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Application of a multi-method approach in characterization of natural aquatic colloids from different sources along Huangpu River in Shanghai, China

机译:多种方法在上海黄浦江不同来源天然水体胶体表征中的应用

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摘要

Natural colloid properties and the impact of human activities on these properties are important considerations for studies seeking to understand the fate and transport of pollutants. In this study, the relationship between size and fluorescence properties of natural colloids from 4 different sources were quantified using a multi-method analytical approach including UV-visible and fluorescence spectroscopy, flow field flow fractionation (F1FFF) coupled online to fluorescence spectrometer, and atomic force microscopy (AFM). Results indicate that colloids from pristine natural river water have higher aromaticity and humification, higher fluorescent intensity, and smaller size compared to those from the rivers impacted by livestock. The majority of colloids are smaller than 10 nm in size as measured by AFM and FIFFF. Colloid size measured by FIFFF coupled to fluorescence spectroscopy increases in the order peak C (Ex/Em at 300-340/400-460 nm) < peak D (Ex/Em at 210-230/340-360 nm) < peak T (Ex/Em at 270-280/330-370 nm) < peak A (Ex/Em at 210-250/400-460 nm), revealing that optical properties such as fluorescence are correlated with size. This trend is confirmed by the principal component analysis, which demonstrates that the first principal component (PC1) reflecting colloid optical properties decrease with the increase in PC3 which is correlated to the colloid size.
机译:天然胶体性质和人类活动对这些性质的影响是寻求了解污染物的归宿和运输的研究的重要考虑因素。在这项研究中,使用多种方法分析了来自4种不同来源的天然胶体的大小与荧光性质之间的关系,该方法包括紫外可见光谱和荧光光谱,在线耦合至荧光光谱仪的流场流动分馏(F1FFF)和原子力显微镜(AFM)。结果表明,与受牲畜影响的河流相比,原始天然河水中的胶体具有更高的芳香性和增湿性,更高的荧光强度和更小的尺寸。通过AFM和FIFFF测量,大多数胶体的尺寸小于10nm。通过FIFFF结合荧光光谱法测量的胶体大小以峰C(Ex / Em在300-340 / 400-460 nm处)<峰D(Ex / Em在210-230 / 340-360 nm处Ex / Em)<峰T(在270-280 / 330-370 nm处的Ex / Em)<峰值A(在210-250 / 400-460 nm处的Ex / Em),表明荧光等光学性质与尺寸相关。主成分分析证实了这一趋势,该分析表明,反映胶体光学性质的第一主成分(PC1)随着PC3的增加而降低,而PC3与胶体大小相关。

著录项

  • 来源
    《The Science of the Total Environment》 |2016年第1期|228-236|共9页
  • 作者单位

    School of Geography and Environment, Key Laboratory of Poyang Lake Wetland and Watershed Research, Ministry of Education, Jiangxi Normal University, 99 Ziyang Road, Nanchang 330022, China,Center for Environmental Nanoscience and Risk, Arnold School of Public Health, University of South Carolina, 921 Assembly Street, Columbia 29208, USA,State Key Laboratory of Estuarine and Coastal Research, East China Normal University, 3663 North Zhongshan Road, Shanghai 200062, China;

    School of Geography and Environment, Key Laboratory of Poyang Lake Wetland and Watershed Research, Ministry of Education, Jiangxi Normal University, 99 Ziyang Road, Nanchang 330022, China;

    Center for Environmental Nanoscience and Risk, Arnold School of Public Health, University of South Carolina, 921 Assembly Street, Columbia 29208, USA;

    State Key Laboratory of Estuarine and Coastal Research, East China Normal University, 3663 North Zhongshan Road, Shanghai 200062, China,Key Laboratory of Geographic Information Science of the Ministry of Education, Department of Geosciences, East China Normal University, 3663 Norm Zhongshan Road, Shanghai, 200062, China;

    State Key Laboratory of Estuarine and Coastal Research, East China Normal University, 3663 North Zhongshan Road, Shanghai 200062, China;

    Center for Environmental Nanoscience and Risk, Arnold School of Public Health, University of South Carolina, 921 Assembly Street, Columbia 29208, USA;

    Center for Environmental Nanoscience and Risk, Arnold School of Public Health, University of South Carolina, 921 Assembly Street, Columbia 29208, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Colloids; Absorbance; Fluorescence; Size distribution; Principle component analysis (PCA);

    机译:胶体;吸光度荧光;尺寸分布;主成分分析(PCA);

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