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The Variable Fate of Ag and TiO_2 Nanoparticles in Natural Soil Solutions-Sorption of Organic Matter and Nanoparticle Stability

机译:天然土壤溶液中Ag和TiO_2纳米颗粒的可变命运-有机质的吸附和纳米颗粒的稳定性

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摘要

Engineered nanoparticles (NP) like Ag and TiO2 offer unique properties for various applications. Thus, the entry of the NP in soil environments is expected to increase in the future due to their growing industrial use. To avoid potential hazards due to these anthropogenic products, NP behavior in the environment should be well understood. In natural soil solutions, we investigated NOM adsorption onto Ag and TiO2 NP and its influence on NP colloidal stability. Therefore, we extracted soil solutions from a floodplain soil (Fluvisol) and a farmland soil (Cambisol) differing in NOM quality and inorganic ion concentration. We measured the amount of adsorbed organic carbon as well as changes in aromaticity and molecular weight of NOM upon adsorption onto NP. Additionally, the size and zeta potential of NP in both soil solutions were investigated. We observed that the highly hydrophilic NOM of floodplain soil solution rich in inorganic ions strongly adsorbed to Ag but not to TiO2 NP. Instead, sorption to TiO2 NP was observed for the more hydrophobic NOM of the farmland soil with low ionic strength which did not sorb to Ag NP. These differences had a strong effect on NP stability, leading to Ag NP destabilization in case of floodplain soil solution and TiO2 NP stabilization in the presence of farmland soil solution. Our results point out the necessity of studies in more complex systems and suppose that oxic and metallic NP might show very different fate depending on the environment they are exposed to.
机译:诸如Ag和TiO2之类的工程纳米颗粒(NP)为各种应用提供了独特的性能。因此,由于其工业用途的增加,预计NP在土壤环境中的进入在将来会增加。为了避免这些人为产物造成的潜在危害,应充分了解环境中的NP行为。在天然土壤溶液中,我们研究了NOM在Ag和TiO2 NP上的吸附及其对NP胶体稳定性的影响。因此,我们从NOM质量和无机离子浓度不同的洪泛区土壤(Fluvisol)和农田土壤(Cambisol)中提取了土壤溶液。我们测量了吸附在NP上的有机碳的吸附量以及NOM的芳香度和分子量的变化。此外,还研究了两种土壤溶液中NP的大小和ζ电位。我们观察到,富含无机离子的洪泛区土壤溶液的高亲水性NOM强烈吸附到Ag上,而不吸附到TiO2 NP上。相反,在离子强度低的农田土壤中,疏水性更强的NOM被吸附到TiO2 NP上,而离子强度却没有被Ag NP吸附。这些差异对NP稳定性有很强的影响,在洪泛区土壤溶液的情况下导致Ag NP不稳定,而在农田土壤溶液的存在下导致TiO2 NP稳定。我们的结果指出了在更复杂的系统中进行研究的必要性,并假设有氧和金属NP的命运取决于所暴露的环境,它们的命运可能大不相同。

著录项

  • 来源
    《Water, Air, and Soil Pollution》 |2019年第3期|62.1-62.14|共14页
  • 作者单位

    Tech Univ Berlin, Dept Soil Sci, Inst Ecol, Ernst Reuter Pl 1, D-10587 Berlin, Germany|German Environm Agcy, Sect Drinking Water Treatment & Resource Protect, Schichauweg 58, D-12307 Berlin, Germany;

    Tech Univ Berlin, Dept Soil Sci, Inst Ecol, Ernst Reuter Pl 1, D-10587 Berlin, Germany;

    Tech Univ Berlin, Dept Soil Sci, Inst Ecol, Ernst Reuter Pl 1, D-10587 Berlin, Germany|German Environm Agcy, Sect Drinking Water Treatment & Resource Protect, Schichauweg 58, D-12307 Berlin, Germany|Albert Ludwigs Univ Freiburg, Chair Soil Ecol, Bertoldstr 17, D-79098 Freiburg, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nanomaterial; Soil extract; Molecular weight; Aromatic compounds; Organic coating; Ionic strength;

    机译:纳米材料;土壤提取物;分子量;芳族化合物;有机涂层;离子强度;
  • 入库时间 2022-08-18 04:15:53

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