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Considerable Fenton and photo-Fenton reactivity of passivated zero-valent iron

机译:相当大的芬顿和钝化零价铁的光芬顿反应性

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摘要

The vulnerability of Zero-Valent Iron (ZVI) to passivation, which significantly decreases its surface reactivity, limits its use as a reducing agent in environmental remediation applications (e.g., permeable reactive barriers). Passivation of ZVI occurs rapidly in ambient environments due to the presence of oxygen and water, as well as during the reduction of contaminants (e.g. chlorinated and nitrated organic compounds) even in anoxic conditions. Passivated zero-valent iron (pZVI) particles are typically covered by an iron (hydr) oxide layer that entails a loss of the typical properties of this material, prevents the reductive activity to take place, and could made pZVI a waste to be disposed of. This work shows that pZVI has considerable Fenton (oxidizing) reactivity in the presence of H2O2 at acidic pH. The pZVI-Fenton process likely involves reaction between H2O2 and the pZVI surface or near-surface species, because the detected levels of leached Fe in the solution bulk were insufficient to account for the observed degradation processes. Still, leached Fe in the solution at pH 2 and 3 would be too concentrated for some possible applications (e.g. wastewater treatment, which would require an additional precipitation step to remove excess Fe). In such a case, operation at pH 4 would be preferred to maintain reasonable reactivity without measurable Fe leaching. The pZVI-Fenton process was inactive above pH 4, but reactivity could be extended up to pH 5 by UVA irradiation. Surprisingly, a pZVI sample that underwent an additional 78 day aging in aqueous solution exhibited a considerable ability to photochemically remove phenol despite a slower initial stage. These properties account for the possible use of a potential waste in decontamination reactions.
机译:零价铁(ZVI)对钝化的脆弱性显着降低其表面反应性,限制其用作环境修复应用中的还原剂(例如,可渗透的反应屏障)。由于存在氧气和水,以及在缺氧条件下,由于存在氧气和水,以及污染物(例如氯化和氮化有机化合物)的减少,ZVI的钝化迅速发生。钝化的零价铁(PZVI)颗粒通常由铁(碳)氧化物层覆盖,其需要损失该材料的典型性质,防止持续的还原活性,并且可以使PZVI成为待处理的废物。该工作表明,PZVI在酸性pH下存在相当大的FENTON(氧化)反应性。 PZVI-FENTON过程可能涉及H 2 O 2和PZVI表面或近表面物种之间的反应,因为溶液大量中检测到的浸出的Fe水平不足以考虑观察到的降解过程。仍然,在pH 2和3的溶液中浸出的Fe对于一些可能的应用来说是过度浓缩的(例如废水处理,这需要另外的沉淀步骤以除去过量的Fe)。在这种情况下,pH4的操作是优选的,以保持合理的反应性而无需可测量的Fe浸出。 PZVI-FENTON工艺在pH 4上以上无活性,但通过UVA辐射可以延长至pH5的反应性。令人惊奇的是,在水溶液中进行另外78天老化的PZVI样品表现出显着的能力,尽管初始阶段较慢,但尽管较慢的初始阶段,可以采用光化学方式去除苯酚。这些属性占可能使用蓄水反应中的潜在废物。

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  • 来源
    《RSC Advances 》 |2016年第89期| 共10页
  • 作者单位

    Univ Turin Dipartimento Chim Via Pietro Giuria 5 I-10125 Turin Italy;

    Univ Turin Dipartimento Chim Via Pietro Giuria 5 I-10125 Turin Italy;

    Ecole Natl Super Chim Rennes CNRS UMR 6226 11 Allee Beaulieu CS 50837 F-35708 Rennes 7 France;

    Univ Turin Dipartimento Chim Via Pietro Giuria 5 I-10125 Turin Italy;

    Univ Turin Dipartimento Chim Via Pietro Giuria 5 I-10125 Turin Italy;

    Univ Turin Dipartimento Chim Via Pietro Giuria 5 I-10125 Turin Italy;

    Univ Turin Dipartimento Chim Via Pietro Giuria 5 I-10125 Turin Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
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