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首页> 外文期刊>Environmental research >Degradation of ibuprofen and phenol with a Fenton-like process triggered by zero-valent iron (ZVI-Fenton)
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Degradation of ibuprofen and phenol with a Fenton-like process triggered by zero-valent iron (ZVI-Fenton)

机译:用零价铁(ZVI-FENTON)触发的FENTON样过程的离子戊烯和苯酚的降解

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摘要

It is shown here that ZVI-Fenton is a suitable technique to achieve effective degradation of ibuprofen and phenol under several operational conditions. Degradation of ibuprofen was possible in the pH interval 3-6 in both synthetic laboratory systems and actual wastewater (secondary treatment effluent), but operation at the higher pH values required higher H_2O_2 concentration and/or higher ZVI loading. In the case of real wastewater we offset the lower degradation efficiency, caused by the occurrence of organic and inorganic interfering agents, by carrying out multiple H_2O_2 additions. The studied wastewater sample had a buffer-capacity minimum at pH 4-5, and optimal treatment for ibuprofen degradation might take place at either pH 4 or 6. With a reagents cost in the order of 0.06-0.10 $ m~3, the technique appears as very competitive and promising for tertiary wastewater treatment. There is a clear trade-off between savings in pH-fixing reagents and higher consumption of ZVI-Fenton reagents at the different pH values. The final choice in real application scenarios could be based on cost considerations (which favour pH 4) and/or the eventual fate of wastewater. For instance, wastewater reuse might place requirements on the salinity that is increased by the acidificationeutralization steps: in this case, operation at pH 6 is preferred. Interestingly, the ZVI-Fenton degradation of ibuprofen led to very low generation of toxic 4-isobutylacetophenone (IBAP, which is the ibuprofen by-product raising the highest concern), because of the combination of low formation yields and limited IBAP stability in the optimal reaction conditions. In addition to ibuprofen, phenol could be degraded as well by ZVI-Fenton. Interestingly, the ability of ZVI-Fenton to degrade both ibuprofen and phenol under similar conditions might open up the way to apply this technique to additional pollutants as well as to pollutant mixtures.
机译:这里示出了ZVI-FENTON是一种合适的技术,可以在若干操作条件下实现布洛芬和苯酚的有效降解。在合成实验室系统和实际废水(二次处理流出物)中,在pH间隔3-6中可以降解布洛芬的降解,但在较高的pH值下的操作需要较高的H_2O_2浓度和/或更高的ZVI负载。在真正的废水的情况下,我们抵消了通过进行多种H_2O_2的加法而抵消了有机和无机干扰剂的发生较低的降解效率。研究的废水样品在pH 4-5下具有缓冲容量最小值,并且可以在pH 4或6中进行对布洛芬降解的最佳处理。试剂的费用为0.06-0.10 $ m〜3,该技术对于三级废水处理似乎非常有竞争力和有前途。在不同pH值的pH-固定试剂中节省和ZVI-FENTON试剂的较高消耗之间存在明显的权衡。实际应用方案中的最终选择可以基于成本考虑(最有利于ph 4)和/或废水的最终命运。例如,废水再利用可能会在酸化/中和步骤增加的盐度上放置要求:在这种情况下,pH6的操作是优选的。有趣的是,ZVI-FENTON对布洛芬的降解导致了极低的毒性4-异丁基乙酮(IBAP,这是升高最高关注的布洛芬副产物),因为低形成产量和IBAP稳定性在最佳状态下的组合反应条件。除了布洛芬之外,苯酚也可以通过ZVI-FENTON降解。有趣的是,ZVI-FENTON在类似条件下降解布洛芬和苯酚的能力可能会使应用该技术应用于额外的污染物以及污染物混合物。

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