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首页> 外文期刊>The Science of the Total Environment >Tracking metal ion-induced organic membrane fouling in nanofiltration by adopting spectroscopic methods: Observations and predictions
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Tracking metal ion-induced organic membrane fouling in nanofiltration by adopting spectroscopic methods: Observations and predictions

机译:光谱法跟踪纳滤中金属离子诱导的有机膜结垢:观察和预测

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摘要

Natural organic matter (NOM) with the size approaching to membrane pore size is commonly considered as the crucial component leading to severe pore blocking and superfluous energy consumption. Aquatic metal ions coexisting with this NOM constituent (target NOM) exert a significant influence on membrane filtration performance; however, little work elucidated their interactions and the impacts on nanofiltra-tion (NF). Therefore, we systematically investigated this issue by titrating three environmentally-relevant metal ions (Al~(3+), Fe~(3+) and Cu~(2+)) into the target NOM sample obtained by pre-filtering using NF membrane. Fast spectrophotometric techniques were employed to observe the interactive performance. Results suggested that all metal ions at their critical concentrations caused severe flux decline; Cu~(2+) at a very low concentration of 5 μM, Al~(3+) and Fe~(3+) at 20 μM. NF performance recovered when the concentrations were beyond theit critical values, and was improved at excessive concentration when flocs formed. Relationship between spectroscopic characteristics and NF performance was particularly addressed. UV-vis spectrum can be expected to be useful and predictive in membrane fouling control when Al~(3+) or Fe~(3+) presented. However, fluorescence fingerprint was not likely that effective since fluorescence intensity continuously reduced with the increasing metal ion concentration, attributed to their quenching effect on NOM fluorophores.
机译:天然有机物(NOM)的大小接近膜孔径,通常被认为是导致严重的孔阻塞和多余能量消耗的关键成分。与该NOM成分(目标NOM)共存的水生金属离子对膜的过滤性能产生重大影响。然而,很少有工作阐明它们的相互作用以及对纳滤(NF)的影响。因此,我们通过将三种与环境相关的金属离子(Al〜(3 +),Fe〜(3+)和Cu〜(2+))滴定到通过使用NF膜预过滤而获得的目标NOM样品中,系统地研究了这个问题。采用快速分光光度法观察相互作用性能。结果表明,所有处于临界浓度的金属离子都会导致通量严重下降。浓度非常低的5μM的Cu〜(2+),浓度20μM的Al〜(3+)和Fe〜(3+)。当浓度超过其临界值时,NF性能恢复;当絮凝物形成时,NF浓度提高。特别讨论了光谱特性与NF性能之间的关系。当存在Al〜(3+)或Fe〜(3+)时,UV-vis光谱有望用于膜污染控制。但是,荧光指纹不太可能有效,因为荧光强度随着金属离子浓度的增加而连续降低,这归因于它们对NOM荧光团的猝灭作用。

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  • 来源
    《The Science of the Total Environment》 |2020年第15期|135051.1-135051.11|共11页
  • 作者单位

    Key Laboratory of Drinking Water Science and Technology Research Centre for Eco-Environmental Sciences Chinese Academy of Sciences Beijing 100085 China Department of Civil and Environmental Engineering Imperial College London South Kensington Campus London SW7 2AZ UK College of Architecture and Civil Engineering Beijing University of Technology Beijing 100024 China;

    Department of Civil and Environmental Engineering Imperial College London South Kensington Campus London SW7 2AZ UK School of Chemistry and Chemical Engineering Beijing Institute of Technology Beijing 100081 China;

    College of Architecture and Civil Engineering Beijing University of Technology Beijing 100024 China;

    Department of Civil and Environmental Engineering Imperial College London South Kensington Campus London SW7 2AZ UK;

    Key Laboratory of Drinking Water Science and Technology Research Centre for Eco-Environmental Sciences Chinese Academy of Sciences Beijing 100085 China Department of Civil and Environmental Engineering Imperial College London South Kensington Campus London SW7 2AZ UK;

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

    Natural organic matter; Metal ions; Complexation; Nanofiltration; Spectrophotometric method;

    机译:天然有机物;金属离子;复杂性纳滤;分光光度法;

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