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Degradation characteristics of dissolved organic matter in nanofiltration concentrated landfill leachate during electrocatalytic oxidation

机译:纳米滤液浓缩垃圾渗滤液中溶解有机物的降解特性在电催化氧化过程中

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Nanofiltration concentrated landfill leachate (NCLL) is produced during the integration process of biodegradation and nanofiltration, containing a large amount of recalcitrant dissolved organic matter (DOM). In this work, electrocatalytic oxidation technology was employed to degrade DOM in NCLL and spectroscopic technology was applied to explore the structural changes. The results showed that under the optimal experimental condition (pH = 2.0, NaCl concentration = 0.7%, Fe-2(SO4)(3) concentration = 0.8%, the retention time = 6 h), the removal rates of COD, TOC, and UV254 were 99.0%, 57.4%, 99.3% respectively. Ultraviolet-Visible (UV-Vis) spectral analysis showed that aromatic C=C can be effectively degraded by electrocatalytic oxidation, resulting in decreases of aromaticity and molecular weight in NCLL. Two fluorescent components (terrestrial humic-like substances and fulvic-like substances) were identified in NCLL by parallel factor analysis, which can be effectively removed by electrocatalytic oxidation with removal rates of 99.9% and 90.5%, respectively. In addition, through two-dimensional correlation spectroscopic analysis, the sequence of structural changes of the DOM in NCLL was confirmed: unsaturated double bonds - fulvic-like components/aromatic structures - terrestrial humic-like components. These spectral characterization techniques can provide a deep understanding of the degradation pathways of DOM and provide new insights for the treatment of NCLL. (C) 2020 Elsevier Ltd. All rights reserved.
机译:纳滤浓缩垃圾填埋液渗滤液(NCLL)在生物降解和纳米滤波的整合过程中产生,含有大量的氯普普拉族溶解有机物质(DOM)。在这项工作中,使用电催化氧化技术在NCLL中降解DOM,并应用光谱技术探索结构变化。结果表明,在最佳实验条件下(pH = 2.0,NaCl浓度= 0.7%,Fe-2(SO 4)(3)浓度= 0.8%,保留时间= 6h),鳕鱼,TOC的去除率, UV254分别为99.0%,57.4%,99.3%。紫外 - 可见(UV-VI)光谱分析表明,芳族C = C可以通过电催化氧化有效地降解,导致NCLL中的芳香性和分子量降低。通过平行因子分析在NCLL中鉴定出两种荧光成分(陆地腐殖质物质和富含物质),可通过电催化氧化分别通过99.9%和90.5%的去除率有效地除去。另外,通过二维相关光谱分析,确认了NCLL中DOM的结构变化序列:不饱和双键 - >富含果实/芳族结构 - >陆地腐殖质组分。这些光谱表征技术可以深入了解DOM的降解途径,并为治疗NCLL提供新的见解。 (c)2020 elestvier有限公司保留所有权利。

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