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Comparative study of species sensitivity distributions based on non-parametric kernel density estimation for some transition metals

  • Ying Wang
  • , Chenglian Feng*
  • , Yuedan Liu
  • , Yujie Zhao
  • , Huixian Li
  • , Tianhui Zhao
  • , Wenjing Guo
  • *此作品的通讯作者
  • Chinese Research Academy of Environmental Sciences
  • South China Institute of Environmental Sciences
  • Beijing Normal University

科研成果: 期刊稿件文章同行评审

摘要

Transition metals in the fourth period of the periodic table of the elements are widely widespread in aquatic environments. They could often occur at certain concentrations to cause adverse effects on aquatic life and human health. Generally, parametric models are mostly used to construct species sensitivity distributions (SSDs), which result in comparison for water quality criteria (WQC) of elements in the same period or group of the periodic table might be inaccurate and the results could be biased. To address this inadequacy, the non-parametric kernel density estimation (NPKDE) with its optimal bandwidths and testing methods were developed for establishing SSDs. The NPKDE was better fit, more robustness and better predicted than conventional normal and logistic parametric density estimations for constructing SSDs and deriving acute HC5 and WQC for transition metals in the fourth period of the periodic table. The decreasing sequence of HC5 values for the transition metals in the fourth period was Ti > Mn > V > Ni > Zn > Cu > Fe > Co > Cr(VI), which were not proportional to atomic number in the periodic table, and for different metals the relatively sensitive species were also different. The results indicated that except for physical and chemical properties there are other factors affecting toxicity mechanisms of transition metals. The proposed method enriched the methodological foundation for WQC. Meanwhile, it also provided a relatively innovative, accurate approach for the WQC derivation and risk assessment of the same group and period metals in aquatic environments to support protection of aquatic organisms.

源语言英语
页(从-至)343-350
页数8
期刊Environmental Pollution
221
DOI
出版状态已出版 - 2017
已对外发布

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    可持续发展目标 3 良好健康与福祉

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