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在含溴水的臭氧化过程中用二氧化铈使溴酸盐生成量最小化。

Minimizing bromate formation with cerium dioxide during ozonation of bromide-containing water.

作者信息

Zhang Tao, Chen Weipeng, Ma Jun, Qiang Zhimin

机构信息

School of Municipal & Environmental Engineering, Harbin Institute of Technology, Harbin 150090, China.

出版信息

Water Res. 2008 Aug;42(14):3651-8. doi: 10.1016/j.watres.2008.05.021. Epub 2008 Jun 24.

Abstract

This work investigated the effect of several metal oxides including alpha-FeOOH, alpha-Fe(2)O(3), gamma-FeOOH, and CeO(2) on bromate formation potential (BFP) during ozonation of bromide-containing water. Results indicate that CeO(2) could most effectively minimize the BFP among these metal oxides taking ozonation alone as control. The BFP minimization by O(3)/CeO(2) favored a relatively low Br(-) concentration (i.e., <1.0mgL(-1)) and pH<7. Water temperature ranging from 5 to 25 degrees C had no significant impact on the percent reduction of BrO(3)(-). Further investigation indicates that the effective BFP minimization can be ascribed to neither the surface adsorption of BrO(3)(-) or Br(-) on CeO(2) nor the surface reduction of BrO(3)(-) to HOBr/OBr(-) by CeO(2). It seems to have relationship with the activity of surface Ce(IV) sites. The CeO(2) can lower the concentration of H(2)O(2) which is formed during ozone decomposition and promotes BrO(3)(-) formation. Another possible reason for the BFP minimization is that the CeO(2) could possibly reduce BrO() to HOBr/OBr(-) during the decomposition of H(2)O(2).

摘要

这项工作研究了几种金属氧化物,包括α-FeOOH、α-Fe₂O₃、γ-FeOOH和CeO₂,对含溴水臭氧化过程中溴酸盐生成潜力(BFP)的影响。结果表明,以单独臭氧化作为对照,在这些金属氧化物中,CeO₂能最有效地降低BFP。O₃/CeO₂体系对BFP的降低有利于相对较低的Br⁻浓度(即<1.0mg/L)和pH<7的条件。5至25℃的水温对BrO₃⁻的去除率没有显著影响。进一步研究表明,有效的BFP降低既不是由于BrO₃⁻或Br⁻在CeO₂表面的吸附,也不是由于CeO₂将BrO₃⁻表面还原为HOBr/OBr⁻。这似乎与表面Ce(IV)位点的活性有关。CeO₂可以降低臭氧分解过程中形成的H₂O₂的浓度,并促进BrO₃⁻的形成。BFP降低的另一个可能原因是,在H₂O₂分解过程中,CeO₂可能将BrO₃⁻还原为HOBr/OBr⁻。

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