首页> 外文期刊>Environmental Science and Pollution Research >Investigating the behavior of binding properties between dissolved organic matter (DOM) and Pb(II) during the soil sorption process using parallel factor analysis (PARAFAC) and two-dimensional correlation spectroscopy (2D-COS)
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Investigating the behavior of binding properties between dissolved organic matter (DOM) and Pb(II) during the soil sorption process using parallel factor analysis (PARAFAC) and two-dimensional correlation spectroscopy (2D-COS)

机译:使用平行因子分析(PARAFAAC)和二维相关光谱(2D-COS)在土壤吸附过程中研究溶解有机物质(DOM)和Pb(II)之间结合特性的特性的行为(2D-COS)

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摘要

Dissolved organic matter (DOM) is the most active component in an environmental system. It can influence the chemical and structural characteristics of soil. In this work, three-dimensional excitation-emission matrix (3D-EEM) fluorescence spectroscopy, parallel factor analysis (PARAFAC), and two-dimensional correlation spectroscopy (2D-COS) integrated with synchronous fluorescence were used to explore the interaction between soil-derived DOM and Pb(II) during the soil sorption process. According to the data of batch sorption experiments, the adsorbing capacities of soil, soil + 5 mL DOM, and soil + 10 mL DOM were 16.96, 18.29, and 19.32 mg g(-1), respectively, which indicated that DOM significantly enhanced the adsorption efficiency of Pb(II). The pseudo-second-order kinetic equation could well explain the adsorption process. The adsorbing data conformed to the isotherm of Langmuir adsorption. According to EEM-PARAFAC results, there are two major components from DOM. Protein-like substances were represented by component 1, and humic-like and fulvic-like substances were represented by component 2. Based on 3D-EEM, the results further showed that the intensities of component 1 and component 2 were obviously quenched with the increase of Pb(II) concentrations. The combined interpretations of the 2D-COS map for the DOM revealed that Pb(II) binding might occur sequentially in the order of humic-like fraction > protein-like fraction (346 > 282 nm). According to synchronous fluorescence spectra, static fluorescence quenching was the major process of quenching.
机译:溶解有机物(DOM)是环境系统中最活性的组分。它可以影响土壤的化学和结构特征。在这项工作中,使用三维激发发射矩阵(3D-EEM)荧光光谱,并行因子分析(PARAFAC)和与同步荧光集成的二维相关光谱(2D-COS)用于探讨土壤之间的相互作用 - 在土壤吸附过程中衍生的DOM和PB(II)。根据间歇吸附实验的数据,土壤,土壤+ 5mL Dom和土壤+ 10mL Dom的吸附能力分别为16.96,18.29和19.32mg g(-1),表明DOM显着增强了PB(II)的吸附效率。伪二阶动力学方程可以很好地解释吸附过程。吸附数据符合Langmuir吸附的等​​温线。根据EEM-PARAFAC结果,来自DOM有两种主要组件。蛋白质样物质由组分1表示,并且通过组分2表示腐殖液和富含物质。基于3D-EEM,结果进一步表明组分1和组分2的强度随着增加而被猝灭Pb(II)浓度。 DOM的2D-COS图的组合解释显示,Pb(II)结合可能以腐殖质的级分>蛋白质样部分(346> 282nm)顺序序列地发生。根据同步荧光光谱,静态荧光猝灭是淬火的主要过程。

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