<p>Focusing on the Amirkalayeh International Wetland, this research conducts an extensive analysis of sediment and water samples determine potential toxic elements (PTEs) concentrations. The findings uncovered discernible levels of sediment and water contamination, particularly in areas affected by agricultural runoff. Sediment pollution was primarily driven by the presence of Cd, Se, Mn, while water contamination was mainly attributed to Ni, Mn, Pb, and Cd. The ecological risk assessment highlighted elevated toxicity levels primarily attributable to Cd in sediments. Dermal exposure hazard indices exceeded safety thresholds in 72.4% of sediment samples, indicating significant non-carcinogenic effects, with children being the most affected. In water samples, salinity correlated with the release of Se, Mo, As, Ni, Hg, and Cd in the southern region of the wetland. High partition coefficient values for Ti, Fe, Al, Cr, Co, Cu, Mn, V, Ni, Hg, Zn, Pb, As, and Mo indicated their propensity to be present in sediments, whereas Se and Cd exhibited a greater affinity for water. Principal Component Analysis of sediment data revealed natural sources as the primary contributors of Sc, Zn, Co, Ni, Cr, Fe, Al, Pb, V, Ti, and Cu concentrations. In contrast, mixed natural and agricultural activities were implicated in As, Se, and Hg concentrations. Mn, Mo, Sb, and Cd demonstrated limited factor loadings, indicating their association with agricultural practices. This study underscores the imperative of implementing effective management policies for the judicious use of fertilizers and agricultural chemicals to mitigate PTEs pollution in the Wetland.</p>

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Potentially toxic elements in sediment and water of Amirkalayeh Wetland: Impacted by intensive rice farming

  • Neda Hashemi,
  • Behnam Keshavarzi,
  • Farideh Amini-Birami,
  • Harald Biester,
  • Ghasem Ghorbanzadeh Zafarani,
  • Mehdi Zarei

摘要

Focusing on the Amirkalayeh International Wetland, this research conducts an extensive analysis of sediment and water samples determine potential toxic elements (PTEs) concentrations. The findings uncovered discernible levels of sediment and water contamination, particularly in areas affected by agricultural runoff. Sediment pollution was primarily driven by the presence of Cd, Se, Mn, while water contamination was mainly attributed to Ni, Mn, Pb, and Cd. The ecological risk assessment highlighted elevated toxicity levels primarily attributable to Cd in sediments. Dermal exposure hazard indices exceeded safety thresholds in 72.4% of sediment samples, indicating significant non-carcinogenic effects, with children being the most affected. In water samples, salinity correlated with the release of Se, Mo, As, Ni, Hg, and Cd in the southern region of the wetland. High partition coefficient values for Ti, Fe, Al, Cr, Co, Cu, Mn, V, Ni, Hg, Zn, Pb, As, and Mo indicated their propensity to be present in sediments, whereas Se and Cd exhibited a greater affinity for water. Principal Component Analysis of sediment data revealed natural sources as the primary contributors of Sc, Zn, Co, Ni, Cr, Fe, Al, Pb, V, Ti, and Cu concentrations. In contrast, mixed natural and agricultural activities were implicated in As, Se, and Hg concentrations. Mn, Mo, Sb, and Cd demonstrated limited factor loadings, indicating their association with agricultural practices. This study underscores the imperative of implementing effective management policies for the judicious use of fertilizers and agricultural chemicals to mitigate PTEs pollution in the Wetland.