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首页> 外文期刊>Journal of Hazardous Materials >Exploring the fate and oxidation behaviors of different organic constituents in landfill leachate upon Fenton oxidation processes using EEM-PARAFAC and 2D-COS-FTIR
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Exploring the fate and oxidation behaviors of different organic constituents in landfill leachate upon Fenton oxidation processes using EEM-PARAFAC and 2D-COS-FTIR

机译:利用EEM-PARAFAC和2D-COS-FTIR探索Fenton氧化过程中垃圾渗滤液中不同有机成分的结局和氧化行为

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摘要

In this work, the changes of different organic constituents in landfill leachate were tracked in Fenton oxidation processes with different operation parameters including H2O2 doses, pH, and the ratios of [H2O2]/[Fe] via fluorescence excitation emission matrix parallel factor analysis (EEM-PARAFAC) and two-dimensional correlation spectroscopy (2D-COS). One tryptophan-like (C1), one fulvic-like (C2), and one humic-like (C3) components were identified in the leachates. The removal behaviors of the individual fluorescent components were dependent upon the operation conditions, suggesting the existence of unique characteristics with respect to the responses to the oxidation mechanisms, which were likely altered by different operation conditions. For all tested conditions, a greater extent of removal was consistently found for C3 versus Cl and C2 except for the relatively high pH ranges (6.0), in which C2 presented the highest removal rates. 2D-COS combined with synchronous fluorescence spectra exhibited the preferential oxidation sequence in the order of C3 Cl C2 with higher H2O2 doses. 2D-COS coupled with Fourier transform infrared (2D-COS-FTIR) showed that aromatic functional groups were initially oxidized, followed by the removal of carboxylic groups and the formation of inorganic functional groups and aldehyde or ketonic groups. Hetero 2D-COS maps further revealed the close association between the aromatic groups and C3, and between the carboxylic groups and C1. This study utilizing 2D-COS provided new insights into the dynamic behavior of heterogeneous landfill leachate in Fenton oxidation processes under varying operation conditions.
机译:在这项工作中,通过荧光激发发射矩阵并行因子分析(EEM),在Fenton氧化过程中,以不同的操作参数(包括H2O2剂量,pH和[H2O2] / [Fe]的比率)跟踪了垃圾渗滤液中不同有机成分的变化。 -PARAFAC)和二维相关光谱法(2D-COS)。在渗滤液中鉴定出一种色氨酸样(C1),一种黄腐病毒样(C2)和一种腐殖质样(C3)组分。各个荧光成分的去除行为取决于操作条件,这表明在对氧化机理的响应方面存在独特的特性,这可能会因不同的操作条件而改变。在所有测试条件下,除Cl2和C2相对较高的pH范围(> 6.0)(其中C2表现出最高的去除率)外,C3始终比C1和C2去除率更高。 2D-COS与同步荧光光谱结合显示了较高的H2O2剂量时,优先氧化顺序为C3> Cl> C2。 2D-COS与傅立叶变换红外光谱(2D-COS-FTIR)结合显示,芳族官能团首先被氧化,然后除去羧基,并形成无机官能团和醛或酮基。 Hetero 2D-COS图谱进一步揭示了芳基和C3之间以及羧基和C1之间的紧密联系。这项利用2D-COS进行的研究为在不同操作条件下Fenton氧化过程中非均质垃圾渗滤液的动态行为提供了新的见解。

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