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Comparison of acid volatile sulphide, metal speciation, and diffusive gradients in thin-film measurement for metal toxicity assessment of sediments in Lake Chaohu, China. | LitMetric

AI Article Synopsis

  • The study examines the relationship between heavy metal toxicity in sediments and their environmental forms, highlighting the limitations of traditional assessment methods.
  • The research identified distinct patterns of acid volatile sulphide (AVS) and simultaneously extracted metals (SEM) in Lake Chaohu, showing correlations influenced by factors like sulphate-reducing bacteria and organic carbon levels.
  • Additionally, the findings suggest using Diffusive Gradients in Thin-films (DGT) measurements to better assess metal speciation and toxicity relationships in sediments, particularly noting the relevance of DGT-labile nickel.

Article Abstract

The toxicity of heavy metals in sediments is inseparable from their forms in the environment. Traditional sediment toxicity assessment systems, such as total metals, dissolved metals in pore water, metals extracted by the Community Bureau of Reference procedure, and acid volatile sulphide (AVS)-simultaneously extracted metal (SEM), have their own limitations. This study revealed the horizontal and vertical distribution characteristics of AVS and SEM in Lake Chaohu and three typical groups of two-dimensional profiles of diffusive gradients in thin-film (DGT)-labile S(-II) were obtained at representative sampling sites. There was a positive correlation between DGT-labile S(-II) and AVS due to sulphate-reducing bacteria and a negative correlation due to the high sulphate reduction rate induced by high total organic carbon. Moreover, there was no correlation between DGT-labile S(-II) and AVS when bioturbation was dominant in the sediments. To realise the application of DGT measurement in toxicity assessment of heavy metals in sediment through the sandwich relationship of DGT-labile metals vs. metals speciation vs. sediment toxicity assessment, the key relationship of DGT-labile metals vs. metals speciation was explored. DGT-labile Ni showed potential to reveal this relationship.

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Source
http://dx.doi.org/10.1016/j.scitotenv.2022.155438DOI Listing

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