首页> 外文期刊>Environmental Science: Water Research & Technology >Degradation of leachate from a semi-anaerobic aged refuse biofilter by the ZVI/H_2O_2 process coupled with microwave irradiation: optimization, organics transformation, and reaction mechanisms
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Degradation of leachate from a semi-anaerobic aged refuse biofilter by the ZVI/H_2O_2 process coupled with microwave irradiation: optimization, organics transformation, and reaction mechanisms

机译:ZVI / H_2O_2工艺结合微波辐射降解半厌氧垃圾生物滤池中的渗滤液:优化,有机物转化和反应机理

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The semi-aerobic aged refuse biofilter (SAARB) is highly efficient in removing organic matter and ammonia nitrogen, but the effluent of the SAARB (SAARB leachate) contains high concentrations of recalcitrant organics. In this study, zero valent iron and hydrogen peroxide (ZVI/H2O2) coupled with microwave irradiation were used to treat the SAARB leachate. The effects of the initial pH, ZVI dosage, H2O2 dosage, microwave (MW) power, and reaction time were systematically investigated. Results showed that under optimum conditions [initial pH of 3.0, (ZVI)(0) = 0.2 g L-1, (H2O2) 0 = 7.5 mL L-1, MW power = 450 W and reaction time = 14 min], the removal efficiencies of chemical oxygen demand, substances absorbing ultraviolet light at 254 nm, and reductions of color number were 28.11%, 48.60%, and 81.21%, respectively. In control experiments, the best treatment was achieved in the combined MW-ZVI/H2O2 process, which indicated a synergetic treatment effect of MW, ZVI and H2O2. Two fluorescent components were identified by parallel factor analysis as fulvic-like substances and humic-like substances. Both of these substances were greatly degraded in the MW-ZVI/H2O2 process, resulting in a sharp reduction of organic matter concentration, molecular weight, and condensation degree, and a significant improvement in the biodegradability of the resulting effluent. Various analyses showed that iron ions could be leached from ZVI, generating iron-based oxides (e.g., FeO, Fe2O3, and FeOOH) in particles of ZVI, which may catalyze the Fenton process. Therefore, in the MW-ZVI/H2O2 process, the removal mechanism of fulvic-and humic-like substances included heterogeneous and homogeneous Fenton reactions, and adsorption and precipitation of ironbased oxides, all of which were promoted by MW energy. As a result, the MW-ZVI/H2O2 process was highly efficient in treating the SAARB leachate.
机译:半好氧老化垃圾生物滤池(SAARB)在去除有机物和氨氮方面非常高效,但是SAARB(SAARB渗滤液)的流出物中含有高浓度的难降解有机物。在这项研究中,零价铁和过氧化氢(ZVI / H2O2)结合微波辐射被用于处理SAARB渗滤液。系统地研究了初始pH,ZVI用量,H2O2用量,微波(MW)功率和反应时间的影响。结果表明,在最佳条件下[初始pH为3.0,(ZVI)(0)= 0.2 g L-1,(H2O2)0 = 7.5 mL L-1,MW功率= 450 W和反应时间= 14分钟],化学需氧量的去除效率,在254 nm处吸收紫外线的物质和色数的减少分别为28.11%,48.60%和81.21%。在对照实验中,MW-ZVI / H2O2组合工艺获得了最佳处理效果,表明MW,ZVI和H2O2协同处理效果。通过平行因子分析鉴定了两个荧光成分,分别是黄腐样物质和腐殖质样物质。这两种物质在MW-ZVI / H2O2工艺中都大大降解,导致有机物浓度,分子量和缩合度急剧降低,并且所产生的废水的生物降解能力得到显着改善。各种分析表明,铁离子可能会从ZVI中浸出,从而在ZVI颗粒中生成铁基氧化物(例如FeO,Fe2O3和FeOOH),这可能会催化Fenton过程。因此,在MW-ZVI / H2O2工艺中,黄腐和腐殖质类物质的去除机理包括非均相的Fenton反应和均相的Fenton反应,以及铁基氧化物的吸附和沉淀,所有这些都受到MW能量的促进。结果,MW-ZVI / H2O2工艺在处理SAARB渗滤液方面非常高效。

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