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首页> 外文期刊>Waste Management >Using EEM-PARAFAC to probe NF membrane fouling potential of stabilized landfill leachate pretreated by various options
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Using EEM-PARAFAC to probe NF membrane fouling potential of stabilized landfill leachate pretreated by various options

机译:使用EEM-PARAFAC探测经过各种选择预处理的稳定垃圾填埋场渗滤液的NF膜结垢潜力

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摘要

Pretreatment processes substantially modify the organic composition of landfill leachate, which affect the fouling behavior in the post-treatment of membrane filtration. In this study, the changes in the chemical composition of stabilized landfill leachate upon various pretreatments, which encompassed coagulation/ flocculation (C/F), ion exchange resins (MIEX), granular activated carbon (GAC) adsorption, and their combinations, were tracked via excitation emission matrix - parallel factor analysis (EEM-PARAFAC), and the membrane fouling potentials were assessed in the subsequent processes of nanofiltration (NF). Fluorescence components, fulvic-like (C1), protein-like (C2), and humic-like (C3), were identified and validated using EEM-PARAFAC. MIEX and C/F pretreatments were not effective to remove C1 and C2, which were associated with relatively small sized and hydrophilic molecules. GAC adsorption did not show any preference with the removal towards different components. These differences in the chemical heterogeneity among the variously pretreated leachates led to the discrepancies in membrane fluxes at a similar leachate concentration. The result also signified the importance of probing the chemical composition of pretreated leachate for the optimization of the post membrane filtration. The sum of C2 and C3 in the pretreated leachate showed a good correlation with reversible membrane fouling resistance (r = 0.93; p<0.05), while C1 was highly correlated with irreversible membrane resistance (r = 0.872; P<0.05). These findings provided a new insight into the applicability of fluorescence spectroscopy for tracking the changes in the membrane fouling potential of stabilized landfill leachate after various pretreatments.
机译:预处理过程会大大改变垃圾渗滤液的有机组成,从而影响膜过滤后处理中的结垢行为。在这项研究中,跟踪了各种预处理对稳定垃圾填埋场渗滤液化学成分的变化,包括凝结/絮凝(C / F),离子交换树脂(MIEX),颗粒活性炭(GAC)吸附及其组合。通过激发发射矩阵-并行因子分析(EEM-PARAFAC),并在随后的纳滤(NF)过程中评估了膜结垢的可能性。使用EEM-PARAFAC鉴定并验证了荧光成分,如富里维克(C1),蛋白(C2)和腐殖质(C3)。 MIEX和C / F预处理不能有效去除C1和C2,这与相对较小的尺寸和亲水性分子有关。随着对不同组分的去除,GAC吸附没有表现出任何偏好。在经过各种预处理的渗滤液中,化学异质性的这些差异导致了在类似的渗滤液浓度下膜通量的差异。该结果还表明探测预处理渗滤液的化学组成对于优化膜后过滤的重要性。预处理渗滤液中的C2和C3的总和与可逆膜污染性具有良好的相关性(r = 0.93; p <0.05),而C1与不可逆膜抗性高度相关(r = 0.872; P <0.05)。这些发现为荧光光谱在各种预处理后跟踪稳定化垃圾渗滤液膜结垢潜力的变化提供了新的见解。

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