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Using new hetero-spectral two-dimensional correlation analyses and synchrotron-radiation- based spectromicroscopy to characterize binding of Cu to soil dissolved organic matter

  • [设施]:上海设施
  • [期刊/会议名称]:Environmental Pollution
  • [摘要]:Understanding the binding characteristics of copper (Cu) to different functional groups in soil dissolved organic matter (DOM) is important to explore Cu toxicity, bioavailability and ultimate fate in the envi- ronment. However, the methods used to explore such binding characteristics are still limited. Here, two- dimensional correlation spectroscopy (2DCOS) integrated with Fourier transform infrared (FTIR), 29Si nuclear magnetic resonance (NMR), 27Al NMR, and synchrotron-radiation-based FTIR spectromicroscopy were used to explore the binding characteristics of Cu to soil DOM as part of a long-term (23 years) fertilization experiment. Compared with no fertilization and inorganic fertilization (NPK), long-term pig manure fertilization (M) treatment significantly increased the concentration of total and bioavailable Cu in soils. Furthermore, hetero-spectral 2DCOS analyses demonstrated that the binding characteristics of Cu onto functional groups in soil DOM were modified by fertilization regimes. In the NPK treatment, Cu was bound to aliphatic C, whereas in the manure treatment SieO groups had higher affinity toward Cu than aliphatic C. Also, the sequence of binding of functional groups to Cu was modified by the fertilization treatments.Moreover, synchrotron-radiation-based FTIR spectromicroscopy showed that Cu, clay minerals and sesquioxides, and C functional groups were heterogeneously distributed at the micro-scale. Specifically, clay-OH as well as mineral elements had a distribution pattern similar to Cu, but certain (but not all) C forms showed a distribution pattern inconsistent with that of Cu. The combination of synchrotron radiation spectromicroscopy and 2DCOS is a useful tool in exploring the interactions among heavy metals, minerals and organic components in soils.
  • [发表日期]:2017
  • [第一作者]:孙富生
  • [第一作者单位]:南京农业大学
  • [通讯作者]:余光辉
  • [通讯作者单位]:南京农业大学
  • [论文类型]:0
  • [期刊分类]:SCI2区
  • [学科分类]:环境科学_生态学
  • [影响因子]:4.839
  • [关键词]:Copper Dissolved organic matter Fourier transform infrared spectroscopy Long-term fertilization experiment Soil minerals Two-dimensional correlation spectroscopy
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