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Enhanced inhibition of bromate formation in catalytic ozonation of organic pollutants over Fe-Al LDH/Al2O3

机译:Fe-Al LDH / Al2O3催化臭氧氧化有机污染物中溴酸盐形成的抑制作用增强

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Fe-Al layered double hydroxides (Fe-Al LDH, the molar ratio of Fe(II) to Fe(III) was about 1:10) was successfully supported and highly dispersed on mesoporous Al2O3 based on the X-ray diffraction (XRD) and X-ray photoelectron spectroscopy (XPS) analysis. Fe-Al LDH/Al2O3 was more efficient in inhibiting BrO3- formation and removing organic pollutant taking ozonation alone as control. Further investigation indicated that BrO3- reduction by surface Fe(II) was responsible to the complete inhibition of BrO3- formation. Fe(II) was reduced from the Fe(III)-intermediates complex via an electron transfer process and the reaction of Fe(III) and HO2-/O-2(-) in catalytic ozonation. The amount of surface Fe(II) in catalytic ozonation of amitrole (AMT), phenazone (PZ) and 2,4-dichlorophenoxyacetic acid (2,4-D) was 0.34, 2.47 and 3.30 mu mol/g, which proved that most of Fe(II) was generated from the reaction of ozone and Fe-Al LDH/Al2O3 since 0.33 mu mol/g of Fe(II) existed within the catalyst. The increase of ozone amount and the formation of Fe(III)-intermediates complex could enhance the Fe(II) generation, leading to more efficient inhibition of BrO3- formation. Finally, Fe-Al LDH/Al2O3 still showed effectiveness in the inhibition of BrO3- and TOC removal for a raw drinking water under the realistic conditions, which could be applied to the BrO3- mineralization in catalytic ozonation of Br--containing drinking water. (C) 2015 Elsevier B.V. All rights reserved.
机译:Fe-Al层状双氢氧化物(Fe-Al LDH,Fe(II)与Fe(III)的摩尔比约为1:10)被成功负载并基于X射线衍射(XRD)高度分散在介孔Al2O3上和X射线光电子能谱(XPS)分析。 Fe-Al LDH / Al2O3仅以臭氧化为对照,在抑制BrO3-形成和去除有机污染物方面更为有效。进一步的研究表明表面Fe(II)对BrO3-的还原是完全抑制BrO3-形成的原因。 Fe(II)通过电子转移过程从Fe(III)中间体络合物中还原,并且在催化臭氧化反应中Fe(III)与HO2- / O-2(-)反应。酰胺(AMT),吩a(PZ)和2,4-二氯苯氧基乙酸(2,4-D)的催化臭氧化处理中的表面Fe(II)的量分别为0.34、2.47和3.30μmol/ g,这证明了由于臭氧和Fe-Al LDH / Al2O3的反应生成了Fe(II)的Fe,因为催化剂中存在0.33μmol/ g的Fe(II)。臭氧量的增加和Fe(III)-中间体配合物的形成可以增强Fe(II)的生成,从而更有效地抑制BrO3-的形成。最后,在实际条件下,Fe-Al LDH / Al2O3仍能有效抑制原水对BrO3-和TOC的去除,可将其应用于含溴饮用水催化臭氧化中的BrO3-矿化。 (C)2015 Elsevier B.V.保留所有权利。

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