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In-Situ Molecular-Level Elucidation of Organofluorine Binding Sites in a Whole Peat Soil

机译:整个泥炭土壤中有机氟结合位点的原位分子水平阐明

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摘要

The chemical nature of xenobiotic binding sites in soils is of vital importance to environmental biogeochemistry. Interactions between xenobiotics and the naturally occurring organic constituents of soils are strongly correlated to environmental persistence, bioaccessibility, and ecotoxicity. Nevertheless, because of the complex structural and chemical heterogeneity of soils, studies of these interactions are most commonly performed indirectly, using correlative methods, fractionation, or chemical modification. Here we identify the organic components of an unmodified peat soil where some organofluorine xenobiotic compounds interact using direct molecular-level methods. Using ~(19)F→~1H cross-polarization magic angle spinning (CP-MAS) nuclear magnetic resonance (NMR) spectroscopy, the ~(19)F nuclei of organofluorine compounds are used to induce observable transverse magnetization in the ~1H nuclei of organic components of the soil with which they interact after sorption. The observed ~(19)F→~1H CP-MAS spectra and dynamics are compared to those produced using model soil organic compounds, lignin and albumin. It is found that lignin-like components can account for the interactions observed in this soil for heptafluoronaphthol (HFNap) while protein structures can account for the interactions observed for perfluorooctanoic acid (PFOA). This study employs novel comprehensive multi-phase (CMP) NMR technology that permits the application of solution-, gel-, and solid-state NMR experiments on intact soil samples in their swollen state.
机译:土壤中异种生物结合位点的化学性质对环境生物地球化学至关重要。异种生物与土壤的天然有机成分之间的相互作用与环境持久性,生物可及性和生态毒性密切相关。然而,由于土壤的结构和化学异质性复杂,因此最常见的间接研究是使用相关方法,分馏或化学改性间接进行。在这里,我们确定了未经改性的泥炭土壤中的有机组分,其中一些有机氟异种生物化合物使用直接的分子水平方法相互作用。使用〜(19)F→〜1H交叉极化幻角旋转(CP-MAS)核磁共振(NMR)光谱,有机氟化合物的〜(19)F核用于诱导〜1H核中可观察到的横向磁化。吸附后与之相互作用的土壤有机成分的数量将观察到的〜(19)F→〜1H CP-MAS光谱和动力学与使用模型土壤有机化合物,木质素和白蛋白产生的光谱和动力学进行比较。发现木质素样成分可以解释在土壤中观察到的七氟萘酚(HFNap)相互作用,而蛋白质结构可以解释对于全氟辛酸(PFOA)观察到的相互作用。这项研究采用了新颖的综合多相(CMP)NMR技术,该技术允许在溶胀状态下的完整土壤样品上进行溶液,凝胶和固态NMR实验。

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  • 来源
    《Environmental Science & Technology》 |2012年第19期|p.10508-10513|共6页
  • 作者单位

    Department of Chemistry, University of Toronto, 1265 Military Trail, Toronto, Ontario, Canada, M1C 1A4;

    Department of Chemistry, University of Toronto, 1265 Military Trail, Toronto, Ontario, Canada, M1C 1A4;

    Department of Chemistry, University of Toronto, 1265 Military Trail, Toronto, Ontario, Canada, M1C 1A4;

    Department of Chemistry, University of Toronto, 1265 Military Trail, Toronto, Ontario, Canada, M1C 1A4;

    Bruker BioSpin Corporation, IS Fortune Drive, Billerica, Massachusetts 01821-3991, United States;

    Bruker BioSpin Corporation, IS Fortune Drive, Billerica, Massachusetts 01821-3991, United States;

    Bruker BioSpin Corporation, IS Fortune Drive, Billerica, Massachusetts 01821-3991, United States;

    Bruker BioSpin Corporation, IS Fortune Drive, Billerica, Massachusetts 01821-3991, United States;

    Bruker BioSpin Corporation, IS Fortune Drive, Billerica, Massachusetts 01821-3991, United States;

    Canada Centre for Inland Waters, Environment Canada, 867 Lakeshore Road, Burlington, Ontario, Canada, L7S 1A1;

    Bruker Canada Ltd., 555 Steeles Avenue East, Milton, Ontario, Canada, L9T 1Y6;

    Bruker Canada Ltd., 555 Steeles Avenue East, Milton, Ontario, Canada, L9T 1Y6;

    Bruker Canada Ltd., 555 Steeles Avenue East, Milton, Ontario, Canada, L9T 1Y6;

    Department of Chemistry, University of Toronto, 1265 Military Trail, Toronto, Ontario, Canada, M1C 1A4;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-17 14:02:55

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