North Sea coastal site. Atmos. Environ. 23: 2751-2759.
  • Bloundi, M.K., Duplay, J., Quaranta, G., (2009) Heavy Metal Contamination of Coastal Lagoon Sedimans by Antropogenic Activities: The Case of Nador (East Morocco). Environ. Geol. 56: 833-843.
  • Boubonani, T., Kevrekidis, T., Malea, P., (2009) Metal (Fe, Zn, Cu, Pb and Cd) Concentration Patterns in Components of a Macrophyte – Based Coastal Lagoon Ecosystem. Hydrobiologia, 635: 27-36.
  • Cardwell, R.D., Deforest, D.K., Brix, K.V., Adams, W.J. (2013) Do Cd, Cu, Ni, Pb, and Zn biomagnify in aquatic ecosystems? Rev. Environ. Contam. Toxicol., 226: 101-122.
  • Chen, C.W., Kao, C.M., Chen, F.C., Dong, C.D. (2007) Distribution and accumulation of heavy metals in the sediments of Kaohsiung Harbor, Taiwan. Chemosphere 66: 1431-1440.
  • Çelik, A., Kaska, Y., Bağ, H., Aureggi, M., Semiz, G., Kartal, A.A., Elçi, L. (2006) Heavy Metal Monitoring Around the Nesting Environment of Green Sea Turtles in Turkey. Water, Air, Soil Pollution, 169: 67-79.
  • Deely, J.M., Fergusson, J.E. (1994) Heavy metal and organic matter concentrations and distributions in dated sediments of a small estuary adjacent to a small urban area. Science of The Total Environment, 153: 97-111.
  • Demirak, A., Aydın, H., Keskin, F., Şahin, Y., Akpolat, O. (2012) Investigation of heavy metal content in the suspended particulate matter and sediments of inner Gokova Bay and creeks. Environ Monit Assess, 184:7113–7124.
  • Din, Z. (1992) Use of aluminum to normalize heavy-metal data from estuarine and coastal sediments of Straits of Melaka. Marine Pollution Bulletin, 24: 484-491.
  • El Nemr, A.M., El Sikaily, A., Khaled, A. (2007) Total and Leachable Heavy Metals in Muddy and Sandy Sedimans of Egyptian Coast Along Mediterranean Sea. Environ. Monit. Assess., 129: 151-168.
  • Fernández-Severini, M.D., Menéndez, M.C., Buzzi, N.S., Delgado, A.L., Piccolo, M.C., Marcovecchio, J.E. (2019) Metals in the particulate matter from surf zone waters of a Southwestern Atlantic sandy beach (Monte Hermoso, Argentina) Reg. Stud. Mar. Sci., 29: 100646.
  • Gao, Y., Wang, R., Li, Y., Ding, X., Jiang, Y., Feng, J., et al. (2021). Trophic transfer of heavy metals in the marine food web based on tissue residuals. Sci. Total. Environ. 772,145064.
  • Gu, Y.G., Ning, J.J., Ke, C.L., Huang, H.H. (2018) Bioaccessibility and human health implications of heavy metals in different trophic level marine organisms: a case study of the South China Sea Ecotoxicol. Environ. Saf., 163: 551-557.
  • Guo, Z., Ni, Z., Ye, H., Xiao, J., Chen, L., Green, I., Zhang, L. (2019) Simultaneous uptake of Cd from sediment, water and diet in a demersal marine goby Mugilogobius chulae. Journal of Hazardous Materials 364: 143-150.
  • Kalatehjari, P., Yousefian M., Khalilzadeh, M.A. (2015) Assessment of antifungal effects of copper nanoparticles on the growth of the fungus Saprolegnia sp. on white fish (Rutilus frisii kutum) eggs. Egyptian Journal of Aquatic Research 41: 303-306.
  • Kalay, M., Ay, O., Canlı, M., (1999) Heavy metal concentration in fish tissues from the northeast Mediterranean Sea. Bull. Environ. Contam. Toxicol. 63: 671–673.
  • Kalay, M., Koyuncu, CE., .Dönmez, A.E., (2004) Comparison of Cadmium Levels in the Muscle and Liver Tissues of Mullus barbatus (L. 1758) and Sparus aurata (L. 1758) Caught from the Mersin Gulf. Ekoloji, 13: 23-27.
  • Koleli, N., and Kantar, Ç., (2005) Toxic heavy metal (Cd, Pb, Ni, As) concentrations in phosphate rocks, phosphoric acids and phosphorus fertilizers. Ekoloji Dergisi. 55: 1-5.
  • Kumar, S.A., Weerasooriyagedara, M.S. (2018) A review on heavy metals accumulation in coastal bivalves used in seafood industry: guide to safely consumption of seafood. Int. J. Sci. Res. Publ., 8: 278-281.
  • Kumar, S.P. and Edward, K.P., (2009) Assessment of metal concentration in the sediment cores of Manakudy estuary, south west coast of India. Indian Journal of Marine Sciences, 38: 235-248.
  • Kumbur, H., Özsoy, H.D., Özer, Z. (2008) Mersin İlinde Tarımsal Alanlarda Kullanılan Kimyasalların Su Kalitesi Üzerine Etkilerinin Belirlenmesi. Ekoloji 68: 54-58.
  • Kumbur, H., Vural, N. (1989) Investigation of pollution of Berdan stream by metals and detergents. J Fac Eng Arch Gazi Univ 4:25–41.
  • Küçüksezgin, F., Uluturhan, E., Batki, H., (2008) Distribution of Heavy Metals in Water, Particulate Matter and Sedimans of Gediz River (Eastern Aegean). Environ. Monit. Assess., 141: 213-225.
  • Kwon, M.J., Boyanov, M.I, Mishra, B., Kemner, K.M., Jeon, S., Hong, J.K., Lee S. (2022) Zn speciation and fate in soils and sediments along the ground transportation route of Zn ore to a smelter. Journal of Hazardous Materials 438: 129422.
  • Li, D., Pan, B., Han, X., Lu, Y., Wang, X. (2023) Toxicity risks associated with trace metals call for conservation of threatened fish species in heavily sediment-laden Yellow River Journal of Hazardous Materials 448: 1309.
  • Lin, M.W., Yu, X.R., Chen, J.Y., Wei, Y.S., Chen, H.Y., Tsai, Y.T., Lin, L.H., Liao, E.C., Kung, H.Y., Young, S.S., Chan, H.L., Chou, H.C. (2023) Sediment pollutant exposures caused hepatotoxicity and disturbed glycogenesis Ecotoxicol. Environ. Saf. 251: 114559.
  • Malea, P., and Haritonidis, S. (2000) Use of the green alga Ulva rigida C. Agardh as an indicator species to reassess metal pollution in the Thermaikos Gulf, Greece, after 13 years. Journal of Applied Phycology 12: 169–176.
  • Muller, G. (1979) Schwermetalle in den sediments des Rheins Veranderungen seitt 1971. Umschan, 79: 778–783.
  • Ni, X., Wan, L., Liang, P., Zheng, R., Lin, Z., Chen, R., Pei, M., Shen, Y. (2020) The acute toxic effects of hexavalent chromium on the liver of marine medaka (Oryzias melastigma), Comparative Biochemistry and Physiology Part C: Toxicology & Pharmacology, 231:108734.
  • Ozbay, O., and Akçay, I. (2023) Metal pollution status and health risk assessment of beach sediments along the Mersin coast, Turkey Oceanological and Hydrobiological Studies 52: 431-470.
  • Ozbay, O., Ziya, M., Goksu, L. Alp, M.T., Sungur, M.A. (2013) Investigation of Heavy Metal Levels in Sediment of the Berdan River (Tarsus- Mersin). Ekoloji 22: 68-74.
  • Özsoy, E., Hecht, A., Ünlüata, Ü., Brenner, S., Sur, H.İ., Bishop, J., Latif, M.A., Rozentraup, Z., Oğuz, T. (1993) A synthesis of the Levantine Basin circulation and hydrography, 1985-1990. Deep-Sea Research II 40(6): 1075-1119.
  • Popa, M.O. (2008) Chromıum Impact On Marıne Ecosystem. Bulletin of University of Agricultural Sciences and Veterinary Medicine Cluj-Napoca. Veterinary Medicine, 63.
  • Pourang, N., Tanabe, S., Rezvani, S., Dennis, J.H. (2005) Trace element accumulation in edible tissues of five sturgeon species from the Caspian Sea. Environ. Monit. Assess. 100: 89–108.
  • Puig, P., Palanques, A., Sanchez, Cabeza, J.A., Masque, P. (1999) Heavy metals in particulate matter and sediments in the southern Barcelona sedimentation system (northwestern Mediterranean), Mar. Chem. 63: 311–329.
  • Pusceddu, A., Sara, G., Mazolla, A., Fabiano, M. (1997) Relationships Between Suspend and Sediment Organic Matter in a Semi-Enclosed Marine System: The Stagnone Di Marsela Sound (Western Sicily). Water, Air, Soil Pollution, 99: 343-352.
  • Rossi, N., Jamet, J. (2008) In situ heavy metals (copper, lead and cadmium) in different plankton compartments and suspended particulate matter in two coupled Mediterranean coastal ecosystems (Toulon Bay, France), Marine Pollution Bulletin 56: 1862–1870.
  • Sara, G., Leonardi, M., Mazzola, A. (1999) Spatial and Temporal Changes of Suspended Matter in Relation to Wind and vegetation Cover in a Mediterranean Shallow Coastal Environment. Chemistry and Ecology, 16: 151-173.
  • Schneider, L., Maher, W., Potts, J., Taylor, A. (2018) Trophic transfer of metals in a seagrass food web: bioaccumulation of essential and non-essential metals. Mar. Pollut. Bull., 131: 468-480.
  • Scoullos, M.J., Sakellari, A., Giannopolulou, K., Paraskevopoulou, V., Dassenakis, M. (2007) Dissolved and particulate trace metal levels in the Saronikos Gulf, Greece, in 2004. The impact of the primary Wastewater Treatment Plant of Psittalia, Desalination, 210: 98-109.
  • Shriadah, M.A., Okbah, M.A., El-Deek, M.S. (2004) Trace Metals in the Water Columns of the Red Sea and the Gulf of Aqaba, Egypt. Water, Air and Soil Pollution, 153: 115-124.
  • Simex, S.A., and Helz, G.R. (1981) Regional geochemistry of trace element in Chesapeake Bay.Environ. Geo. 3: 315-323.
  • Stamatis, N., Ioannidou, D., Christoforidi, A., Koutrakis, E. (2002) Sediment pollution by heavy metals in the Strymonikos and Ierissos Gulfs, North Aegean Sea, Greece, Environ. Monit. Assess. 80: 33–49.
  • Süren, E., Yılmaz, S., Türkoğlu, M., Kaya, S. (2007) Concentrations of Cadmium and Lead Heavy Metals in Dardanelles Seawater. Environ. Monit. Assess., 125: 91-98.
  • Tomlinson, D.L., Wilson, J.G., Harris, C.R., Jeffrey, D.W. (1980) Problems in the assessment of heavy-metal levels in estuaries and the formation of a pollution index Helgol. Meeresunters., 33:566-575.
  • Tuğrul, S., Küçüksezgin, F., Yemenicioğlu, S. (2007) Long Term Biomonitoring, Trend and Compliance Monitoring Program in Coastal Areas from Aegean, Northeastern Mediterranean and Eutrofication Monitoring in Mersin Bay (MEDPOL Phase IV), Ministry of Environment and Forestry.
  • Turekian, K.K., Wedepohl, K.H. (1961) Distribution of theelements in some major units of the earth’s crust. Geol. Soc. Am. Bull., 72: 175 – 192.
  • Türkmen, A., Türkmen, M. (2004) The seasonal variation of heavy metals in the suspended particulate material in the Iskenderun Bay (North-eastern Mediterranean Sea, Turkey), Ege University Journal of Fisheries & Aquatic Sciences, 21: 307-311.
  • U.S. EPA. (1994) Method 200.7: Determination of Metals and Trace Elements in Water and Wastes by Inductively Coupled Plasma-Atomic Emission Spectrometry, Revision 4.4. Cincinnati, OH.
  • Violintzis, C., Arditsoglou, A., Voutsa, D. (2009) Elemental composition of suspended particulate matter and sediments in the coastal environment of Thermaikos Bay, Greece: Delineating the impact of inland waters and wastewaters. Journal of Hazardous Materials, 166: 1250-1260.
  • Viti, C., Marchi, E., Decorosi, F., Giovannetti, L. (2014) Molecular mechanisms of Cr(VI) resistance in bacteria and fungi. FEMS Microbiology Reviews, 38: 633 - 659.
  • Wedepohl, K.H. (1995) The composition of the continental crust. Geochimica et Cosmochimica Acta 59: 1217-1239.
  • Xie, M., Jarrett, B.A., Da Silva-Cadoux, C., Fetters, K.J., Burton, G.A. Jr., Gaillard, J.F., Packman, A.I. (2015) Coupled effects of hydrodynamics and biogeochemistry on Zn mobility and speciation in highly contaminated sediments. Environ. Sci. Technol. 49: 5346–5353.
  • Yalçın, F., Jonathan, M.P., Yalçın, G.M., Ilhan, S., Leventeli, Y. (2020) Investigation of Heavy Metal Content In Beach Sediments On The Of Tasucu Bay (Mersin) With Geochemical And Multivariate Statistical Approaches Journal of Engineering Sciences and Design 8: 1113 – 1125.
  • Zhang, J., Zhou, F., Chen, C., Sun, X., Shi, Y., Zhao, H. (2018) Spatial distribution and correlation characteristics of heavy metals in the seawater, suspended particulate matter and sediments in Zhanjiang Bay, China. PLoS ONE 13(8): e0201414.

Trace Metal Levels in Seawater, Suspended Particulate Matter and Sediment in Mersin Bay, Turkey

Year 2024, Volume: 7 Issue: 2, 98 - 113
https://doi.org/10.63039/medfar.1555779

Abstract

The concentrations and distributions of trace metals in surface sediment, water and suspended particulate matter (SPM) in coastal area of Mersin Bay were studied to determined the anthropogenic inputs from surrounding activities. Elevated zinc levels (275 ppm) represent the trace metal with the highest concentration, as measured in suspended particulate matter samples collected from the Kazanlı and Karaduvar areas. The high concentrations are associated with terrestrial inputs from the anthropogenic (domestic +industrial) sources. An important observation is that increasing concentrations are found in dissolved phase, sediment and particulate phase, respectively. But this is not the case for Cr which is higher in sediment. This is related to intense activity of chromium processing plant working for many years. Moreover, Cd and Cr concentrations in surface sediments are above the shale average. Heavy metal concentrations in surface sediments are Cr>Zn>Cu>Pb>Cd, respectively. The elevated copper level relative to cadmium in surface sediments is likely attributable to the higher stability of surface complexes with clay minerals, which constitute the primary components of the sediments. Adsorption of zinc to iron and manganese oxide compounds in the sediment is a possible explanation for the high amounts of zinc that were found in the sediments. The estimated index values (enrichment factor, geoacumulation index and pollution load index) indicated widespread contamination of Cr and Cd in Mersin Bay. The origins of these trace metals in the sediments were caused by human activity, and the region was categorized as a moderately severely polluted area.

Project Number

BAP-SUFTB(mk)2006-3

References

  • Abdallah, M.A.M. (2007) Speciation of Trace Metals in Coastal Sedimans of El-Mex Bay South Mediterranean Sea – West of Alexandria (Egypt). Environ. Monit. Assess., 132:111-123.
  • Abdallah, M.A.M. (2008) Trace element levels in some commercially valuable fish species from coastal waters of Mediterranean Sea, Egypt. Journal of Marine Systems, 73: 114–122.
  • Abdallah, M.A.M., Abdallah, A.M.A (2008) Biomonitoring Study of Heavy Metals in Biota and Sedimans in the South Eastern Coast of Mediterranean Sea, Egypt. Environ. Monit. Assess., 146: 139-145.
  • Abdallah, M.A.M., Mohamed, A.A. (2015) Assessment of heavy metals by sediment quality guideline in surficial sediments of Abu Qir Bay southeastern Mediterranean sea, Egypt Environ. Earth Sci., 73: 603-3609.
  • Abrahim, G.M.S., 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):227-38.
  • Adjei-Boateng, D., Obirikorang, K.A., Amisah, S. (2010) Bioaccumulation of trace metals in the tissue of the clam Galatea paradoxa and sediments from the Volta Estuary,Ghana Int. J. Environ. Res., 4:533-540.
  • Algan, O., Balkış, N., Çağatay, M.N., San, E. (2004) The Sources of the Metal Contents in the Shelf Sedimans from the Marmara Sea, Turkey. Environmental Geology, 46: 932-950.
  • Alsop, D., Ng, Y.T., Chowdhury, M.J., Wood, C.M. (2016) Interactions of waterborne and dietborne pb in rainbow trout, oncorhynchusmykiss: bioaccumulation, physiological responses, and chronic toxicity Aquat. Toxicol., 177: 343-354.
  • Ayas, D., Kalay, M., Sangün, M.K. (2009) Mersin Körfezi'nden Örneklenen Yüzey Suyu vePatellaTürlerindeki (Patella caerulea, Patella rustica) Cr,Cd ve Pb Düzeylerinin Belirlenmesi. Ekoloji 70: 32-37.
  • Balls, P.W. (1989) Trace metal and major ion composition of precipitation at a North Sea coastal site. Atmos. Environ. 23: 2751-2759.
  • Bloundi, M.K., Duplay, J., Quaranta, G., (2009) Heavy Metal Contamination of Coastal Lagoon Sedimans by Antropogenic Activities: The Case of Nador (East Morocco). Environ. Geol. 56: 833-843.
  • Boubonani, T., Kevrekidis, T., Malea, P., (2009) Metal (Fe, Zn, Cu, Pb and Cd) Concentration Patterns in Components of a Macrophyte – Based Coastal Lagoon Ecosystem. Hydrobiologia, 635: 27-36.
  • Cardwell, R.D., Deforest, D.K., Brix, K.V., Adams, W.J. (2013) Do Cd, Cu, Ni, Pb, and Zn biomagnify in aquatic ecosystems? Rev. Environ. Contam. Toxicol., 226: 101-122.
  • Chen, C.W., Kao, C.M., Chen, F.C., Dong, C.D. (2007) Distribution and accumulation of heavy metals in the sediments of Kaohsiung Harbor, Taiwan. Chemosphere 66: 1431-1440.
  • Çelik, A., Kaska, Y., Bağ, H., Aureggi, M., Semiz, G., Kartal, A.A., Elçi, L. (2006) Heavy Metal Monitoring Around the Nesting Environment of Green Sea Turtles in Turkey. Water, Air, Soil Pollution, 169: 67-79.
  • Deely, J.M., Fergusson, J.E. (1994) Heavy metal and organic matter concentrations and distributions in dated sediments of a small estuary adjacent to a small urban area. Science of The Total Environment, 153: 97-111.
  • Demirak, A., Aydın, H., Keskin, F., Şahin, Y., Akpolat, O. (2012) Investigation of heavy metal content in the suspended particulate matter and sediments of inner Gokova Bay and creeks. Environ Monit Assess, 184:7113–7124.
  • Din, Z. (1992) Use of aluminum to normalize heavy-metal data from estuarine and coastal sediments of Straits of Melaka. Marine Pollution Bulletin, 24: 484-491.
  • El Nemr, A.M., El Sikaily, A., Khaled, A. (2007) Total and Leachable Heavy Metals in Muddy and Sandy Sedimans of Egyptian Coast Along Mediterranean Sea. Environ. Monit. Assess., 129: 151-168.
  • Fernández-Severini, M.D., Menéndez, M.C., Buzzi, N.S., Delgado, A.L., Piccolo, M.C., Marcovecchio, J.E. (2019) Metals in the particulate matter from surf zone waters of a Southwestern Atlantic sandy beach (Monte Hermoso, Argentina) Reg. Stud. Mar. Sci., 29: 100646.
  • Gao, Y., Wang, R., Li, Y., Ding, X., Jiang, Y., Feng, J., et al. (2021). Trophic transfer of heavy metals in the marine food web based on tissue residuals. Sci. Total. Environ. 772,145064.
  • Gu, Y.G., Ning, J.J., Ke, C.L., Huang, H.H. (2018) Bioaccessibility and human health implications of heavy metals in different trophic level marine organisms: a case study of the South China Sea Ecotoxicol. Environ. Saf., 163: 551-557.
  • Guo, Z., Ni, Z., Ye, H., Xiao, J., Chen, L., Green, I., Zhang, L. (2019) Simultaneous uptake of Cd from sediment, water and diet in a demersal marine goby Mugilogobius chulae. Journal of Hazardous Materials 364: 143-150.
  • Kalatehjari, P., Yousefian M., Khalilzadeh, M.A. (2015) Assessment of antifungal effects of copper nanoparticles on the growth of the fungus Saprolegnia sp. on white fish (Rutilus frisii kutum) eggs. Egyptian Journal of Aquatic Research 41: 303-306.
  • Kalay, M., Ay, O., Canlı, M., (1999) Heavy metal concentration in fish tissues from the northeast Mediterranean Sea. Bull. Environ. Contam. Toxicol. 63: 671–673.
  • Kalay, M., Koyuncu, CE., .Dönmez, A.E., (2004) Comparison of Cadmium Levels in the Muscle and Liver Tissues of Mullus barbatus (L. 1758) and Sparus aurata (L. 1758) Caught from the Mersin Gulf. Ekoloji, 13: 23-27.
  • Koleli, N., and Kantar, Ç., (2005) Toxic heavy metal (Cd, Pb, Ni, As) concentrations in phosphate rocks, phosphoric acids and phosphorus fertilizers. Ekoloji Dergisi. 55: 1-5.
  • Kumar, S.A., Weerasooriyagedara, M.S. (2018) A review on heavy metals accumulation in coastal bivalves used in seafood industry: guide to safely consumption of seafood. Int. J. Sci. Res. Publ., 8: 278-281.
  • Kumar, S.P. and Edward, K.P., (2009) Assessment of metal concentration in the sediment cores of Manakudy estuary, south west coast of India. Indian Journal of Marine Sciences, 38: 235-248.
  • Kumbur, H., Özsoy, H.D., Özer, Z. (2008) Mersin İlinde Tarımsal Alanlarda Kullanılan Kimyasalların Su Kalitesi Üzerine Etkilerinin Belirlenmesi. Ekoloji 68: 54-58.
  • Kumbur, H., Vural, N. (1989) Investigation of pollution of Berdan stream by metals and detergents. J Fac Eng Arch Gazi Univ 4:25–41.
  • Küçüksezgin, F., Uluturhan, E., Batki, H., (2008) Distribution of Heavy Metals in Water, Particulate Matter and Sedimans of Gediz River (Eastern Aegean). Environ. Monit. Assess., 141: 213-225.
  • Kwon, M.J., Boyanov, M.I, Mishra, B., Kemner, K.M., Jeon, S., Hong, J.K., Lee S. (2022) Zn speciation and fate in soils and sediments along the ground transportation route of Zn ore to a smelter. Journal of Hazardous Materials 438: 129422.
  • Li, D., Pan, B., Han, X., Lu, Y., Wang, X. (2023) Toxicity risks associated with trace metals call for conservation of threatened fish species in heavily sediment-laden Yellow River Journal of Hazardous Materials 448: 1309.
  • Lin, M.W., Yu, X.R., Chen, J.Y., Wei, Y.S., Chen, H.Y., Tsai, Y.T., Lin, L.H., Liao, E.C., Kung, H.Y., Young, S.S., Chan, H.L., Chou, H.C. (2023) Sediment pollutant exposures caused hepatotoxicity and disturbed glycogenesis Ecotoxicol. Environ. Saf. 251: 114559.
  • Malea, P., and Haritonidis, S. (2000) Use of the green alga Ulva rigida C. Agardh as an indicator species to reassess metal pollution in the Thermaikos Gulf, Greece, after 13 years. Journal of Applied Phycology 12: 169–176.
  • Muller, G. (1979) Schwermetalle in den sediments des Rheins Veranderungen seitt 1971. Umschan, 79: 778–783.
  • Ni, X., Wan, L., Liang, P., Zheng, R., Lin, Z., Chen, R., Pei, M., Shen, Y. (2020) The acute toxic effects of hexavalent chromium on the liver of marine medaka (Oryzias melastigma), Comparative Biochemistry and Physiology Part C: Toxicology & Pharmacology, 231:108734.
  • Ozbay, O., and Akçay, I. (2023) Metal pollution status and health risk assessment of beach sediments along the Mersin coast, Turkey Oceanological and Hydrobiological Studies 52: 431-470.
  • Ozbay, O., Ziya, M., Goksu, L. Alp, M.T., Sungur, M.A. (2013) Investigation of Heavy Metal Levels in Sediment of the Berdan River (Tarsus- Mersin). Ekoloji 22: 68-74.
  • Özsoy, E., Hecht, A., Ünlüata, Ü., Brenner, S., Sur, H.İ., Bishop, J., Latif, M.A., Rozentraup, Z., Oğuz, T. (1993) A synthesis of the Levantine Basin circulation and hydrography, 1985-1990. Deep-Sea Research II 40(6): 1075-1119.
  • Popa, M.O. (2008) Chromıum Impact On Marıne Ecosystem. Bulletin of University of Agricultural Sciences and Veterinary Medicine Cluj-Napoca. Veterinary Medicine, 63.
  • Pourang, N., Tanabe, S., Rezvani, S., Dennis, J.H. (2005) Trace element accumulation in edible tissues of five sturgeon species from the Caspian Sea. Environ. Monit. Assess. 100: 89–108.
  • Puig, P., Palanques, A., Sanchez, Cabeza, J.A., Masque, P. (1999) Heavy metals in particulate matter and sediments in the southern Barcelona sedimentation system (northwestern Mediterranean), Mar. Chem. 63: 311–329.
  • Pusceddu, A., Sara, G., Mazolla, A., Fabiano, M. (1997) Relationships Between Suspend and Sediment Organic Matter in a Semi-Enclosed Marine System: The Stagnone Di Marsela Sound (Western Sicily). Water, Air, Soil Pollution, 99: 343-352.
  • Rossi, N., Jamet, J. (2008) In situ heavy metals (copper, lead and cadmium) in different plankton compartments and suspended particulate matter in two coupled Mediterranean coastal ecosystems (Toulon Bay, France), Marine Pollution Bulletin 56: 1862–1870.
  • Sara, G., Leonardi, M., Mazzola, A. (1999) Spatial and Temporal Changes of Suspended Matter in Relation to Wind and vegetation Cover in a Mediterranean Shallow Coastal Environment. Chemistry and Ecology, 16: 151-173.
  • Schneider, L., Maher, W., Potts, J., Taylor, A. (2018) Trophic transfer of metals in a seagrass food web: bioaccumulation of essential and non-essential metals. Mar. Pollut. Bull., 131: 468-480.
  • Scoullos, M.J., Sakellari, A., Giannopolulou, K., Paraskevopoulou, V., Dassenakis, M. (2007) Dissolved and particulate trace metal levels in the Saronikos Gulf, Greece, in 2004. The impact of the primary Wastewater Treatment Plant of Psittalia, Desalination, 210: 98-109.
  • Shriadah, M.A., Okbah, M.A., El-Deek, M.S. (2004) Trace Metals in the Water Columns of the Red Sea and the Gulf of Aqaba, Egypt. Water, Air and Soil Pollution, 153: 115-124.
  • Simex, S.A., and Helz, G.R. (1981) Regional geochemistry of trace element in Chesapeake Bay.Environ. Geo. 3: 315-323.
  • Stamatis, N., Ioannidou, D., Christoforidi, A., Koutrakis, E. (2002) Sediment pollution by heavy metals in the Strymonikos and Ierissos Gulfs, North Aegean Sea, Greece, Environ. Monit. Assess. 80: 33–49.
  • Süren, E., Yılmaz, S., Türkoğlu, M., Kaya, S. (2007) Concentrations of Cadmium and Lead Heavy Metals in Dardanelles Seawater. Environ. Monit. Assess., 125: 91-98.
  • Tomlinson, D.L., Wilson, J.G., Harris, C.R., Jeffrey, D.W. (1980) Problems in the assessment of heavy-metal levels in estuaries and the formation of a pollution index Helgol. Meeresunters., 33:566-575.
  • Tuğrul, S., Küçüksezgin, F., Yemenicioğlu, S. (2007) Long Term Biomonitoring, Trend and Compliance Monitoring Program in Coastal Areas from Aegean, Northeastern Mediterranean and Eutrofication Monitoring in Mersin Bay (MEDPOL Phase IV), Ministry of Environment and Forestry.
  • Turekian, K.K., Wedepohl, K.H. (1961) Distribution of theelements in some major units of the earth’s crust. Geol. Soc. Am. Bull., 72: 175 – 192.
  • Türkmen, A., Türkmen, M. (2004) The seasonal variation of heavy metals in the suspended particulate material in the Iskenderun Bay (North-eastern Mediterranean Sea, Turkey), Ege University Journal of Fisheries & Aquatic Sciences, 21: 307-311.
  • U.S. EPA. (1994) Method 200.7: Determination of Metals and Trace Elements in Water and Wastes by Inductively Coupled Plasma-Atomic Emission Spectrometry, Revision 4.4. Cincinnati, OH.
  • Violintzis, C., Arditsoglou, A., Voutsa, D. (2009) Elemental composition of suspended particulate matter and sediments in the coastal environment of Thermaikos Bay, Greece: Delineating the impact of inland waters and wastewaters. Journal of Hazardous Materials, 166: 1250-1260.
  • Viti, C., Marchi, E., Decorosi, F., Giovannetti, L. (2014) Molecular mechanisms of Cr(VI) resistance in bacteria and fungi. FEMS Microbiology Reviews, 38: 633 - 659.
  • Wedepohl, K.H. (1995) The composition of the continental crust. Geochimica et Cosmochimica Acta 59: 1217-1239.
  • Xie, M., Jarrett, B.A., Da Silva-Cadoux, C., Fetters, K.J., Burton, G.A. Jr., Gaillard, J.F., Packman, A.I. (2015) Coupled effects of hydrodynamics and biogeochemistry on Zn mobility and speciation in highly contaminated sediments. Environ. Sci. Technol. 49: 5346–5353.
  • Yalçın, F., Jonathan, M.P., Yalçın, G.M., Ilhan, S., Leventeli, Y. (2020) Investigation of Heavy Metal Content In Beach Sediments On The Of Tasucu Bay (Mersin) With Geochemical And Multivariate Statistical Approaches Journal of Engineering Sciences and Design 8: 1113 – 1125.
  • Zhang, J., Zhou, F., Chen, C., Sun, X., Shi, Y., Zhao, H. (2018) Spatial distribution and correlation characteristics of heavy metals in the seawater, suspended particulate matter and sediments in Zhanjiang Bay, China. PLoS ONE 13(8): e0201414.
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Details

Primary Language English
Subjects Ecology (Other)
Journal Section Research Articles
Authors

Doruk Yılmaz 0000-0002-9806-1105

Project Number BAP-SUFTB(mk)2006-3
Early Pub Date November 25, 2024
Publication Date
Submission Date September 27, 2024
Acceptance Date November 22, 2024
Published in Issue Year 2024 Volume: 7 Issue: 2

Cite

APA Yılmaz, D. (2024). Trace Metal Levels in Seawater, Suspended Particulate Matter and Sediment in Mersin Bay, Turkey. Mediterranean Fisheries and Aquaculture Research, 7(2), 98-113. https://doi.org/10.63039/medfar.1555779

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