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Transformation mechanisms of refractory organic matter in mature landfill leachate treated using an Fe~0-participated O_3/H_2O_2 process

机译:使用Fe〜0-参加O_3 / H_2O_2处理处理成熟垃圾填埋渗滤液中难治性有机物的转化机制

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An Fe-0-participated O-3/H2O2 (Fe-0-O-3/H2O2) process was applied to remove refractory organic matter (OM) in semi-aerobic aged refuse biofilter (SAARB) leachate arising from treating mature landfill leachate. The degradation and transformation characteristics of refractory OM were revealed at molecular level. Removal efficiencies of aromatic substances were 63.55% by the Fe-0-O-3/H2O2 process (much higher than in other single or binary processes), and fulvic- and humic-like substances were more effectively degraded by this process than by other treatments. According to Fourier transform-ion cyclotron resonance mass spectrometry (FT-ICR MS), 6645 categories of OM in SAARB leachate were identified. Although there was little difference in number of OM categories after treatment using the single-O-3 and Fe-0-O-3/H2O2 processes, Fe-0-O-3/H2O2 process can better reduce OM relative abundance. It is noteworthy that the Fe-0-O-3/H2O2 process more effectively degraded CHONS compounds than the single-O-3 process, while also producing more CHO compounds having higher bio-availability. The enhanced degradation efficiency of the Fe-0-O-3/H2O2 process were attributed to the formation of the Fenton process initiated by leached Fe2+ and H2O2. The heterogeneous catalytic effect from iron (hydro) oxides for O-3/ H2O2 also increased the treatment capacity of the Fe-0-O-3/H2O2 process, resulting in better total organic carbon removal. The Fe-0-O-3/H2O2 process is an efficient method for removing refractory OM in SAARB leachate. (C) 2020 Elsevier Ltd. All rights reserved.
机译:施用Fe-0-参与的O-3 / H 2 O 2(Fe-0-O-3 / H 2 O 2),以除去从治疗成熟垃圾填埋液渗滤液产生的半氧化垃圾垃圾箱中的耐火材料有机物质(OM) 。在分子水平下揭示了难治性OM的降解和转化特性。 Fe-0-O-3 / H 2 O 2工艺的芳族物质的去除效率为63.55%(远高于其他单一或二进制过程),并且通过该过程比其他方式更有效地降低了富含腐殖质和腐殖质的物质治疗。根据傅里叶变换离子回旋谐振质谱(FT-ICR MS),鉴定了6645个类别的萨拉酸盐液中的OM。虽然使用单o-3和Fe-0-O-3 / H 2 O 2工艺处理后的OM类别数量差异很小,但FE-0-O-3 / H2O2工艺可以更好地减少相对丰度。值得注意的是,Fe-0-O-3 / H2O2过程更有效地降解了少于单o-3工艺,同时还生产具有更高生物可用性的CHO化合物。 Fe-0-O-3 / H 2 O 2工艺的增强的降解效率归因于由浸出的Fe2 +和H 2 O 2引发的芬顿工艺的形成。来自铁(Hydro)氧化物的异质催化作用O-3 / H 2 O 2也增加了Fe-0-O-3 / H 2 O 2工艺的处理能力,导致较好的总有机碳除去。 Fe-0-O-3 / H 2 O 2工艺是一种有效的方法,用于在SaARB渗滤液中去除难治性OM。 (c)2020 elestvier有限公司保留所有权利。

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