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Degradation of endocrine disrupting chemicals in aqueous solution by interaction of photocatalytic oxidation and ferrate (VI) oxidation

机译:通过光催化氧化和高铁酸盐(VI)氧化作用降解水溶液中的内分泌干扰化学物质

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摘要

In this study, the degradation of bisphenol A in aqueous suspension by interaction of photocatalytic oxidation and ferrate(VI) oxidation was investigated under different conditions. The results indicate that the formation of Fe(V) and Fe(IV) is in the photocatalytic reduction of Fe(VI) by electron (ecb -) on the surface of TiO?. The oxidation efficiency of the photocatalytic oxidation in the presence of Fe(VI) was much greater than that without. In addition, the decomposition of Fe(VI) under different conditions was also investigated. The results indicate that the Fe(VI) reduction was accelerated by photocatalytic reaction and the adsorption capacity of Fe(VI) on TiO?surface decreased as pH increased. The characteristics of solid potassium ferrate prepared were investigated by X-ray diffraction. It was found that the potassium ferrate solid has a tetrahedral structure with a space group of D2h (Pnma) and a = 7.705 ?, b = 5.863 ?, and c = 10.36 ?. (See Article file for details of the abstract.)
机译:在本研究中,研究了在不同条件下通过光催化氧化和高铁酸盐(VI)氧化相互作用而降解水悬浮液中双酚A的方法。结果表明,Fe(V)和Fe(IV)的形成是通过电子(ecb-)在TiO 2表面上光催化还原Fe(VI)。在Fe(VI)存在下,光催化氧化的氧化效率要远高于没有Fe(VI)时。此外,还研究了Fe(VI)在不同条件下的分解。结果表明,光催化反应促进了Fe(VI)的还原,并且随着pH的增加,Fe(VI)在TiO2表面的吸附能力降低。通过X射线衍射研究了制备的固体高铁酸钾的特性。发现高铁酸钾固体具有四面体结构,其空间群为D2h(Pnma),a =7.705Ω,b =5.863Ω,c =10.36Ω。 (有关摘要的详细信息,请参见文章文件。)

著录项

  • 作者

    Li, C; Li, XZ;

  • 作者单位
  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 en
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